Document RX9zB1MgDXJYag06bVKEpO0k
INDUSTRIA GOPIA ET
ICO
18730
HOLYOKE
REGICMONIDINTAE
AD DONATA
ILLICIT DISCHARGE DETECTION AND
ELIMINATION (IDDE) PROGRAM
CITY OF HOLYOKE, MASSACHUSETTS
MAY 2023
KLEINFELDER
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ED_019088A_00020378-00001
A Report Prepared for:
CITY OF HOLYOKE, MASSACHUSETTS
536 Dwight Street
Holyoke, Massachusetts 01040
ILLICIT DISCHARGE DETECTION AND ELIMINATION (IDDE) PROGRAM
CITY OF HOLYOKE, MASSACHUSETTS
Prepared by:
Portia Freeman, Professional
Reviewed by:
Pamela Westgate, Principal Professional
Ajay Sharma, Project Manager
KLEINFELDER
1500 Main Street, Suite 1510
Springfield, Massachusetts 01115
May 2023
Kleinfelder Project No: 20233959.001A
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TABLE OF CONTENTS
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Section Page
1ILLICIT DISCHARGE DETECTION AND ELIMINATION (IDDE) PROGRAM1
1.1 INTRODUCTION....1
1.1.1 Municipal Separate Storm Sewer System (MS4) Program.....1
1.1.2 Geographical Scope of IDDE Program..2
1.1.3 Allowable Non - Stormwater Discharges........4
1.1.4 Receiving Waters and Impairments......5
1.1.5 IDDE Program Objectives, Requirements, and Timeline .........6
2STORMWATER SYSTEM MAPPING...........9
2.1MAPPING NEXT STEPS......9
3.1 SSO INVENTORY10
3.2REMOVAL AND NOTIFICATION.....10
4OBJECTIVE, AUTHORITY AND IDDE RESPONSIBILITIES.............. 13
4.2IDDE PROGRAM RESPONSIBILITIES.... 13
5 (ASSESSMENT AND PRIORITY RANKING OF CATCHMENTS AND OUTFALLS...........16
5.1OUTFALL / INTERCONNECTION INVENTORY AND RANKING........16
5.2OUTFALL CATCHMENT DELINEATIONS...18
6 DRY WEATHER OUTFALL AND INTERCONNECTION SCREENING AND SAMPLING...................... 19
6.1WEATHER CONDITIONS.....19
6.2SCREENING REQUIREMENTS........19
6.2.1 Access.....20
6.2.2 Identification of Illicit Discharge20
6.2.3 Sample Collection and Testing22
6.3INTERPRETING OUTFALL SAMPLING RESULTS ..27
6.4FOLLOW - UP RANKING OF OUTFALLS AND INTERCONNECTIONS..28
7CATCHMENT INVESTIGATIONS.......29
7.1DRY WEATHER MANHOLE INSPECTIONS.......29
7.2WET WEATHER OUTFALL SAMPLING............31
7.3 ILLICIT DISCHARGE IDENTIFICATION, SOURCE ISOLATION, AND CONFIRMATION. 32
7.3.1 Sandbagging32
7.3.2 Smoke Testing .....32
7.3.3 Dye Testing33
7.3.4 Video Inspections .........33
7.3.5 Optical Brightener Monitoring33
7.4ILLICIT DISCHARGE REMOVAL.............34
7.4.1 Confirmatory Outfall or Interconnection Screening34
7.4.2 Ongoing Screening.....34
8 00 TRAINING 35
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TABLE OF CONTENTS (continued)
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Section Page
9ANNUAL REPORT.......... 36
FIGURES
Figure 1: Holyoke MS4 Urbanized Areas Illicit Discharges...3
Figure 2: IDDE Investigation Procedure..........8
Figure 3: Organizational Structure15
TABLES
Table 1: Consent Decree Requirements Included in the IDDE Program2
Table 2: Impaired Waters......6
Table 3: IDDE Program Implementation Timeline.7
Table 4: Investigation and Screening Timeline8
Table 5: MS4 SSO Inventory.......12
Table 6: IDDE Responsibilities....14
Table 7: Visual Condition Assessment......21
Table 8: Conditional and Qualitative Considerations of Foam21
Table 9: Field Equipment.....25
Table 10: Sampling Parameters and Analysis Methods...........26
APPENDICES
AOutfall AND Interconnection Prioritization AND Ranking
BEPA Sampling Report
CMS4 Maps
DLegal Authority
EField Inspection Forms
FInstructions, Manuals, and SOPS
GIDDE Employee Training Record
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1 ILLICIT DISCHARGE DETECTION AND ELIMINATION (IDDE)
PROGRAM
1.1 INTRODUCTION
1.1.1 Municipal Separate Storm Sewer System (MS4) Program
This document serves as a written plan for Illicit Discharge Detection and Elimination (IDDE) for the City
of Holyoke, hereafter referred to as " the City " or " Holyoke, " and Veolia (the City's current contracted
wastewater operator) to address the requirements of the United States Environmental Protection
Agency's (U.S. EPA) and the Massachusetts Department of Environmental Protection (MassDEP) General
Permits for Stormwater Discharges from Small Municipal Separate Storm Sewer Systems in
Massachusetts, effective July 1st, 2018, hereinafter referred to as the " 2016 MS4 Permit " or " MS4
Permit ", and the 2023 MS4 Consent Decree, hereinafter referred to as the " Consent Decree ".
The MS4 Permit requires regulated communities to address six Minimum Control Measures (MCM)
including:
1. Public Education and Outreach;
2. Public Involvement and Participation;
3. Illicit Discharge Detection and Elimination Program (IDDE);
4. Construction Site Stormwater Runoff Control;
5. Post - construction Stormwater Management in New Development and Redevelopment; and
6. Good Housekeeping and Pollution Prevention for Permittee Owned Operations.
Under MCM 3, the City and Veolia are required to implement an IDDE program to systematically find
and eliminate sources of non - stormwater discharges to its MS4 and implement procedures to prevent
such discharges. The IDDE program must be recorded in a written (hardcopy or electronic) document.
This IDDE Program has been prepared to address this requirement.
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The City of Holyoke negotiated a Consent Decree, which was finalized in 2023 and defined the terms
that the City shall take to reach compliance with the MS4 program. Table 1 links sections of this IDDE
Program to requirements outlined in the Consent Decree.
Table 1: Consent Decree Requirements Included in the IDDE Program
Consent Decree
Section
Description of RequirementIDDE Section
11-11e
Apply new IDDE screening thresholds to all
MS4 outfalls and any MS4 discharges toTable 10 Sampling Parameters and Analysis
other municipal MS4s or non - City ownedMethods
outfalls
Current MS4 Catchment area map with
12aboundaries of each catchment area and all Figure 1 Holyoke MS4 Urbanized Areas
associated outfalls or interconnections
12b
Identification of all combined manholesAppendix A MS4 Outfall and Interconnection
within MS4 catchment areasPrioritization
12c
Schedule to inspect all identifiedTable 3 IDDE Program Implementation
combined manholesTimeline
12d
Schedule to repair or eliminate theTable 3 IDDE Program Implementation
identified combined manholesTimeline
A prioritization of all Catchment areas
based EPA monitoring results, Cityon
12emonitoring results, applicable TMDLs for
impaired waterbodies, and a schedule for
completion of catchment investigations
13Dry - Weather Sampling
Appendix A MS4 Outfall and Interconnection
Prioritization
Section 6.0 Dry Weather Outfall
Interconnection Screening and Sampling;
Section 7.1 Dry Weather Manhole
Inspections
14Wet - Weather SamplingSection 7.2 Wet Weather Outfall Sampling
Identification and Elimination of Illicit
15a - 15cDischarges to MS4 area with schedule forTo be provided at a later date as required
actions
Semi - annual Consent Decree compliance
17report relating to implementation of IDDETo be provided at a later date as required
Plan (Due 1/31/2024)
1.1.2 Geographical Scope of IDDE Program
The MS4 Permit requires municipalities to implement the IDDE program for those portions of the MS4
that are located either fully or partially within the Urbanized Area (based on 2010 U.S. Census) or
located in a geographical area designated by U.S.EPA as requiring a permit. Figure 1 depicts the
urbanized areas for Holyoke.
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NORTHAMPTON
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POH
Ad
Genvale
Southampton
SOUTHAMPTON
College
Swanson
Comers
Mount
Tom State
Easthampton Reservation
EASTHAMPTON
SmithsSouth Hadley
SOUTH HADLEY
St.
Mount Ton Northampton
HOLYOKE
Holvoke
North
WESTFIELD Pond
CHICOPEE
WEST SPRINGEMED Toke Mass
Corporation
NH
NPDES Phase II Stormwater ProgramTown Population: 39880
Automatically Designated MS4 AreasRegulated Population: 39448
Holyoke MA(Populations estimated from 2010 Census)
Regulated Area:
UA Based onUA Based on
2000 Census2010 Census
SEPA
Urbanized Areas Town Boundaries::
US Census (2000, 2010)
Base map 2013 Microsoft Corporation
and its data suppliers
5 MiesUS EPA Region 1 C13 Center Map # 8324,892013
Figure 1: Holyoke Ms4 Urbanized Areas Illicit Discharges
(Consent Decree Term # 12a)
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An illicit discharge is any discharge to an MS4 that is not composed entirely of stormwater, except for
site - specific NPDES permitted discharges and discharges resulting from firefighting activities and
allowable non - stormwater discharges as outlined in Section 1.4.
Illicit discharges may enter the drainage system through direct or indirect connections and may be
intentional or unintentional. Direct connections include cross - connections of sewer services to the
storm drain system. Indirect illicit discharges may be more difficult to detect and may include failing
septic systems that discharge untreated sewage to a storm ditch or swale that is part of an MS4, or a
sump pump that discharges contaminated water to storm drains intermittently.
Some illicit discharges are intentional, such as dumping used oil into catch basins, seasonal dumping of
swimming pool water, or illegally connecting a new sewer lateral into a storm drainpipe. Unintentional
illicit discharges include breakouts from failing septic systems that enter the MS4, or disposal of floor
wash water to a floor drain in an old building where the drain is thought to connect to a sewer line but
connects to a storm drain instead.
When not addressed, illicit discharges can contribute high levels of pollutants such as metals, toxics, oil,
grease, solvents, nutrients, and bacteria to surface waters.
1.1.3 Allowable Non - Stormwater Discharges
The following non - stormwater discharges are allowed under the MS4 Permit unless the permittee,
U.S.EPA, or MassDEP finds the discharge to be a significant contributor of pollutants to the MS4:
Water line flushing
Landscape irrigation
Diverted stream flows
Rising ground water
Uncontaminated ground water infiltration (as defined at 40 CFR 35.2005 (20))
Uncontaminated pumped groundwater
Discharge from potable water sources
Foundation drains
Air conditioning condensation
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* Irrigation water, springs
Water from crawl space pumps
Footing drains
Lawn watering
* Individual resident car washing
De - chlorinated swimming pool discharges
Street wash waters
Residential building wash waters without detergents
If any of the above discharges are identified as significant contributors of pollution to the MS4, they will
be considered " illicit discharges " and addressed in the IDDE program.
1.1.4 Receiving Waters and Impairments
Impaired waters are water bodies that do not meet water quality standards for one or more designated
use(s) such as recreation or aquatic habitat. Table 2 is a list of the impaired waters that are within the
boundaries of Holyoke's regulated area based on the 2018/2020 Massachusetts Integrated List of
Waters, produced by the MassDEP. The most recent Draft 2022 List is consistent with the 2018/2020
List.
Because Holyoke is in the watershed of Long Island Sound (LIS), which has an approved total maximum
daily load (TMDL) for nitrogen, the City is required to meet additional requirements in the MS4 Permit
with respect for nitrogen discharges (MAR041000, Appendix B part B1).
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Table 2: Impaired Waters
Water Body Name Segment ID CategoryImpairmentComments
Confluence with Deerfield
Escherichia coli, PCB in fish tissue,River, Greenfield / Deerfield
Connecticut RiverMA34-045Non - Native aquatic plants (Waterto Holyoke Dam (NATID:
Chestnut)MA00973), Holyoke / South
Hadley.
Holyoke Dam (NATID:
MA00973), Holyoke / South
Connecticut RiverMA34-055Escherichia coli, PCB in fish tissueHadley to
Massachusetts / Connecticut
border, Longmeadow.
Non - Native aquatic plants (Water
Log Pond CoveMA341245Chestnut), PCB in fish
tissue
Part of Connecticut
River
Eurasian milfoil, chlorophyll - a,
Non - Native aquatic plants,
Pequot PondMA320555Enterococcus, dissolved oxygen,
Total Phosphorus
Located in Southampton
Urban Area. Outfalls from
Holyoke drain to a
tributary of the Pond
1 Category 5: Impaired or threatened for one or more uses and requiring a TMDL.
1.1.5 IDDE Program Objectives, Requirements, and Timeline
The objective of the IDDE Program is to systematically find and eliminate sources of non - stormwater
discharges to the MS4 and implement procedures to prevent such discharges. The IDDE Program must
include the following:
Legal authority to prohibit and investigate suspected illicit discharges, eliminate, and remove
illicit discharges, and enforce the IDDE Program.
MS4 mapping.
Sanitary Sewer Overflow (SSO) inventory, reporting, and mitigation.
Screening of catchments, manholes, and outfalls during wet and dry weather conditions.
Sampling procedures.
Priority ranking of outfalls and interconnections - preliminary and follow up (post catchment
investigation).
1
Catchment: the area that drains to an individual outfall or interconnection. Catchments are typically
delineated based on topographic contours and mapped drainage infrastructure where available.
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* Follow - up screening.
Employee training.
* IDDE program evaluation.
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Figure 2 (on the following page) shows the IDDE investigation procedure, Table 3 shows the IDDE
implementation timeline, and Table 4 shows the Catchment Investigation and Dry & Wet Weather
Screening timeline.
Table 3: IDDE Program Implementation Timeline
(Consent Decree Term # 12c and # 12d)
IDDE Program Requirement
Target Completion Date
Completed in 2019 5/31/23 6/30/24 6/30/25 6/30/27
Written IDDE Program PlanX
SSO InventoryX
Preliminary Ranking of Outfalls and
interconnections
Written Catchment Investigation
Procedure
IDDE Regulatory Mechanism or By - law (if
not already in place)
Dry Weather Outfall ScreeningX
Follow - up Ranking of Outfalls and
Interconnections
Catchment Investigations - Problem
Outfalls
Catchment Investigations - of High and
Low Priority Outfalls
X
Start Finish
Start Finish
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Inventory andMap / InvestigateFollow - Up
Re - rank Outfalls
Rank Outfalls Catchments Screening
Dry WeatherConduct
Screening Investigations
System has
Remove Illicitsbeen fully
Investigated
Figure 2: IDDE Investigation Procedure
Table 4: Investigation and Screening Timeline
Years to
TasksYear 1Year 2Year 3Year 4-Year 5
Complete
Catchment Investigation 5 Days per Year 7 22 22 34
Dry Weather Screening1Days per Year13
once every 3
Wet Weather ScreeningDays per Year20202040
years
This timeline assumes each task type will be performed on separate field days. However, it is anticipated
that multiple tasks can be combined on same field day(s). Based on this, all tasks in a given year will take
approximately one (1) month to complete.
Wet weather screening must be completely once every three (3) years; however, it may be staggered
over the three (3) years to make the total number of screenings required more manageable. Each set of
outfalls to be screened per year must be the same outfalls when screened three (3) years later.
2
Illicit Discharge Detection and Elimination (IDDE) Plan template, June 30, 2016 for Central Massachusetts Regional
Stormwater Coalition
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2 STORMWATER SYSTEM MAPPING
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Holyoke's MS4 system maps are used to identify key stormwater infrastructure, factors influencing
proper system operation, and the potential for illicit sanitary discharges. The City of Holyoke developed
an updated stormwater map to begin addressing mapping requirements of the 2016 MS4 Permit and
the Consent Decree Term 21. Copies of the system maps are included in Appendix C. The City is actively
updating the current mapping to include West Holyoke. This part of the City will have an estimated 15-
20 additional outfalls. In addition to outfalls, the updated mapping will include interconnections,
receiving water bodies, catchment delineations, and other municipally owned stormwater treatment
structures.
The City used both desktop analysis and field verification to further improve the accuracy of the existing
GIS mapping data. This resulted in a total count of 67 identified MS4 outfalls, as well as preliminary
catchment area delineations. The inventory and ranking will be updated as additional information from
the outfall screening and catchment investigations become available. The screening and catchment
investigations are discussed in Section 5.0.
Updated maps reflecting newly developed and / or discovered information, corrections, and
modifications will be submitted in conjunction with compliance reports semi - annually. In compliance
with the MS4 Permit and Consent Decree Term 21, the following information and features will be
included on the MS4 map:
Base Map containing municipal property information.
Water Resources and Topographic Features.
Stormwater Infrastructure.
Collection System (outside MS4)
Investigations, remediation, and capital projects completed for the City's MS4 and collection
system.
2.1 MAPPING NEXT STEPS
Existing gaps in Holyoke's current GIS data are addressed in this IDDE Plan; updates to the mapping will
occur as field information from ongoing investigations, which will get input to the database. Updates will
be focused on addressing the listed requirements in the Consent Decree Term 21.
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3 SANITARY SEWER OVERFLOWS (SSOS)
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The MS4 permit requires municipalities to prohibit illicit discharges, including sanitary sewer overflows
(SSOs) to the MS4. An SSO is a discharge of untreated sanitary wastewater from a municipal sanitary
sewer that can contaminate surface waters, cause serious water quality problems and property damage,
and threaten public health. SSOs can be caused by blockages, line breaks, sewer system bypasses that
allow stormwater and groundwater to overload the system, power failures, and human error.
3.1 SSO INVENTORY
As part of its Stormwater Management Plan (SWMP), the City maintains an SSO inventory that includes
the following information:
Location (approximate street crossing / address and receiving water, if any).
A clear statement of whether the discharge entered a surface water directly or entered the
MS4.
Date(s) and time(s) of each known SSO occurrence.
Estimated volume(s) of the occurrence.
Description of the occurrence including known or suspected cause(s).
* Mitigation and corrective actions and completion dates as well as planned corrective measures
and their implementation schedule.
The SSO inventory is updated annually and is included in the Annual Report. The SSO inventory is
summarized in Table 5.
3.2 REMOVAL AND NOTIFICATION
Upon detecting or receiving notice of an SSO, the City shall eliminate it as soon as possible and take
interim mitigation steps to minimize the discharge of pollutants to the MS4 until the SSO is eliminated.
Holyoke must provide oral notification to the U.S.EPA within 24 hours of becoming aware of an SSO, as
well as written notification within 5 days of becoming aware of an SSO.
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The City is required to issue public advisory notifications within 2 hours of discovery of the SSO, posting
public advisory notifications to the City's website and reporting into the MassDEP's online data system.
MassDEP ContactU.S. EPA Contact
Western Region (413) 784-1100New England (888) 372-7341
436 Dwight Street5 Post Office Square
Springfield, MA 01103Boston, MA 02109
24-hour Emergency Line 1-888-304-1133
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Table 5: MS4 SSO Inventory
Discharge Volume 5 6
SSO Location2 Date DurationDescription *Mitigation StepsDate Completed
Statement (gals)
Leary Dr.Day Brook4/3/2018 30 mReimovned sblo.ckage o1f r0ags5. JetDcleeanebdtrhe nieigshbo rho/od. PuRt oan qguarsterly
4/3/2018
cleaning schedule.
72 Old Jarvis Ave.Ground5/11/2018 30 mins.90RagsRemoved blockage. Jet cleaned the main.5/11/2018
Tokeneke & Holy family Rd. Tannery Brook 6/11/2018 45 mins.225Grease & RagsRemoved blockage. Jet cleaned / degreased the City sewer main.6/12/2018
River Terrace (HighlandInterceptor / Manhole
Conn. River11/5/201856 hrs.1,344,000Repaired Highland Interceptor. Made emergency repair to the interceptor.11/7/2018
Inter)failure
Removed blockage of roots. Jet cleaned & CCTV sewer main.to verify root mass
Rt 5 near Smith's Ferry P. S.Ground12/5/20182 hrs.25Roots12/5/2018
was cleared.
50 Holy Family Rd.Tannery Brook 1/24/2019 1.5 hrs.2,250Grease & RagsRemoved blockage. Jet cleaned sewer main.12/08/2019
75 Reservation Rd.Ground4/24/20192 hrs.30Debris & RocksRemoved blockage. Sewer main will be jet cleanedsummer 2019
200 Whiting Farms Rd.Tannery brook 7/23/2019 1.5hrs.> 10,000Grease & RagsRemoved blockage Main was put on Bi - monthly cleaning list.7/23/2019
20 Easthampton Rd.Green Brook1/13/20201hr300GreaseRemoved blockage. De greased sewer main.1/13/2020
63 Canal St.Ct. River4/26/2022 36 mins.225DebrisRemoved blockage. Jet cleaned main.
4/26/2022
Whiting ReservoirCT. River06/07/2022 3.15 hrs.900Grease & debrisRemoved blockage. Jet cleaned main.06/07/2022
Yale St.Ground8/23/2022 Unknown300-500Unbolted man holeReplaced missing bolts on manhole.8/26/2022
50 Holy Family Rd.Tannery Brook 12/08/2022 1.25 hrs.1,500Grease & RagsRemoved blockage. Jet cleaned sewer main.12/08/2022
Highland Park Pump StationCt. River3/17/2023 3.25hrs.600Force main failureSetup bypass and shut station down. Replaced failed section of main.3/27/2023
Notes:
1 Location (approximate street crossing / address and receiving water, if any)
2A clear statement of whether the discharge entered a surface water directly or entered the MS4
3 Estimated volume(s) of the occurrence
4 Description of the occurrence indicating known or suspected cause(s)
5
Mitigation and corrective measures taken or planned
6Date mitigation and corrective measures completed
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4 OBJECTIVE, AUTHORITY AND IDDE RESPONSIBILITIES
The objective of the IDDE program is to systematically find and eliminate illicit discharges to Holyoke's
MS4 and prevent them from happening in the future.
4.1 LEGAL AUTHORITY
Holyoke's Stormwater Ordinance was adopted by City Council on May 17th, 2010, and revised on
September 1st, 2021. Specifically, Holyoke's Stormwater Ordinance grants the City the authority to:
Prohibit illicit discharges.
The City plans to update regulations or ordinances to grant the City authority to:
Investigate suspected illicit discharges;
Eliminate illicit discharges, including discharges from properties not owned by or controlled by
the City that discharge into the MS4; and
Implement appropriate enforcement procedures and actions.
Draft ordinance language, proposed by the Pioneer Valley Planning Commission (PVPC), can be found in
Appendix D. Copies of bylaws and additional relevant ordinance sections can also be found in
Appendix D.
4.2 IDDE PROGRAM RESPONSIBILITIES
As owner and operator of the MS4, the City and Veolia hold joint responsibility for implementing the
IDDE program. The City Department of Public Works (DPW) is the lead municipal agency that works with
Veolia and other departments to administer various aspects of the program. Specific IDDE Program
responsibilities and responsible parties are listed in Table 6. The organizational structure of responsible
parties is shown in Figure 3.
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Table 6: IDDE Responsibilities
Responsible PartyIDDE Responsibilities
City EngineerEnforcement of ID procedures and actions
Catchment Investigations; identifying system vulnerability
factors (SVF), manhole inspections and isolation to confirm
sources of ID
Catchment prioritization
Dry weather outfall screens / inspections and outfall sample
VEOLIA Project Manager; City Engineercollection
Rank / Prioritize and reprioritize outfalls and interconnections
Wet and dry weather data review, tracking, collection, and
annual reporting
IDDE Program Progress Annual Report (SSOS, IDs identified and
removed; # and% total outfall catchments evaluated; dry and
wet weather screening results; volume of sewage removed
VEOLIA Project Manager
Illicit Discharge (ID) Investigations; removal, and removal
confirmations
SSOS Investigations and Maintenance of SSO Inventory
Field checks and documentation of new / updated MS4
infrastructure; outfalls and interconnections; update MS4 maps
Wet weather outfall screens / inspections and outfall sample
collection
Track and provide annual report of Illicit discharge removal
Confirmatory outfall and interconnection screening after ID has
been removed
* IDDE training frequency and type in annual report
Veolia Project ManagerCity EngineerCity Department of Public Works
Michael WilliamsKris BakerDirector
Project ManagerHolyoke City Engineer
Carl Rossi
VeoliaPublic Works (DPW)Director
(413) 534-2222(413) 322-5605Public Works (DPW)
(413) 322-5645
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City of Holyoke Department of
Public Works (DPW) Director
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City of Holyoke DPW Engineer
Veolia Regional Manager
Veolia Project Manager
Figure 3: Organizational Structure
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50 ASSESSMENT AND PRIORITY RANKING OF CATCHMENTS AND OUTFALLS
The MS4 permit requires Holyoke to assess and rank outfalls and interconnections based on their illicit
discharge potential and the significance of the potential public health issues associated with such
discharges. The rankings are used to prioritize the order of screening outfalls and interconnections and
the order of conducting catchment investigations for evidence of illicit discharges and SSOs. The
rankings are also used to track progress towards meeting permit milestones.
Outfalls and Interconnections are defined as follows as per the 2016 Massachusetts Small MS4 General
Permit:
* Outfall (40 CFR 122.2): the point where the MS4 discharges to waters of the United States.
Outfalls do not include open conveyances that connect two MS4s or pipes, tunnels and other
conveyances that connect segments of the same stream or waters or are used to convey waters
of the United States. Culverts longer than a simple road crossing are considered outfalls unless it
is confirmed that they are free of any connections and simply convey waters of the United
States. 3
Interconnection: the point (excluding sheet flow over impervious surfaces) where the
permittee's MS4 discharges to another MS4 or other storm sewer system, through which the
discharge is conveyed to waters of the United States or to another storm sewer system and
eventually to a water of the United States.
5.1 OUTFALL / INTERCONNECTION INVENTORY AND RANKING
The City maintains an inventory of each outfall and interconnection that discharges from the MS4.
Currently, Veolia has identified 67 public outfalls within its MS4 area. The inventory includes the outfall
and interconnection locations as well as a means of tracking all inspections, screenings, samplings, and
other activities covered by the IDDE program.
3 United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small
municipal -US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
4 United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small
municipal. - US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
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There are a number of MS4 catchment systems located in West Holyoke that have not been included in
the current inventory. The City estimates approximately 15-20 outfalls that are not included currently,
but mapping efforts are ongoing, and these outfalls will be identified and inspected during future field
investigations. Both the MS4 map (Appendix C) and the Outfall and Interconnection Prioritization and
Ranking Table (Appendix A) will be expanded upon and updated accordingly. The current inventory was
given a preliminary ranking prior to future dry weather screening based on whether an outfall drained
directly to a water body and whether the EPA completed sampling at select outfalls on May 7-8, 2019
and July 7, 2019. The City uses a point system to determine rank and priority for each outfall; one (1)
point is granted to an outfall if it drains directly into a water body, and one (1) point is given to an outfall
if it has been previously sampled by the EPA. Any outfall with one or more points is considered high
priority. This ranked list is included as Appendix A. Rankings will be updated and presented in future
reports once dry weather screening has been completed (as described in Section 6.4).
Outfalls and interconnections included in the IDDE Program are classified as follows:
1. Problem Outfalls and Interconnections: have known or suspected contributions of illicit
discharges and include outfalls / interconnections where previous screening indicates likely sewer
input.
2. High Priority Outfalls: discharge to area of concern to public health due to their proximity to
public beaches, recreational areas, or drinking water supplies; or are considered by Holyoke to
be high priority based on their environmental attributes.
3. Low Priority Outfalls: are considered by Holyoke to be low priority based on existing land uses
and their proximity to high priority environmental areas (e.g. densely developed areas that are
not proximate to areas with identified environmental attributes).
4. Excluded outfalls: have no potential for illicit discharges and are excluded from the IDDE
program. This category is limited to roadway drainage in undeveloped areas with no dwellings
and no sanitary sewers; drainage for athletic fields, parks or undeveloped green space and
associated parking without services; cross - country drainage alignments that neither cross nor
are in proximity to sanitary sewer alignments through undeveloped land.
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5.2 OUTFALL CATCHMENT DELINEATIONS
A catchment is the area that drains to an outfall or interconnection. Catchment delineations define the
contributing areas for investigations of potential sources of illicit discharges. Delineations are based on
topographic maps (USGS Springfield North Quadrangle, Massachusetts, 7.5 minute, 2018 and Mount
Tom Quadrangle, Massachusetts, 7.5 minute, 2018) and mapped drainage infrastructure. Initial
catchment delineations are complete and can be found in Appendix C. Further refined delineations will
be completed by June 30, 2024.
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6 DRY WEATHER OUTFALL AND INTERCONNECTION SCREENING AND SAMPLING
(Consent Decree Term # 13)
Outfalls can be in the form of pipes or ditches and are the final point of discharge into a body of water
for an engineered storm drain system. Current and pending regulations require that all outfalls in the
storm drain system be inspected and that their water quality be analyzed under dry and wet weather
conditions. This section discusses the objectives of dry weather outfall inspections. Section 7.3 Wet
Weather Sampling covers the objectives for wet weather outfall inspections.
Dry weather flow is a common indicator of potential illicit connections. Veolia inspects and screens
outfalls and interconnections in accordance with their priority ranking and the IDDE Program Timeline
(Table 3-). The proper identification of any potential source(s) of an illicit discharge is further described
in Section 7.4-Illicit Discharge Identification, Source Isolation, and Confirmation.
6.1 WEATHER CONDITIONS
To ensure that sampling occurs during dry weather conditions, screening and sampling takes place when
no more than 0.1 inches of rainfall has occurred in the previous 24-hour period, or 48-hour period when
possible, and during times when there is no significant snow melt.
6.2 SCREENING REQUIREMENTS
Screening data is included in the outfall / interconnection inventory and is used to set and update
priority rankings for future screenings. For every outfall and interconnection, the following data is
collected and entered into the digital inventory:
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Unique identifier.
Receiving water.
Date of most recent inspection.
Dimensions and shape.
* Material (concrete, PVC).
Spatial location (latitude and longitude within +/- 30 feet).
Physical condition (vegetation and damage to outfall structures).
Visual / olfactory evidence of non - stormwater discharge (evidence of flow, odor, color, turbidity,
floatables (suds, toilet paper, or sanitary products), deposits, oil sheen.
6.2.1 Access
As per the 2016 Massachusetts Small MS4 General Permit, if an outfall / interconnection is inaccessible or
submerged, the permittee shall proceed to the first accessible upstream manhole or structure for the
observation and sampling and report the location with the screening results.
6.2.2 Identification of Illicit Discharge
Any flow observed during dry weather conditions at a stormwater outfall or manhole is a strong
indicator of illicit discharges, though it is important to inspect within and around the outfall or manhole
for other indicators of the type of discharge. If no flow is observed, there may be other visual or
olfactory indicators that past flow existed, which are shown in Table 7 5.
5
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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Table 7: Visual Condition Assessment
IndicatorPossible Source
Foamupstream vehicle washing activities or illicit discharge
Oil Sheenleak or spill
Cloudiness
suspended solids (i.e. dust, ash, powdered chemicals, ground up
materials, etc.)
Color or Odorraw materials, chemicals, or sewage
Excessive Sediment
Sanitary Waste /
Optical Enhancers *
disturbed earth of unpaved areas lacking adequate erosion control
measures
illicit discharge
Orange Staininghigh mineral concentrations
* Fluorescent dyes added to laundry detergent and some toilet paper
While many of the indicators listed in Table 7 would indicate an illicit discharge, some indicators may
occur naturally. For example, orange staining could be the result of naturally occurring iron. Foam can
also be naturally occurring or caused by a pollutant; however, it may be difficult to determine the
difference between natural foam and foam caused by pollution. Natural foam can typically be found in
water with high organic content such as bog lakes, streams that originate from bog lakes, productive
lakes, wetlands, or woody areas. As per the Central Massachusetts Regional Stormwater Coalition, it is
important to consider the factors listed in Table 8 when determining if the source of foam present at a
56
stormwater outfall is natural or not.
Table 8: Conditional and Qualitative Considerations of Foam
Factors Explanation
Wind Direction or Turbulence
Proximity to Potential Pollution
Source
Natural foam occurrences of the beach coincide with onshore winds. Often,
foam can be found along a shoreline and / or on open waters during windy
days. Natural occurrences in rivers can be found downstream of a turbulent
site.
Some entities including the textile industry, paper production facilities, oil
industries, and firefighting activities work with materials that cause foaming
in water. If these materials are released to a water body in large quantities,
they can cause foaming. The presence of silt in water, such as from a
construction site can cause foam.
Physical FeelingNatural foam is typically persistent, light, not slimy to the touch.
Visual ObservationPrescence of decomposing plants or organic material in the water.
6
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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In addition to foam, both bacteria and petroleum can create a sheen on the water surface.
Differentiating the two can be as simple as disturbing the " sheen " with a pole, stick, or similar object. A
sheen caused by oil will remain intact and move in a swirl pattern while a sheen caused by bacteria will
separate into several smaller patches and appear " blocky. " In addition, bacteria or naturally occurring
sheens are usually silver or dull in color. While bacterial sheen is not a pollutant, it should be noted
when describing the discharge57.
Optical enhancers, however, can be visible to the naked eye when found in high enough concentrations
and will appear as a bluish - purple haze. If a visual observation is unable to confirm the presence of this
pollutant, a quantitative test can be used. To perform this test, a clean, white, cotton pad should be
placed, either directly in, or within a sample of, the discharge for several days. After soaking, the cotton
pad should be dried and then viewed under a fluorometer. If the cotton pad fluoresces, optical
enhancers are assumed to be the pollutant. The magnitude of the fluorescence, as measured in
fluorescent units, can be used to determine the concentration of optical enhancers within the sample.
Often a visual observation is enough. It is not typical that this analysis is required. If evidence of illicit
flow exists, a sample should be taken and observations should be recorded.
6.2.3 Sample Collection and Testing
At least one (1) sample from each catchment during dry weather flow conditions is collected and
analyzed for: ammonia, chlorine, conductivity, salinity, surfactants (such as MBAS), and temperature. E.
Coli bacteria samples should be taken only if:
a. outfalls identified by EPA in sampling results previously supplied to the City on May 7-8, 2019 and
July 7, 2019 based on field test kit screening;
b. olfactory or visual evidence of sewage;
C. an exceedance of a bacterial threshold concurrent with meeting or exceeding of both the
surfactant and ammonia thresholds;
d. an exceedance of both the surfactant and ammonia thresholds concurrent with any detectable
level of chlorine; and
e. an exceedance of a bacterial threshold concurrent with any detectable level of ammonia below
its threshold.
7
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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A discrete manual or grab sample will be collected for dry weather outfall inspections due to the time-
sensitive nature of the process. Grab samples classify water at a distinct point in time and are used
primarily when the water quality of the discharge is expected to be homogenous, or unchanging, in
nature. A flow - weighted composite sample captures water quality over a measured period of time and is
8
used when the water quality of discharge is expected to be heterogenous, or fluctuating, in nature.
Protocols for collecting a grab sample, as per the Central Massachusetts Regional Stormwater Coalition,
are as follows:
1. Fill out sample information on sample bottles and field sheets (see Attachment 4 for example
field sheets).
2. Do not eat, drink, or smoke during sample collection and processing.
3. Do not collect or process samples near a running vehicle.
4. Do not park vehicles in the immediate sample collection area, including both running and non-
running vehicles.
5. Always wear clean, powder - free nitrile gloves when handling sample containers and lids.
6. Never touch the inside surface of a sample container or lid, even with gloved hands.
7. Never allow the inner surface of a sample container or lid to be contacted by any material other
than the sample water.
8. Collect samples with a dipper or directly into sample containers. If possible, collect water while
facing upstream of the flow into the sample bottles to not disturb water or sediments in the
outfall pipe or ditch.
9. Do not overfill sample containers, and do not dump any liquid in them. Liquids are often added
to sample containers intentionally by the analytical laboratory as a preservative or for pH
adjustment.
10. Slowly lower the bottle into the water to avoid bottom disturbance and stirring up sediment.
11. Do not allow any object or material to fall into or contact the collected water sample.
12. Replace and tighten sample container lids immediately after sample collection.
13. Place laboratory samples on ice for analysis of bacteria and pollutants of concern.
8
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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14. Accurately label the sample with the time and location.
15. Document on the Dry Weather Outfall Inspection Survey that analytical samples were collected,
specify parameters, and note the sample time on an Inspection Survey (see Attachment 2 and 3
for examples). This creates a reference point for samples.
16. Fill out chain - of - custody form for laboratory samples.
17. If using a dipper or other device, triple rinse the device with distilled water and then in water to
be sampled, except for bacteria sampling.
18. Store used test strips and test kit waste / ampules properly in a 5-gallon bucket with a cover.
Storage and disposal shall be coordinated with the City.
19. Decontaminate all testing personnel and equipment.
Samples that are unable to be analyzed for parameters using field instrumentation require laboratory
analysis. Coordination with the laboratory, including the pick - up and / or dropping off of samples, is the
responsibility of the City. The laboratory requires that a chain - of - custody form be filled out and
accompany any samples that require analysis. The laboratory will also provide additional details
regarding how samples should be collected based on the sample containers and / or specific analytes.
Table 9 includes field equipment commonly used for outfall screening and sampling. Table 10
summarizes tests performed for each analyte and indicates whether they are done in the field or sent to
an outside laboratory.
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Table 9: Field Equipment
Equipment Purpose
Covered Metal ClipboardFor organization / protection of field sheets and writing surface
Field Sheets or Tablet for Electronic Forms
Field sheets for both dry weather inspection and Dry weather
sampling should be available with extra copies
Chain of Custody FormsTo ensure proper handling of all samples
Pens / Pencils / Permanent MarkersFor proper labeling
Nitrile GlovesTo protect the sampler and prevent contamination of samples
Flashlight / headlamp w / batteriesFor inspecting outfalls or manholes
Cooler with Ice
For transporting samples to the laboratory (see sample holding
requirements)
Digital CameraFor documenting field conditions at time of inspection
Personal Protective Equipment (PPE)Reflective vest, safety glasses, nitrile gloves and boots, steel toed shoes
Insect / Plant Repellant and SunscreenProtection from environmental conditions
GPS ReceiverFor recording spatial location data
Distilled Water / Calibration Standards
Water Quality Meter(s)
Test Kits
For use with test kits and water quality meters; cleaning equipment and
calibration
Handheld meters for testing various water quality parameters
such as ammonia, surfactants, and chlorine
Have extra kits on hand to sample more outfalls than are
anticipated to be screened in a single day
Label TapeFor labeling sample containers
Sample Containers
Make sure all sample containers are clean and keep extra sample
containers on hand at all times. Confirm sample containers are
appropriate for what is being sampled for (i.e., sterile containers for
bacteria).
Pry Bar. Shovel, or PickFor opening catch basins and manholes
SandbagsFor damming low flows to collect water for sampling
Small Mallet or HammerTo free stuck manhole and catch basin covers
Utility KnifeMultiple uses
Measuring TapeMeasuring distances and depth of flow
Safety ConesTo clearly mark areas where samplers are present
Hand Sanitizer
To disinfect hands and nitrile gloves especially prior to collecting
samples for bacterial analysis
Zip Ties / Duct TapeFor making field repairs
Rubber Boots / WadersFor accessing shallow streams / areas
Sampling Pole / Dipper / Sampling CageFor accessing hard to reach outfalls and manholes
5-Gallon Bucket w / CoverDisposal of chemical waste
Confined Space Entry Equipment (if
needed)
DBI Sali Tripod and retrieval wench; MSA Tripod, rescue wench and
material / personal wench; full body harness; 10'ladder; waders; hard
hat; air monitoring equipment (Ventis 4 gas meter)
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Table 10: Sampling Parameters and Analysis Methods
Threshold Limits in aMax. Hold
Analyte / IndicatorInstrumentationPreservatives
Single Field SampleTime
E. Coli> 410 cfu / 100 ml
Enterococci> 130 cfu / 100 ml
Laboratory via approved
methodCool >10 C,
8 hours
Laboratory via approved0.0008% Na2S2O3
method
MBAS Field Test Kit (e.g.
> 0.25 mg / l
CHEMetrics K-9400)
Surfactants48 hoursCool >6 C
Laboratory via approved
> 0.1 mg / l
method
> 0.5 mg / l
Ammonia Field TestCool >6 C, H2SO4 to
Strips (e.g. Hach Brand)pH < 2, No
Ammonia (NH3)28Lab oradtoray vyia sapprovp ed
reservative
> 0.1 mg / lrequired if analyzed
method
immediately
Analyze
Field Meter (e.g. Hach
Chlorine> 0.02 mg / 1withinNone Required
Pocket Colorimeter II)
15 minutes
Field Meter (e.g. YSI
TemperatureN / AImmediateNone Required
Model 30)
Field Meter (e.g. YSI
ConductivityN / A28 daysCool >6 C
Model 30)
Field Meter (e.g. YSI
SalinityN / A28 Modd el a 30)y
sCool >6 C
Notes:
Where water is being discharged directly into an impaired water body subject to an approved TMDL, the sample must be
analyzed for the pollutant(s) of concern identified as the cause of the water quality impairment.
According to the 2016 MS4 Permit and Consent Decree, all analyses, except for indicator bacteria and
pollutants of concern, can be performed with field tests or field instrumentation and are not subject to
40 CFR part 136 requirements. Sampling for bacteria and pollutants of concern shall be conducted using
the analytical methods found in 40 CFR 136, or alternative methods approved by EPA in accordance
with the procedures in 40 CFR 136 .
The City, facilitated by Kleinfelder, is responsible for selecting a laboratory or field kits intended for
measuring each analyte. When selecting field kits, Kleinfelder will review the detection range for each
field kit and ensure it corresponds to the threshold limits for each analyte of interest, as listed in Table
10-. These limits will be communicated to the laboratory so that the laboratory's instrumentation can be
properly calibrated to account for the threshold concentrations. In addition, each analyte has a
9
United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small
municipal. - US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
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corresponding analytical method, as per Appendix G of the 2016 MS4 General Permit 10 --, that each field
kit and laboratory analysis shall utilize to ensure compliance. Lastly, as per 40 CFR 136 11'maximum
holding times and preservation requirements should be communicated to the laboratory. This is not
applicable for field kits since samples are analyzed instantaneously after sample collection. Table 10
summarizes this information, which should be shared with the selected laboratory to ensure compliance
with the Consent Decree.
Testing for indicator bacteria and any pollutants of concern must be conducted using analytical methods
and procedures found in 40 CFR 136. Samples for laboratory analysis must be stored and preserved in
accordance with procedures found in 40 CFR 136. Table 10 is a list of analytical methods, detection
limits, hold times, and preservatives for laboratory analysis of dry weather sampling parameters.
6.3 INTERPRETING OUTFALL SAMPLING RESULTS
Outfall analytical data from dry weather sampling can be used to help identify the major type or source
of discharge. Screening values that exceed these benchmarks indicate the presence of pollution and / or
illicit discharges.
Evaluation of sample data can show positive results due to sources other than human wastewater and
false negative results due to chemical reactions or interferences. For example, elevated ammonia
readings are common in the New England region due to sampling near historically filled tidal wetlands
where the breakdown of biological organic material can skew sample results. The same elevated
ammonia readings can also be triggered by discharge from a nearby landfill. In addition, elevated
surfactant readings caused by salinity levels greater than one (1) part per thousand can be triggered by
the presence of oil. Inconclusive surfactant readings, where the indicator ampule turns green instead of
a shade of blue, can often be caused by fine suspended particulate matter being present in the sample
being tested. Finally, very low bacteria concentrations can often be the result of elevated chlorine from
leaking drinking water infrastructure inhibiting bacterial growth. As such, any detection of chlorine
above the instrument Reporting Limit should be noted.
10 United States Environmental Protection Agency (EPA). (n.d.). Appendix G Massachusetts Small MS4 Permit
Monitoring Requirements For Discharges into Impaired Waters - Parameters and Methods. Retrieved January
30, 2023, from https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/appendix-g-2016-ma-sms4-
gp.pdf.
11 The Federal Register. Federal Register. (n.d.). Retrieved January 30, 2023, from https://www.ecfr.gov/current/title-
40 / chapter-1 / subchapter - D / part-136? toc = 1.
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6.4 FOLLOW - UP RANKING OF OUTFALLS AND INTERCONNECTIONS
The City updates its outfall and interconnection priority rankings (see Appendix A) based on information
gathered during dry weather screening. Outfalls or interconnections are placed at the top of the priority
list when investigations or sampling results indicate there is a high likelihood that illicit discharges from
sanitary sources are entering stormwater.
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This section of the IDDE describes the catchment investigation procedure to investigate outfall
catchments to trace the source of potential illicit discharges. The MS4 Permit requires catchment
investigations for outfalls and / or interconnections to begin no later than June 30, 2020, and that all
catchments affiliated with problem outfalls be investigated by June 30, 2025. Catchment investigations
affiliated with all the other high and low priority outfalls must be completed by June 30, 2028.
Catchment investigation techniques include, but are not limited to, reviewing maps, historic plans, and
records. Data collected during catchment investigations will be recorded and reported in each annual
report. Infrastructure information gathered during catchment investigations will be incorporated into
the MS4 maps.
7.1 DRY WEATHER MANHOLE INSPECTIONS
(Consent Decree Term # 13)
A key step in catchment investigations is dry weather investigations of the manholes in the storm drain
network. Investigations involve systematically and progressively observing, sampling, and evaluating key
junction manholes, defined as follows:
Junction Manhole is a manhole or structure with two or more inlets accepting flow from two or
more MS4 alignments. Manholes with inlets that are only from private storm drains, individual
catch basins, or both are not considered junction manholes for these purposes.
Key Junction Manholes can represent one or more junction manhole. Adequate
implementation of the IDDE program would not be compromised if the exclusion of a particular
junction manhole as a key junction manhole would not affect the permittee's ability to
determine the possible presence of an upstream illicit discharge. Veolia may exclude a junction
manhole located upstream and in the immediate vicinity from another manhole, or one that
serves a drainage alignment that has no potential for illicit connections.
For all catchments requiring investigation during dry weather, Veolia systematically inspects key
junction manholes for evidence of illicit discharges. The program requires progressive inspection and
sampling at manholes to find evidence of illicit discharges and to isolate and eliminate them.
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Prior to manhole inspections property owners will be notified and the storm drain system will be
cleaned, catchment investigations can begin. Veolia's inspections are conducted in one of two ways (or a
combination of both):
Working progressively up from an outfall and inspecting key junction manholes along the way
(" Bottom Up "), and / or
Working progressively down from the upper parts of the catchment towards the outfall (" Top
Down ").
The decision to work bottom up or top down depends on the nature of the drainage system, the land
use, and the availability of information on the catchment and drainage system. A bottom - up approach
can begin immediately when an illicit discharge is detected at an outfall, and only a map of the storm
drain system is required. A top - down approach requires more advance preparation and reliable drainage
system information on the upstream segments of the storm drain system but may be more efficient if
the sources of illicit discharged are believed to be located in the upstream portions of the catchment
area.
Once an inspection direction has been chosen, the investigation can then begin with key junction
manholes and mainline manholes. From there, the inspection can continue towards junction manholes
and other manholes, if needed, with the purpose to isolate any illicit discharges. The specific steps are as
follows:
1. Manholes are opened and inspected for visual and olfactory evidence of illicit connections
during dry weather. Visual evidence may include toilet paper, gray filamentous bacterial growth,
sanitary products, sewage, soap, food, or other indications of anything other than stormwater.
Olfactory evidence may include sewage, soap, laundry, bleach, or other odors not typical of
stormwater. Sample outfall and manhole inspection forms are in Appendix E.
2. When possible, condition information and measured elevation of the manhole rim as well as the
invert depth should be recorded.
3. If flows are observed, the inlet and outlet direction of the flow should be recorded.
4. If no flow is observed, record whether the manhole is dry or has standing water and move on to
the next manhole upstream or downstream.
5. As the investigation follows the catchment upstream or downstream, only the most upstream
manhole with flow should be sampled. For example, if flow is observed at an outfall, as well as
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at the next three (3) manholes upstream, then only sample and test at the third manhole
upstream. Testing should include chlorine, ammonia, surfactants, conductivity, salinity, and
temperature. Refer to Section 6.2.3 Sample Collection and Testing for information on when to
take E. Coli bacteria samples. Refer to Table 10 for threshold limits for each analyte.
6. If sampling results or visual or olfactory observations indicate potential illicit discharges or SSOS,
Veolia flags the area draining to the junction manhole for further upstream investigation and / or
isolation and confirmation of sources.
7. Additional key junction manhole inspections will proceed until the location of the suspected
illicit discharge(s) or SSO(s) are located and isolated to a pipe segment between two manholes.
8. If no evidence of an illicit discharge is found, the catchment investigation is complete upon
completion of key junction manhole sampling.
7.2 WET WEATHER OUTFALL SAMPLING
(Consent Decree Term # 14)
Catchments that have a minimum of one (1) system vulnerability factor (SVF) are screened during wet
weather conditions. These catchments are sampled and inspected to the extent necessary to determine
whether wet weather - induced high flows in sanitary sewers or high groundwater in areas served by
septic systems - results in discharges of sanitary flows to the MS4. Catchment investigations are not
considered complete until wet weather inspections are done.
Wet weather sampling events are scheduled to occur during the spring (March to June) when
groundwater levels are high, and timed to avoid sampling during the first flush of a wet weather event.
At least one (1) wet weather sample is collected and analyzed for: ammonia, chlorine, conductivity,
salinity, E. coli, surfactants (such as MBAS), and pollutants of concern (nitrogen, if discharge directly
flows to the Connecticut River).
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7.3 ILLICIT DISCHARGE IDENTIFICATION, SOURCE ISOLATION, AND CONFIRMATION
Once the source of an illicit discharge is approximated between two manholes, a range of techniques
can be used to isolate and confirm the source of the discharge that may include:
Sandbagging
Smoke Testing
Dye Testing
Video Inspections
Optical Brightener Monitoring
These methods are described in further detail below.
7.3.1 Sandbagging
This technique is used to identify and isolate intermittent sources of illicit discharge or sources having
little perceptible flow. Sandbagging involves placing sandbags or other temporary barriers (caulking,
weirs / plates, etc.) within outlets to manholes to form a temporary dam that collects any intermittent
flows that may occur. The bags and barriers are only deployed during dry weather conditions and
typically left in place for 48 hours. If water collects behind the barrier after 48 hours, it can be assessed
using visual observations or by sampling. If no flow collects behind the sandbag, the upstream pipe
network can be ruled out as a source of intermittent discharge.
7.3.2 Smoke Testing
Smoke testing is used on short sections of pipes or pipes with small diameters. It is used to trace illegal
connections from buildings to the sewer. Smoke testing involves injecting non - toxic smoke into drain
lines and the emergence of smoke from sanitary sewer vents in or from cracks and leaks in the system.
Typically, a smoke bomb or smoke generator is used to inject smoke into a catch basin or manhole.
Before conducting any smoke testing, area residents, business owners, and local police and fire
departments are notified. Smoke can cause minor irritation of respiratory passages. Residents with
respiratory conditions may need to be monitored or evacuated from the testing area to ensure safety.
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7.3.3 Dye Testing
Dye testing involves flushing non - toxic dye into plumbing fixtures (toilets, showers, sinks) and observers
standby at nearby storm drains, sewer manholes, and outfalls. Dye testing is done by a team of two or
more with one person stationed inside the building, while others are stationed at the appropriate storm
sewer and sanitary sewer manhole and / or outfall. The person inside the building adds dye into a
plumbing fixture (sink or toilet) and runs water to move the dye through the system. Employees
stationed outside are notified that the dye has been dropped and watch for the dye in the storm sewer
and sanitary sewer.
Dye testing is best used when the likely source of an illicit discharge has been narrowed down to a few
specific houses or businesses. Before dye testing is done, affected residents, business owners, the local
police and fire departments, and public health staff are notified.
7.3.4 Video Inspections
Video inspections use mobile video cameras that are guided remotely through the stormwater drain
lines to observe possible illicit discharges.
7.3.5 Optical Brightener Monitoring
Optical brighteners are fluorescent dyes that are used in detergents and paper products. The presence
of optical brighteners in surface waters or dry weather discharges indicates a possible illicit discharge or
insufficient wastewater treatment at nearby septic systems or wastewater treatment plants. Optical
brightener monitoring involves placing a cotton pad in a wire cage and securing the cage in a pipe,
manhole, catch basin, or inlet to capture intermittent dry weather flows. The pad is collected and
viewed with a UV light or with a fluorometer to determine the presence or absence of brighteners.
Additional instructions and Standard Operating Procedures (SOPs) for these methods are in Appendix F.
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7.4 ILLICIT DISCHARGE REMOVAL
Once an illicit source is identified, the Veolia Project Manager contacts the City Engineer of Public
Works. The City Engineer, in accordance with legal authorities, notifies all responsible parties and
requires immediate cessation of improper disposal practices. The City and Veolia take appropriate steps
to eliminate the illicit discharge as expeditiously as possible. While the illicit discharge is being
eliminated, all reasonable and prudent steps to minimize the discharge of pollutants to the MS4 are
taken.
When an illicit discharge cannot be removed within 60 days of being identified, the City creates a
schedule for elimination and reports dates and schedules for removal in the annual report.
For each confirmed source, Holyoke documents the following information in its Annual Report:
Location of ID and its source(s);
A description of the discharge;
The method of discovery;
The date of discovery;
* The date of elimination, mitigation or enforcement action or planned corrective measure and a
schedule for completing the ID removal; and
* The estimate of the volume of flow removed.
7.4.1 Confirmatory Outfall or Interconnection Screening
Within one (1) year of removal of all identified illicit discharges within a catchment area, confirmatory
outfall or interconnection screening shall be conducted. If confirmatory screening indicates evidence of
additional illicit discharges, the catchment shall be scheduled for additional investigation. Catchments
investigations are considered complete upon confirmation of all illicit sources.
7.4.2 Ongoing Screening
Once catchment investigations are completed and illicit discharges eliminated and confirmed, each
outfall or interconnection will be reprioritized for screening once every five years. Ongoing screening
consists of dry weather screening and sampling, and wet weather screening and sampling for all outfalls.
Additional instructions and Standard Operating Procedures (SOPs) for these methods are in Appendix F.
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8 TRAINING
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Veolia provides annual IDDE training to all employees involved in the IDDE program. At a minimum,
training includes how to identify illicit discharges and SSOs. Training records, including the frequency
and type, are recorded on a form included in Appendix G and included in the annual report.
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9 ANNUAL REPORT
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Holyoke and Veolia evaluate the progress of their IDDE Program annually. This evaluation is documented
in the annual report and includes:
Number of SSOs and Illicit discharges identified and removed;
Number and percent of total outfall catchments served by the MS4 that have been evaluated
using the catchment investigation procedure;
Number of dry weather outfall inspections / screenings;
Number of wet weather outfall inspections / sampling events;
Number of enforcement notices issued;
All dry weather and wet weather screening and sampling results;
Estimates of the volume of stormwater removed; and
Number of employees trained annually.
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APPENDIX A
OUTFALL AND INTERCONNECTION PRIORITIZATION AND RANKING
20233959.001A / BOS23R154074
May 2023
ED_019088A_00020378-00041
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MS4 OUTFALL AND INTERCONNECTION PRIORITIZATION TABLE
Wet Wet Wet
EPA Dry Dry Dry Dry Wet
ReceivingWeather Weather Weather
Sample Weather Weather Weather Weather Weather
Water BodySurfactant Chlorine Enterococci
Site Ammonia Surfactant Chlorine Enterococci Ammonia
Outfall ID LocationRanking Priority
Water Body
Yes = 1;
= 1; NoneMax: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1
No = 0
O
OUTFALL- Connecticut
TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00001 River
OUTFALL-
00002
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00003
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00004
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00005
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- Pequot
TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00006 Pond
OUTFALL- Pequot
TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00007 Pond
OUTFALL-
00008
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00009
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00010
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- Whiting
00011Reservoir area
Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
WhitingBroad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00012Reservoir area
OUTFALL- Connecticut
SUMMIT AVE1TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *2HIGH
00013 River
OUTFALL- Whiting
00014Reservoir area
Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00015
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00016
TBD *Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
Page 1 of 5
ED_019088A_00020378-00042
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Wet Wet Wet
Recei Ev PAi nDg ry WDe rya tDhre y rD rW y eWaet th
er Weather
Sample Weather Weather Weather Weather Weather
Water BodySurfactant Chlorine Enterococci
Site Ammonia Surfactant Chlorine Enterococci Ammonia
Outfall ID LocationRanking Priority
Water Body
Yes = 1;
= 1; None =Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1
No = 0
0
OUTFALL- Ashley
TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00017 Cutoff
OUTFALL- 16 HOLLY Pequot
00018 MEADOW RD Pond
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- 22 HOLLY Pequot
00019 MEADOW RD Pond
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- Schoolhouse
BOBALA RD0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00020 Brook
OUTFALL- HOMESTEAV
00021 AVE
Wright Pond1TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *2HIGH
OUTFALL- Connecticut
MAIN ST0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00022 River
OUTFALL- Connecticut
MAIN ST0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00023 River
OUTFALL-
00024
North
WHITNEY AVERailRoad0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
Pond
OUTFALL-
00025
North
BOBALA RDRailRoad0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
Pond
OUTFALL- WHITNEY
00026 AVENUE
North
RailRoad0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
Pond
OUTFALL- LOWER Connecticut
00027 WESTFIELD RD River
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- EASTHAMPTON
00028 RD
Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00029
JARVIS AVEBroad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- EASTHAMPTON
00030 RD
Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- EASTHAMPTON
00031 RD
Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL-
00032
LINDOR STBroad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
Page 2 of 5
ED_019088A_00020378-00043
KLEINFELDER
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Wet Wet Wet
EPA Dry Dry Dry Dry Wet
ReceivingWeather Weather Weather
Sample Weather Weather Weather Weather Weather
Water BodySurfactant Chlorine Enterococci
Site Ammonia Surfactant Chlorine Enterococci Ammonia
Outfall ID LocationRanking Priority
Water Body
Yes = 1;
= 1; None =Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1
No = 0
O
2ND LEVEL
OUTFALL- Connecticut
CANAL CABOT0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00033 River
ST
OUTFALL-MAIN ST 3RDConnecticut
00034 LEVEL CANAL River
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- 2ND LEVEL Connecticut
00035 CANAL RACE ST River
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- LONGFELLOW
00036 RD
Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- Schoolhouse
BOBALA RD0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00037 Brook
OUTFALL- LOWER Ashley
00038 WESTFIELD RD Cutoff
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- LOWER Ashley
00039 WESTFIELD RD Cutoff
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- WHITING Connecticut
00040 FARMS RD River
1TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *2HIGH
OUTFALL- WHITING Connecticut
00041 FARMS RD River
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- Connecticut
MAIN ST0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00042 River
OUTFALL- Connecticut
MAIN ST0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00043 River
OUTFALL- Connecticut
MAIN ST0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00044 River
OUTFALL- Schoolhouse
BOBALA ROAD0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00045 Brook
OUTFALL- KNOLLWOOD
00046 CIRCLE
Wright Pond0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- EASTHAMPTON
00047 RD
Broad Brook0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
OUTFALL- Connecticut
MOSHER ST0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00048 River
OUTFALL- Jones Ferry Connecticut
00049 Pump Station River
0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
Page 3 of 5
ED_019088A_00020378-00044
KLEINFELDER
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Wet Wet Wet
Recei EPvAi nDg ry WDe rya tDhre y rD rW y eWaetth
er Weather
Sample Weather Weather Weather Weather Weather
Water BodySurfactant Chlorine Enterococci
Site Ammonia Surfactant Chlorine Enterococci Ammonia
Outfall ID LocationRanking Priority
Water Body
Yes = 1;
= 1; None =Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1
No = 0
O
OUTFALL- Connecticut
TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00050 River
OUTFALL- Connecticut
TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00051 River
OUTFALL- Connecticut
TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00052 River
OUTFALL- Connecticut
TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *1HIGH
00053 River
OUTFALL-
00054
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00055
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00056
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00057
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00058
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00059
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00060
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00061
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00062
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00063
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00064
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00065
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00066
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
OUTFALL-
00067
TBD *TBD *0TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *0LOW
Page 4 of 5
ED_019088A_00020378-00045
KLEINFELDER
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Wet Wet Wet
EPA Dry Dry Dry Dry Wet
ReceivingWeather Weather Weather
Sample Weather Weather Weather Weather Weather
Water BodySurfactant Chlorine Enterococci
Site Ammonia Surfactant Chlorine Enterococci Ammonia
Outfall ID LocationRanking Priority
Water Body
Yes = 1;
= 1; None =Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1Max: 0.1
No = 0
O
OUTFALL-TBD *
00068-
OUTFALL-
West HolyokeTBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *TBD *
000XX
Notes:
1.TBD * - Will be updated with information gathered from future outfall investigation and mapping efforts
2.Previous screening results indicate likely sewer input if any of the following are true:
*Outfalls identified by the EPA in sampling results previously supplied to the City on May 7-8, 2019 and July 7, 2019 based on field test kit screening,
Olfactory or visual evidence of sewage,
Ammonia > 0.5 mg / L, surfactants > 0.25 mg / L, and bacteria levels greater than the water quality criteria applicable to the receiving water,
Ammonia > 0.5 mg / L, surfactants > 0.25 mg / L, and detectable levels of chlorine, or
Any exceedance of a bacteria threshold and any detectable level of ammonia below its threshold
3. Outfalls and interconnections discharging to or in the vicinity of any of the following: public beaches, recreational areas, or drinking water supplies.
4mj
.Receiving water quality based on latest version of MassDEP Integrated List of Waters;
Poor = Waters with approved TMDLs (Category 4a Waters) where illicit discharges have the potential to contain the pollutant identified as the cause of the impairment; also, waters
exceeding the water quality standards for bacteria; ammonia > 0.5 mg / L; surfactants >0.25 mg / L
Fair = Water quality limited waterbodies that receive a discharge from the MS4 (Category 5 Waters)
Good No water quality impairments
5. Generating sites are institutional, municipal, commercial, or industrial sites with a potential to generate pollutants that could contribute to illicit discharges (e.g., car dealers, car washes, gas
stations, garden centers, and industrial manufacturing areas).
6.Age of development and infrastructure: High = developments with stormwater and sewer infrastructure > 40 years old; medium = developments with infrastructure 20-40 years old; Low =
developments with infrastructure < 20 years old.
7. Historic Combined Sewers or Septic: Yes = Areas once served by combined sewers that have been separated, or areas once served by septic that have converted to sanitary sewers.
8. Aging septic systems: Yes = septic systems 30 years or older in residential areas.
9.Local Priority due to Environmental Qualities of the area and land use development.
10. Any river or stream that is culverted for distance greater than a simple roadway crossing.
Page 5 of 5
ED_019088A_00020378-00046
APPENDIX B
EPA SAMPLING REPORT
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20233959.001A / BOS23R154074
May 2023
ED_019088A_00020378-00047
UNITED STATES
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
*
AGENCY
Region I-New England Regional Laboratory
ENVIROPNRMOETNETCATLIOLNab1o1r aTteocrhyn oSleorgvyi Dcreisv ea,n dN oArptphl iCehde lSmcsifeonrcde, DMiAv i0s1i8o6n3
Drafted Date:September 30, 2019
Finalized Date:October 4, 2019
Subject:Holyoke Stormwater
City of Holyoke, MA
Compliance Sampling Inspection Report
From:Michelle Coombs, Investigator, Laboratory Services and Applied Science
Division - Field Services Branch (LSASD - FSB)\ MRC \
Reviewed
By:Jerry Keefe, Investigations Team Leader, LSASD - FSB\ JCK \
To:Denny Dart, Water Compliance Section Chief, Enforcement and Compliance
Assurance Division (ECAD - EWC)
CC:Douglas Koopman, Inspector, ECAD - EWC
I. Facility Information
A. Facility Name:City of Holyoke
B. Facility Location:Holyoke, MA
C. Facility Contact:Michael McManus, General Superintendent
Phone: (413) 322-5645, Email: mcmanusm@holyoke.org
D. NPDES MS4 Permit #: MAR041011
E. NPDES CSO Permit #: MA0101630
II. Background Information
A. Date / Start time of inspection:September 24, 2019 @ 0730 HRS
B. USEPA Representatives:Michelle Coombs and William Sommer
C. Federally Enforceable
Requirements Investigated:40 CFR Part 122.26
D. Pollutants Sampled:E. Coli, Enterococci, Pharmaceuticals and Personal
Care Products (PPCPs), Surfactants, Ammonia, and
Total Chlorine
ED_019088A_00020378-00048
III. Disclaimer:
City of Holyoke, MA
Compliance Sampling Inspection 09/24/2019
Page 2 of 6
Unless otherwise noted, this report describes conditions at the facility / property as observed by
EPA inspector(s), and / or through records provided to and / or information reported to EPA
inspector(s) by facility representatives and as understood by the inspector(s). This report may
not capture all operations or activities ongoing at the time of the inspection. This report does not
make final determinations on potential areas of concern. Nothing in this report affects EPA's
authorities under federal statutes and regulations to pursue further investigation or action.
IV. Type and Purpose of Inspection
The purpose of the compliance sampling inspection was to identify illicit connections or illegal
discharges within the City of Holyoke, MA Municipal Separate Storm Sewer System (MS4)
and / or Combined Sewer System (CSS) that may adversely impact the water quality in the
Connecticut River. Samples were collected from eight (8) locations in accordance with the FSB
Investigations Team Stormwater Program Plan.
V. Inspection Summary
On September 24, 2019, EPA employees Michelle Coombs and William Sommer (" the EPA
Inspection Team ") conducted a compliance sampling inspection of the stormwater system within
the City of Holyoke, MA at the locations described in Section VI. They were not accompanied
by any city or state representatives.
The inspection started in the northern, residential area of the city, at approximately 0730 HRS.
At the time of the inspection, the weather was sunny with an ambient temperature of
approximately 60 F. According to The National Weather Service for the Westfield - Barnes
Municipal Airport, the last amount of recorded precipitation was 0.20 inches on September 14,
2019.
The City of Holyoke, MA was issued NPDES Permit MAR041011 under the National Pollutant
Discharge Elimination System (NPDES) MS4 General Permit Program. The City of Holyoke,
MA is a regulated small MS4 according to the Stormwater Phase II Rule, which was
promulgated and is administered by EPA. The City of Holyoke is authorized to discharge at 11
Combined Sewer Overflow (CSO) locations under the NPDES Permit MA0101630, issued
October 1, 2015.
The applicable sampling locations described in Section VI below were field screened using test
kits for ammonia, surfactants, and chlorine and in - situ measurements for specific conductivity,
salinity, and temperature were also collected and recorded using a YSI meter (those not field
screened / measured are noted as NA). All samples were analyzed for E. Coli and Enterococcus at
Alpha Analytical in Westborough, MA and Pharmaceutical and Personal Care Products (PPCPs)
at the EPA New England Regional Laboratory (NERL) in North Chelmsford, MA. The
following table(s) summarize the findings: Table 1: Summary of Sampling and Analytical Data.
ED_019088A_00020378-00049
City of Holyoke, MA
Compliance Sampling Inspection 09/24/2019
Page 3 of 6
VI. Description of Sampling Locations
Photographs of each location can be found in the photo log (Attachment A).
29Long: A single concrete, circular outfall approximately 24 inches in diameter with an
estimated flow of 5 gallons per minute (gpm). MA-DEP File Number 186-0255. Long, dark
brown filamentous bacteria growth downstream. Outfall is located on the eastern side of
Longfellow Road.
CSO018: A single concrete rectangular culvert approximately 60 inches in diameter with
very little flow and standing water from the pool downstream. The color of the water was an
opaque gray. Outfall is CSO 18 off of St. Kolbe Drive.
CommField: A single concrete, circular outfall approximately 60 inches in diameter with an
estimated flow of 7 gpm. The pool at the mouth of the outfall is a milky, gray color and there
was dark filamentous bacteria growth downstream of the outfall. Outfall is adjacent to the
entrance to the walking trail in Community Field Park.
Summit2: A single, circular, green PVC outfall approximately 12 inches in diameter with a
trickling flow. A slight musty odor was detected, and dark green filamentous bacteria growth
was observed in the pipe and on the rocks below the outfall. An orange precipitate was also
observed in the pool and on the pipe. Outfall is located on the eastern side of Community
Field Park, discharging toward Concord Avenue.
Homestead: A single concrete, circular outfall approximately 24 inches in diameter with an
estimated flow of 10 gpm. The outfall was mostly submerged underwater and the pool
downstream was a slight milky color. The outfall was inaccessible, so the sample was
collected approximately 25 feet downstream. Outfall is located on Homestead Avenue, in
between the Holyoke Fire Station # 6 and the Holyoke Mini Mall.
JPRest: A set of twin, concrete elliptical outfalls approximately 60 inches in length. The
sample was taken at the leftmost outfall (looking downstream). The right facing outfall was
dry at the time of collection. Estimated flow was 8 gpm. Bricks and trash were observed
downstream. Sewage and chlorine odors were detected. Outfall is located across the street
from JP's Restaurant on Whiting Farms Road.
Avis: A single concrete, circular outfall approximately 24 inches in diameter with an
estimated flow of 20 gpm. Outfall is located on the left side of the Rte. 5 bridge culvert
(looking downstream), approximately 20 feet from the end of the concrete flooring. Outfall
flows into Tannery Brook near the Avis car rental building.
Tannery: In - stream sample of Tannery Brook collected at the overflow point from the 12 ft.
by 12 ft. square culvert under the Rte. 5 bridge, downstream of " Avis ".
ED_019088A_00020378-00050
Map of Sample Locations
City of Holyoke, MA
Compliance Sampling Inspection 09/24/2019
Page 4 of 6
Holyoke StormwaterLegend
Approximately locations of sample stations visited during EPA sampling inspection on 09/24/2019
Sample Station
29Long
CSO018
Summit2 CommField
Homestead
JPRest
Avis
Tannery
Google EarthN
Image Landsat / Copernicus2 mi
ED_019088A_00020378-00051
City of Holyoke, MA
Compliance Sampling Inspection 09/24/2019
Page 5 of 6
Table 1: Summary of Sampling and Analytical Data
Site ID 29Long CSO018 CommField Summit2 Homestead JPRest Avis Tannery
Location Sample Time 7:40 8:15 9:20 9:50 10:30 11:09 11:43 11:45
Sample Date09/24/2019 09/24/2019 09/24/2019 09/24/2019 09/24/2019 09/24/2019 09/24/2019 09/24/2019
Coordinates
North42.219930 42.212892 42.204429 42.204267 42.186310 42.177575 42.162306 42.162303
West-72.635849 -72.608700 -72.638261 -72.637113 -72.650480 -72.640585 -72.632826 -72.632724
Salinity, ppt. 0.4 0.2 0.5 0.9 0.2 0.0 0.9 0.8
YSI Meter Temperature, C 18.1 19.0 16.6 19.3 14.3 16.5 15.7 15.8
Conductivity, uS / cm 892 406.1 1034 1867 447.4 93.1 1816 1571
Field Test Kits
(mg / L)
Ammonia 0.0 0.50 0.25 0.0 0.0 0.25 0.30 s,
Chlorine 0.02 0.02 0.05 0.03 0.0 0.14 0.05 NA
Surfactants 0.35 0.10 0.25 0.50 0.25 0.15 0.60 NA
Bacteria
(MPN / 100mL)
E. coli 95.86 816.41 151 < 1 39.5 < 1 6,178 58.76
Enterococcus 209.82 195.1 172.6 770.1 86.24 < 1 1,732.89 116.02
Cotinine 2.4 9.4 ND 1.21 ND 0.431 7.13 ND
Acetaminophen ND 58 ND ND ND ND 844 ND
Pharmaceutical Paraxanthine ND 20 ND ND ND ND 101 ND
and Personal Atenolol ND 8 ND ND ND ND 22.1 ND
Care Products Caffeine 5 130 3.4 ND ND 22.7 363 ND
(ng / L) Metoprolol ND 62 ND ND ND ND 8.25 ND
Diphenhydramine ND 8.4 ND ND ND ND 4.23 ND
Carbamazepine ND 36 ND ND ND ND 9.45 ND
Abbreviations and Notes:
ND: Not Detected Above Reporting Limit
E. Coli: Red > 400col / 100ml, Orange > 200 col / 100ml, Yellow > 50 col / 100ml, Black < 50 col / 100ml
Entero: Red 1000 col / 100ml, Orange > 350 col / 100mL, Yellow > 54 col / 100ml, Black < 54 col / 100ml
NH3: Red >6 mg / L, Orange > 0.5 mg / L, Yellow > 0.25 mg / L, Black < 0.25 mg / L
Cl: Red 1.0 mg / L, Orange > 0.3 mg / L, Yellow > 0.02 mg / L, Black < 0.02 mg / L
Surfactants: Red > 1.0 mg / L, Orange > 0.5 mg / L, Yellow > 0.25 mg / L, Black < 0.25 mg / L (may give false positive at salinity greater than 1 ppt)
PPCP: Dark Pink 100x the RL; Pink > 10x the RL; Light Pink > 3x the RL; No Pink < 3x the RL *
* See Reporting Level (RL) values for each compound in attached Laboratory Report
ED_019088A_00020378-00052
VII. Attachments
City of Holyoke, MA
Compliance Sampling Inspection 09/24/2019
Page 6 of 6
Attachment A: Photo Log
Attachment B: Laboratory Report for Pharmaceuticals and Personal Care Products (Source Tracking)
Analysis
Attachment C: Laboratory Report for E. coli and Enterococcus Analysis
End of Report
ED_019088A_00020378-00053
APPENDIX C
MS4 MAPS
KLEINFELDER
Bright People. Right Solutions.
20233959.001A / BOS23R154074
May 2023
ED_019088A_00020378-00054
Legend
NORTHAMPTONHADLEY
Drainage Outfalls
MS4 (67)
4 Non - MS4 (88)
Drainage Manholes
Drainage Pipes
Combined GravityMain
Sanitary Sewer ManholesLake
Bray
Sewer GravityMain
PTON
Stormwater Catchment
Impaired Rivers (2018)
Category
5
Impaired Lakes & Ponds (2018)
Category
3SOUTH HADLEY
4C
Whiting
5Street
Reservoir
Holyoke Town Boundary
MS4 Urbanized area
SOUTHAMPTON
000
HOLYOKE
Connecticut
River
Log Pond Cove
Clear Pond
Mclean
Reservoir
Wright Pond
Ashley
Cutoff
WESTFIELD Ashley
Pond North
Railroad
Connor Pond
O
Reservoir
CHICOPEE
WEST
SPRINGFIELD
The information included on this graphic representation has been compiled from a variety of
sources and is subject to change without notice. Kleinfelder makes no representations or
INDUSTRIACOPIA
ETPROJECT NO. 20233959.001A
CREATED:5/22/2023 Storm System Map
warranties, express or implied, as to accuracy, completeness, timeliness, or rights to theCREATED BY:STKhan
unosr ies it odefsi gnesd uor cinhten deid nas fa oconrstmrucatiton ideosingn .do cumTenht. iThse used oor mcisuusem
ent is not intended for use as a land survey product1873KLEINFELDER
of the information contained on this graphic representation is at the sole risk of the
04,0008,000
party using or misusing the information.HOLYOKEBright People. Right Solutions.CityofHolyoke
CONDITA AD DONATA
Feet
Holyoke, MA
ED_019088A_00020378-00055
APPENDIX D
LEGAL AUTHORITY
KLEINFELDER
Bright People. Right Solutions.
20233959.001A / BOS23R154074
May 2023
ED_019088A_00020378-00056
MODEL
ILLICIT CONNECTIONS AND DISCHARGES
ORDINANCE
Pioneer Valley Planning Commission
City of Holyoke
Illicit Connections and Discharges To
The Municipal Storm Drain System Ordinance
SECTION 1. PURPOSE............ 2
SECTION 2. DEFINITIONS
SECTION 3. APPLICABILITY............
SECTION 4. AUTHORITY.......... 5
SECTION 5. RESPONSIBILITY FOR ADMINISTRATION............ 5
SECTION 6. REGULATIONS............... 5
SECTION 7. PROHIBITED ACTIVITIES................. 5
SECTION 8. EMERGENCY SUSPENSION OF STORM DRAIN SYSTEM ACCESS......... 7
SECTION 10. ENFORCEMENT.......................... 8
SECTION 12. TRANSITIONAL PROVISIONS..10
Illicit Connections Bylaw / Ordinance
ED_019088A_00020378-00057
SECTION 1. PURPOSE
The purpose of this ordinance is to regulate illicit connections and discharges to the storm drain
system, which is necessary for the protection of the City of Holyoke's water bodies, wetlands,
and groundwater, and to safeguard the public health, safety, welfare and the environment.
The objectives of this ordinance are:
(1) To prevent pollutants from entering the municipal separate storm sewer system;
(2) To prohibit illicit connections and unauthorized discharges to the stormwater system;
(3) To require the removal of all such illicit connections;
(4) To comply with state and federal statutes and regulations relating to stormwater
discharges;
(5) To establish the legal authority to ensure compliance with the provisions of this ordinance
through inspection, monitoring, and enforcement.
Increased and contaminated stormwater runoff are major causes of:
(1) Impairment of water quality and flow in lakes, ponds, streams, rivers, wetlands and
groundwater;
(2) Contamination of drinking water supplies;
(3) Alteration or destruction of aquatic and wildlife habitat; and
(4) Local flooding.
SECTION 2. DEFINITIONS
For the purposes of this ordinance, the following shall mean:
Active Groundwater Dewatering (AGD) Device: Any active device used to transport
groundwater, i.e. a sump pump.
Authorized Enforcement Agency: The Director of the Department of Public Works or designated
representative, its employees or agents designated to enforce this ordinance.
Best Management Practice (BMP): An activity, procedure, restraint, or structural improvement
that helps to reduce the quantity or improve the quality of stormwater runoff. BMPs also include
treatment practices, operating procedures, and practices to control site runoff, spillage or leaks,
sludge or water disposal, or drainage from raw materials storage.
Clean Water Act: The Federal Water Pollution Control Act (33 U.S.C. 1251 et seq.) as
hereafter amended.
Discharge of Pollutants: The addition from any source of any pollutant or combination of
pollutants into the municipal storm drain system or into the waters of the United States or
Commonwealth from any source.
Grandfathered: Exempt from new legislation, restrictions, or requirements.
Groundwater: All water beneath the surface of the ground.
Illicit Connections Bylaw / Ordinance
2
ED_019088A_00020378-00058
Illegal Discharge: Any direct or indirect non - stormwater discharge to the municipal storm drain
system, except as specifically exempted in Section 7 of this ordinance. The term does not
include a discharge in compliance with an NPDES Storm Water Discharge Permit or resulting
from fire fighting activities exempted pursuant to Section 7 of this ordinance.
Illicit Connection: Any surface or subsurface drain or conveyance, which allows an illegal
discharge into the municipal storm drain system. Illicit connections include conveyances which
allow a non - stormwater discharge to the municipal storm drain system, including: sewage,
process wastewater or wash water and any connections from indoor drainages sinks, or toilets,
regardless of whether said connection was previously allowed, permitted, or approved before
the effective date of this ordinance.
Impervious Surface: Any material or structure on or above the ground that prevents water from
infiltrating the underlying soil. Impervious surface includes, without limitation, roads, paved
parking lots, sidewalks, and roof tops.
Municipal separate storm sewer system (MS4) or municipal storm drain system: The system of
conveyances designed or used for collecting or conveying stormwater, including any road with a
drainage system, street, gutter, curb, inlet, piped storm drain, pumping facility, retention or
detention basin, natural or man - made or altered drainage channel, reservoir, and other drainage
structure that together comprise the storm drain system owned or operated by the City of
Holyoke.
National Pollutant Discharge Elimination System (NPDES) Storm Water Discharge Permit: A
permit issued by United States Environmental Protection Agency or jointly with the State that
authorizes the discharge of pollutants to waters of the United States.
Non - Stormwater Discharge: Any discharge to the municipal storm drain system not composed
entirely of stormwater.
Person: Any individual, partnership, association, firm, company, trust, corporation, and, any
agency, authority, department or political subdivision of the Commonwealth or the federal
government, to the extent permitted by - law, and any officer, employee, or agent of such person.
Pollutant: Any element or property of sewage, agricultural, industrial or commercial waste,
runoff, leachate, heated effluent, or other matter whether originating at a point or nonpoint
source, that is or may be introduced into any sewage treatment works or waters of the
Commonwealth. Pollutants shall include:
(1) paints, varnishes, and solvents;
(2) oil and other automotive fluids;
(3) liquid and solid wastes and yard wastes;
(4) refuse, rubbish, garbage, litter, or other discarded or abandoned objects, ordnances,
accumulations and floatables;
(5) pesticides, herbicides, and fertilizers;
Illicit Connections Bylaw / Ordinance
3
ED_019088A_00020378-00059
(6) hazardous materials and wastes; sewage, fecal coliform and pathogens;
(7) dissolved and particulate metals;
(8) animal wastes;
(9) rock; sand; salt, soils;
(10) construction wastes and residues;
(11) and noxious or offensive matter of any kind.
Process wastewater means any water which, during manufacturing or processing, comes into
direct contact with or results from the production or use of any material, intermediate product,
finished product, or waste product.
Recharge: The process by which groundwater is replenished by precipitation through the
percolation of runoff and surface water through the soil.
Storm Drain System: The system of conveyance designed or used for collecting or conveying
stormwater, including any road with a drainage system, street, gutter, curb, inlet, piped storm
drain, pumping facility, retention, or detention basin, natural or man - made or altered drainage
channel, reservoir, and other drainage structure that together comprise the storm drain system
on public or private ways within the City of Holyoke.
Stormwater: Runoff from precipitation or snow melt.
Toxic or Hazardous Material or Waste: Any material, which because of its quantity,
concentration, chemical, corrosive, flammable, reactive, toxic, infectious or radioactive
characteristics, either separately or in combination with any substance or substances,
constitutes a present or potential threat to human health, safety, welfare, or to the environment.
Toxic or hazardous materials include any synthetic organic chemical, petroleum product, heavy
metal, radioactive or infectious waste, acid and alkali, and any substance defined as Toxic or
Hazardous under M.G.L. Ch.21C and Ch.21E, and the regulations at 310 CMR 30.000 and 310
CMR 40.0000.
Wastewater: any sanitary waste, sludge, or septic tank or cesspool overflow, and water that
during manufacturing, cleaning or processing, comes into direct contact with or results from the
production or use of any raw material, intermediate product, finished product, byproduct or
waste product.
Watercourses: A natural or man - made channel through which water flows or a stream of water,
including a river, brook or underground stream.
Waters of the Commonwealth: all waters within the jurisdiction of the Commonwealth, including,
without limitation, rivers, streams, lakes, ponds, springs, impoundments, estuaries, wetlands,
costal waters, and groundwater.
Illicit Connections Bylaw / Ordinance
ED_019088A_00020378-00060
SECTION 3. APPLICABILITY
This ordinance shall apply to all flows entering the storm drain system owned and operated by
the City of Holyoke.
SECTION-4. AUTHORITY
This bylaw / ordinance is adopted under the authority granted by the Home Rule Amendment of
the Massachusetts Constitution and the Home Rule Procedures Act, and pursuant to the
regulations of the federal Clean Water Act found at 40 CFR 122: 34.
SECTION 5. RESPONSIBILITY FOR ADMINISTRATION
The Director of the Department of Public Works or designated representative shall administer,
implement and enforce this ordinance. Any powers granted to or duties imposed upon the
Director of the Department of Public Works may be delegated in writing by the Director of the
Department of Public Works to employees or agents of the Department of Public Works.
SECTION _6. REGULATIONS
The Director of the Department of Public Works may promulgate rules and regulations to
effectuate the purposes of this ordinance. Failure by the Director of the Department of Public
Works to promulgate such rules and regulations shall not have the effect of suspending or
invalidating this ordinance.
SECTION 7. PROHIBITED ACTIVITIES
1. Illegal Discharges
No person shall dump, discharge, cause or allow to be discharged any pollutant or non-
stormwater discharge into any storm drain system, watercourse, or into the waters of the
Commonwealth. Emergency pumping performed by the Fire Department must utilize
appropriate best management practices (BMPs) and follow hazardous materials disposal
guidelines to prevent contamination of the municipal storm drain system with hazardous
materials. If hazardous materials are observed within the flooded area from the activities
noted above, or are suspected to be contained therein, a qualified hazmat technician and
applicable state and local agencies must be consulted. These agencies will be responsible
for implementing the BMPs to the contamination of nearby water ways and the municipal
storm drain system.
2. Illicit Connections
No person shall construct, use, allow, maintain or continue any illicit connection to the
municipal storm drain system, regardless of whether the connection was permissible under
applicable law, regulation or custom at the time of connection. No grandfathering is
permitted.
Illicit Connections Bylaw / Ordinance
5
ED_019088A_00020378-00061
3. Obstruction of the Municipal Storm Drain System
No person shall obstruct or interfere with the normal flow of stormwater into or out of the
storm drain system without prior approval from the Director of the Department of Public
Works or designated representative. No person shall dump or dispose of yard waste
(leaves, grass clippings, etc.) into the MS4, or into open watercourses (swales, brooks and
streams).
Could add the following to elaborate if desired:
a. Drains - No one shall tie any pump, cellar, yard, roof or area drain directly into the storm
drain system without approval from the Applicable Authority.
b. Catch Basins - No Person shall directly or indirectly dump, discharge or cause or allow to be
discharged into any catch basin, any solid waste, construction debris, paint or paint product,
antifreeze, hazardous waste, oil, gasoline, grease and all other automotive and petroleum
products, solvents and degreasers, drain cleaners, commercial or household cleaners, soap,
detergent, ammonia, food and food waste, grease or yard waste, animal feces, dirt, sand
gravel or other pollutant. Any person determined by the applicable authority to be responsible
for the discharge of any of the above substances to a catch basin may be held responsible
for cleaning the catch basin and any other portions of the storm water system impacted
according to City / Town standards and requirements or paying the cost for such cleaning. In
addition, the Person shall be responsible for paying any penalties assessed by the City / Town.
C. Septage - No person shall discharge or cause or allow to be discharged any septage, or
septage tank or cesspool overflow into the City / Town's storm drain system.
d. Storage & Disposal of Hazardous Material - No one shall dispose of anything other than
clear water into the City / Town's storm drain system. The disposal of waste, gasoline or any
other hazardous material into the storm drain system is strictly prohibited and is in violation of
state and federal pollution laws.
e. Private drainage systems - It is prohibited for anyone with a private drainage system from
tying into the public storm drain system without written approval from the Applicable
Authority. The maintenance of any and all private drainage systems shall be the responsibility
of the owners.
4. Exemptions
This section shall not apply to any of the following non - stormwater discharges or flows
provided that the source is not a significant contributor of a pollutant to the storm drain
system.
(a.) Discharges or flows resulting from fire fighting activities;
(b) Municipal waterline flushing
(c) Discharges from landscape irrigation or lawn watering
(d) Diverted stream flows
Illicit Connections Bylaw / Ordinance
6
ED_019088A_00020378-00062
(e) Rising groundwater
(f) Uncontaminated groundwater infiltration as defined in 40 CFR 35.2005 (20), or
uncontaminated pumped groundwater
(g) Flows from potable water sources
(h) Water from exterior foundation drains, footing drains (not including active groundwater
dewatering systems)
(i) Irrigation water, springs
(j)Water from crawl space pumps
(k) Water from individual residential car washing
(1)Natural flows from riparian habitats and wetlands
(m) Discharges from de - chlorinated swimming pool water provided it is allowed to stand for
one week prior to draining, or tested for chlorine levels with a pool test kit prior to
draining (less than one parts per million chlorine), and the pool is drained in such a
way as not to cause a nuisance;
(n) Discharges from street sweepers of minor amounts of water during operation and
other storm drain system maintenance;
(o) Dye testing, provided notification is given to the Director of the Department of Public
Works or designated representative prior to the time of the test;
(p) Non - stormwater discharges permitted under an NPDES permit, waiver, or waste
discharge order administered under the authority of the United States Environmental
Protection Agency, provided that the discharge is in full compliance with the
requirements of the permit, waiver, or order and applicable laws and regulations;
(q) Discharges for which advanced written approval is received from the Director of the
Department of Public Works or designated representative if necessary to protect public
health, safety, welfare or the environment.
(r) Emergency repairs to either the municipal storm drain system, or any stormwater
management structure or practice that poses a threat to public health or safety, or as
deemed necessary by the Town.
SECTION 8. EMERGENCY SUSPENSION OF STORM DRAIN SYSTEM ACCESS
The Director of the Department of Public Works or designated representative may suspend
storm drain system access to any person or property without prior written notice when such
suspension is necessary to stop an actual or threatened illegal discharge that presents or may
present imminent risk of harm to the public health, safety, welfare or the environment. In the
event any person fails to comply with an emergency suspension order, the Director of the
Illicit Connections Bylaw / Ordinance7
ED_019088A_00020378-00063
Department of Public Works or designated representative may take all reasonable steps to
prevent or minimize harm to the public health, safety, welfare or the environment.
Not required by MS4 permit, but may be useful addition in some municipalities:
SECTION WATERCOURSE PROTECTION
Every person owning property through which a watercourse passes, or such person's lessee, shall keep
and maintain that part of the watercourse within the property free of trash, debris, and other obstacles that
would pollute, contaminate, or significantly retard the flow of water through the watercourse. In addition,
the owner or lessee shall maintain existing privately owned structures within or adjacent to a watercourse
so that such structures will not become a hazard to the use, function, or physical integrity of the
watercourse.
Failure by the property owner to maintain the watercourse does not constitute an obligation on the part of
the Town to assume this responsibility.
SECTION 9. NOTIFICATION OF SPILLS
Notwithstanding any other requirements of local, state or federal law, as soon as any person
responsible for a facility or operation, or responsible for emergency response for a facility or
operation has information of any known or suspected release of materials at that facility
operation which is resulting or may result in illegal discharge of pollutants that person shall take
all necessary steps to ensure containment, and cleanup of the release. In the event of a
release of oil or hazardous materials, the person shall immediately notify the municipal fire and
police departments, the Director of the Department of Public Works or designated
representative, and the Massachusetts Department of Environmental Protection (if release is
reportable as defined by 310 CMR 40.00). In the event of a release of non - hazardous material,
said person shall notify the Director of the Department of Public Works or designated
representative no later than the next business day. Written confirmation of all telephone,
facsimile or in person notifications shall be provided to the Director of the Department of Public
Works or designated representative within three business days thereafter. If the discharge of
prohibited materials is from a commercial or industrial facility, the facility owner or operator of
the facility shall retain on - site a written record of the discharge and the actions taken to prevent
its recurrence. Such records shall be retained for at least three years.
SECTION 10. ENFORCEMENT
1. The Director of the Department of Public Works or an authorized agent of the Department of
Public Works shall enforce this ordinance, and the regulations promulgated thereunder, as
well as the terms and conditions of all permits, notices, and orders, and may pursue all civil
and criminal remedies for such violations.
2. Orders
The Director of the Department of Public Works or designated representative may issue a
written order to enforce the provisions of this ordinance or the regulations thereunder, which
include, but are not limited to:
(a) Elimination of illicit connections or discharges to the storm drain system;
(b) Termination of access to the storm drain system;
Illicit Connections Bylaw / Ordinance
8
ED_019088A_00020378-00064
(c) Performance of monitoring, analyses, and reporting;
(d) Cessation of unlawful discharges, practices, or operations;
(e) Remediation of contamination in connection therewith.
(f) Implementation of source control or treatment BMPs
If the Director of the Department of Public Works or designated representative determines
that abatement or remediation of contamination is required, the order shall set forth a
deadline for completion of the abatement or remediation. Said order shall further advise
that, should the violator or property owner fail to abate or perform remediation within the
specified deadline, the City of Holyoke may, at its option, undertake such work and
expenses thereof shall be charged to the violator or property owner.
Within thirty (30) days after completing all measures necessary to abate the violation or to
perform remediation, the violator and the property owner will be notified of the costs incurred
by the City of Holyoke, including administrative costs for which payment is due to the City of
Holyoke. The violator or property owner may file a written protest or appeal objecting to the
amount or basis of costs with the City Council within thirty (30) days of receipt of the
notification of the costs incurred. If the amount due is not received by the expiration of the
time in which to file a protest or within thirty (30) days following a decision of the City Council
or designated representative affirming or reducing the costs, or from a final decision of a
court of competent jurisdiction, the costs shall become a special assessment against the
property owner and shall constitute a lien on the owner's property for the amount of said
costs pursuant to MGL Ch. 40, 58. Interest shall begin to accrue on any unpaid costs at
the statutory rate provided in M.G.L. Ch. 59, 57 after the thirty - first day at which the costs
first become due.
3. Equitable Remedy
If anyone violates the provisions of this ordinance, regulations, permit, notice, or order
issued thereunder, the Director of the Department of Public Works or designated
representative may seek injunctive relief in a court of competent jurisdiction to restrain the
person from activities which would create further violations or compelling the person to
abate or remediate the violation.
4. Criminal penalty
Any person who violates any provision of this Bylaw / Ordinance, regulation, order or written
approval issued thereunder, shall be punished by a fine not to exceed $ 300 per violation.
Each day or part thereof that such violation occurs or continues shall constitute a separate
offense.
5. Non - Criminal Disposition
As an alternative to criminal prosecution or civil action, the City of Holyoke may elect to
utilize the non - criminal disposition procedure set forth in M.G.L. Chapter 40, 21D. The
Director of the Department of Public Works or designated representative shall be the
enforcing person. The penalty for the 1st violation shall be up to $ 100. The penalty for the
2nd violation shall be $ 200. The penalty for the 3rd and subsequent violations shall be
$ 300.00. Each day or part thereof that such violation occurs or continues shall constitute a
separate offense.
Illicit Connections Bylaw / Ordinance
ED_019088A_00020378-00065
6. Right - of - Entry
To the extent permitted by state law, or if authorized by the owner or other party in control of
the property, the Director of the Department of Public Works or designated representative,
its agents, officers, and employees may enter upon privately owned property for the purpose
of performing their duties under this ordinance and regulations and may make or cause to
be made such examinations, surveys or sampling as the Director of the Department of
Public Works or designated representative deems reasonably necessary
Be advised that any entry without express permission of the owner should be by warrant. Generally, the
4th Amendment to the U.S. Constitution prohibits entry onto private property without the express consent
of the owner or person in charge, a warrant or exigent circumstances. Although there are similar
provisions in regulations concerning commercial uses, residential property is generally afforded greater
protections. Because private property rights are generally afforded rigid protections by Massachusetts
courts, use of this provision may expose the Town to liability. Therefore, if you are going to include this
provision, I recommend that it be used sparingly.
Recommendation to Town of Belchertown by Koppleman & Paige
7. Appeals
The decisions or orders of the Director of the Department of Public Works shall be final.
Further relief shall be to a court of competent jurisdiction.
8. Remedies Not Exclusive
The remedies listed in this ordinance are not exclusive of any other remedies available
under any applicable federal, state or local law.
SECTION-11. SEVERABILITY
If any provision, paragraph, sentence, or clause, of this Bylaw / Ordinance or the application
thereof to any person, establishment, or circumstances, shall be held invalid for any reason,
such invalidity shall not affect any other provisions or applications of this Bylaw, and shall
continue in full force and effect.
SECTION 12. TRANSITIONAL PROVISIONS
Property owners shall have
days from the effective date of the ordinance to comply with
its provisions provided good cause is shown for the failure to comply with the ordinance during
that period unless local, state, or federal agencies deem that immediate actions are warranted
Illicit Connections Bylaw / Ordinance
10
ED_019088A_00020378-00066
APPENDIX E
FIELD INSPECTION FORMS
KLEINFELDER
Bright People. Right Solutions.
20233959.001A / BOS23R154074
May 2023
ED_019088A_00020378-00067
Manhole Inspection ReportStructural Information:
MH #ACover Size:24 " 30 " Other:
Catchment Area:
Inspector:
MH Size:4 '5 'Other:
MH Sump:Y / NSump Depth:
Date / Time:BCMH Channel:Y / N
Weather:
Street / Location:
Weir:Y / N Rim to Top of Weir:
General Comments:
Internal Drop:Y / N
(Hold " D " as outlet)
DDepth to Wet Ring from Rim:
General Information:
Manhole Type: Sanitary Storm Combined Common
Location of MH: Roadway Sidewalk Roadside Alley Easement Other
Manhole Material:BrickClay BlockPoured ConcreteManhole BlockPrecast ConcreteOther
Paved Area Around MH:SatisfactoryCrackedMissing PavementVegetation Growth
Unpaved Area Around MH: SatisfactoryEroded
Odors:
Recommendations:No ActionRebuildLine Manhole WallReset FrameClean / Remove debris from Invert
Field Test Kit Results:
Pipe (A-F):
Ammonia, mg / L (Compliant > 0.5 mg / L)
Surfactants, mg / L (Compliant > 0.25 mg / L)
Chlorine, mg / L (Compliant < 0.02 mg / L)
Pipe Information:
PipeFrom / ToInvert DepthFlow DepthDebris Depth
MaterialConditionFlowClarity of Flow
SizeMH #(from Rim)(from Invert)(from Invert)
A.
B.
C.
D.
E.
F.
ED_019088A_00020378-00068
OUTFALL INVENTORY FIELD SHEET
Section 1: Background Data
City / Town:Street:Tax Map #:Outfall ID: OF-
Owner:CityStatePrivateOther:Nearest House / Utility Pole #:
Today's date:Time (Military):
Investigators:Form completed by:
Temperature ( F):Rainfall (in.): Last 24 hours:Last 48 hours:
Northing:Easting:GPS Unit:GPS LMK #:
Rim Elevation:Invert Elevation:
Elevation Datum:Receiving Water:
Camera:Photo #s:-- Take 1 Upstream (head on) and 1 Downstream view
Land Use in Drainage Area (Check all that apply):
IndustrialOpen Space
Urban ResidentialInstitutional
Suburban ResidentialOther:
CommercialKnown Industries:
Notes (e.g.., origin of outfall, if known):
Section 2: Outfall Description
TYPEMATERIALSHAPEDIMENSIONS (IN.)SUBMERGED
Closed Pipe
RCPCMPCircularSingleDiameter / Dimensions:In Water:
No
PVC HDPE Elliptical DoublePartially
Fully
Steel Box Triple With Sediment:
No
Other: Other: Other: Partially
Fully
Concrete
Pavement / Scupper Trapezoid Depth:
Open drainageEarthenParabolicTop Width:
rip - rap Other: Bottom Width:
Other:
Flow Present?YesNoIf No, Skip to Section 3. If Yes, Notify Town and continue field reconnaissance.
Flow Description
(If present)
TrickleModerateSubstantialFlow Direction (If Present):
Section 3: Sketch
Page 1 of 2
ED_019088A_00020378-00069
Outfall Inventory Field Sheet
Section 4: Physical Indicators for Flowing Outfalls Only
Are Any Physical Indicators Present in the flow?YesNo(If No, Skip to Section 5)
CHECK if
INDICATORDESCRIPTIONRELATIVE SEVERITY INDEX (1-3)
Present
SewageRancid / sourPetroleum / gas3-Noticeable from a
Odor1-Faint2-Easily detected
Sulfide Other:distance
Color
ClearBrownGrayYellow1-Faint colors in2-Clearly visible in3-Clearly visible in
Green Orange Red Other: outfall flow outfall flow outfall flow
TurbiditySee severity1-Slight cloudiness2-Cloudy3-Opaque
FloatablesSewage (Toilet Paper, etc.)Suds
-Does Not Include
2-Some; indications3-Some; origin clear
1-Few / slight; originof origin (e.g.,(e.g., obvious oil
Trash!!
Petroleum (oil sheen)Other:not obviouspossible suds or oilsheen, suds, or floating
sheen)sanitary materials)
Section 5: Physical Indicators for Both Flowing and Non - Flowing Outfalls
Are physical indicators that are not related to flow present?YesNo(If No, Skip to Section 6)
CHECK if
INDICATOR DESCRIPTION COMMENTS
Present
Outfall Damage
Spalling, Cracking or ChippingPeeling Paint
Corrosion
Deposits / StainsOily Flow Line Paint Other:
Abnormal VegetationExcessive Inhibited
Poor pool quality
Odors Colors Floatables Oil Sheen
SudsExcessive AlgaeOther:
Pipe benthic growth Brown Orange Green Other:
Section 6: Potential for Illicit Discharge
UnlikelyPotential (presence of two or more indicators)Suspect (one or more indicators with a severity of 3)Obvious
Section 7: Any Non - Illicit Discharge Concerns (e.g., trash or needed infrastructure repairs)?
Page 2 of 2
ED_019088A_00020378-00070
Illicit Discharge Incident Tracking Sheet
Incident ID:
Responder Information (for Citizen - Reported issues)
Call Taken By:Call Date:
Call Time:Precipitation (inches)
in past 24-48 hours:
Observer Information
Date and Time of Observation:Observed During Regular Maintenance or
Inspections? Yes No
Caller Contact Information (optional) or Municipal Employee Information:
Observation Location: (complete one or more below)
Latitude and Longitude:
Stream Address or Outfall #:
Closest Street Address:
Nearby Landmark:
Primary Location DescriptionSecondary Location Description:
Stream Corridor (In or adjacent to stream)OutfallIn - stream FlowAlong
Banks
Upland Area (Land not adjacent to stream)Near StormNear other water source
Drain(stormwater pond, wetland, ect.):
Narrative description of location:
Upland Problem Indicator Description
Dumping Oil / Solvents / Chemicals Sewage
Detergent, suds, etc.Other:
Stream Corridor Problem Indicator Description
OdorNone Sewage] Rancid / Sour Petroleum
(gas)
Sulfide (rottenOther: Describe in " Narrative " section
eggs); natural gas
Appearance " Normal " Oil Sheen Cloudy Foam
Optical enhancersDiscolored
Other: Describe in " Narrative " section
FloatablesNoneSewage (toiletAlgaeTrash or
paper, etc)debris
Other: Describe in " Narrative " section
Narrative description of problem indicators:
Suspected Source (name, personal or vehicle description, license plate #, address, etc.):
July 2013Page 1 of 1
CMRSWC
ED_019088A_00020378-00071
APPENDIX F
INSTRUCTIONS, MANUALS, AND SOPS
KLEINFELDER
Bright People. Right Solutions.
20233959.001A / BOS23R154074
May 2023
ED_019088A_00020378-00072
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
SOP 1: DRY WEATHER OUTFALL INSPECTION
Introduction
Outfalls can be in the form of pipes or ditches and is the final point of discharge into a body of water for an
engineered storm drain system. Current and pending regulations require that all outfalls, that are part of the storm
drain system, be inspected, and that the water quality at these outfalls be analyzed under both dry and wet
weather conditions. " SOP 2: Wet Weather Outfall Inspection, " covers the objectives for wet weather outfall
1
inspections. This SOP discusses the objectives of dry weather outfall inspections.
During a dry weather period, it is expected that minimal flow will be observed, if at all, at any stormwater outfall.
As such, the objective of dry weather outfall inspections is to analyze the presence of any flow at each stormwater
outfall and identify any potential source(s) of an illicit discharge further described in " SOP 3: Locating Illicit
Discharges. "
As per the Consent Decree, by May 31st, 2023, the City of Holyoke (the City) shall submit to the EPA for review an
Illicit Discharge Detection and Elimination (IDDE) Plan which includes screening and monitoring all known MS4
outfalls and interconnections under dry weather conditions. As defined in the Consent Decree, the City shall
conduct dry - weather inspections only when no more than 0.1 inches of rainfall or significant snowmelt has
2
occurred in the preceding 24 hours, but 48 hours when possible. Unlike wet weather sampling, dry weather
inspections are not intended to capture a " first flush " event, but rather identify any discharge that may be present
at a stormwater outfall during a period without recorded rain or snowmelt in order to facilitate the detection of an
illicit discharge.
Catchment Investigations
In order to determine the approximate location of suspected illicit discharges, the first step is to complete an
investigation of the storm drain system under dry weather conditions. This includes systematically and
progressively observing, sampling, and evaluating key junction manholes and sump manholes within the City. The
City's DPW is responsible for completing catchment investigations, incorporating updates to the City's
infrastructure into their storm system maps, and refining catchment delineations based on field investigations.
1
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
2
Civil Action No. 19-CV-10332-MGM: Final Consent Decree. " United States District Court for the District of Massachusetts, United
States and Massachusetts v. City of Holyoke, September 27, 2022.
Project No. 20233959.001Page 1 of 11February 2023
2023 Kleinfelderwww.kleinfelder.com
KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
ED_019088A_00020378-00073
COPLA
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
As per the 2016 Massachusetts Small MS4 General Permit, the following definitions of important terms related to
3
the dry weather manhole inspection program are as follows:
Junction Manhole is a manhole or structure with two or more inlets accepting flow from two or more
alignments. Manholes with inlets solely from private storm drains, individual catch basins, or both are not
considered junction manholes for these purposes.
Key Junction Manholes are those junction manholes that can represent one or more junction manholes
without compromising adequate implementation of the illicit discharge program. A permittee may
exclude a junction manhole located upstream from another located in the immediate vicinity or that is
serving a drainage alignment with no potential for illicit connections. A pictorial example of junction
manholes and how they relate to key junction manholes can be found in Figure 1 below.
Junction
Manholes
Key Junction
Manhole
Figure 1-Junction vs. Key Junction Manholes
* Common Manholes have connections to both the sewer and drain system and therefore provide a
potential for cross - contamination.
In addition to the manhole types identified above, sump manholes may also be located in the City's system. These
structures have a significant difference in elevation between the bottom of the structure and bottom of the outlet
pipe. This difference in elevation, also known as a sump, could potentially allow illicit discharges to collect and, as a
result, not flow downstream. In preparation for field inspections, the City's DPW should identify all key junction
manholes, mainline sump manholes, as well as any potential connections to other catchments such as weirs or
overflows. These structures will then systematically be inspected for evidence of illicit discharges, and if found,
eventual isolation and elimination.
Prior to field investigations, the City shall notify property owners of upcoming investigations via flyers and / or door
hangers. Ideally, storm drains and sump manholes should be cleaned prior to investigations, but it is not required.
Specifically, any known problem areas or areas with known blockages should be prioritized for cleaning.
3
United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small municipal...
-US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
Project No. 20233959.001Page 2 of 11February 2023
2023 Kleinfelderwww.kleinfelder.com
KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
ED_019088A_00020378-00074
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
Once property owners have been notified and cleaning of the storm drain system has occurred, catchment
investigations can begin. This can occur in one of two ways, or via a combination of both:
(1) By working progressively down from the upper parts of the catchment toward the outfall (" Top
Down ") or
(2) By working progressively up from the outfall and inspecting key junction manholes along the way
(" Bottom - Up ").
Both methods have their advantages. Starting upstream can be more efficient, whereas starting downstream
works well for small catchments that aren't influenced by receiving water bodies. As such, inspection direction can
depend on the nature of the drainage system (e.g. size, receiving water influence) and also the completeness and
accuracy of the City's GIS mapping. This can also depend on whether or not most outfalls are partially or totally
submerged. In the event that manholes are partially or completely submerged, samples should not be collected.
Rather these structures should be investigated furthered via building inspections, dye testing, or even bypass
pumping so as to remove flow from the structure so it can be further visually inspected.
Once an inspection direction has been chosen, the investigation can then begin with key junction manholes and
mainline sump manholes. From here, the inspection can continue towards junction manholes and other manholes,
as needed, with the purpose to isolate any illicit discharges. The specific steps shall be as follows:
1. Manholes will be opened and inspected for visual and olfactory evidence of illicit connections during dry
weather. A sample manhole inspection report is provided in Attachment 1. Visual evidence may include
toilet paper, sanitary products, sewage, soap, food, or other indications of anything other than
stormwater. Olfactory evidence may include sewage, soap, laundry, bleach, or other odors not typical of
stormwater.
2. Where possible, condition information and measured elevation of the manhole rim as well as the invert
depth should be recorded.
3. If flow is observed, a sample shall be collected and analyzed in accordance with the procedures outlined
in the following sections.
4. If no flow is observed, the inlet or outlets to the manholes may be partially blocked using sandbags or
similar barriers. More details associated with this method can be found in " SOP 3: Locating Illicit
Discharges. "
5. Where sampling results or visual or olfactory evidence indicate potential illicit discharges, the area
draining to the manhole should be flagged for further upstream manhole investigation and / or isolation
and confirmation of sources.
6. Subsequent manhole inspections shall proceed until the location of the suspected illicit discharges can be
isolated to a pipe segment between two manholes.
7. If no evidence of an illicit discharge is found, catchment investigations will be considered complete upon
completed of key junction manhole sampling.
Condition Assessment
If any flow is observed during dry weather conditions at a stormwater outfall, a sample shall be taken after a visual
observation of the discharge is complete. If any pollution or signs of potential illicit connections are observed, they
should be noted and investigated further. As per the Central Massachusetts Regional Stormwater Coalition, the
4
following visual indicators shown in Table 1 may be the result of the following sources listed in Table 1.
4
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
ED_019088A_00020378-00075
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
Table 1-Visual Condition Assessment
IndicatorPossible Source
Foamupstream vehicle washing activities or illicit discharge
Oil Sheenleak or spill
Cloudinesssuspended solids (i.e. dust, ash, powdered chemicals, ground up materials, etc.)
Color or Odorraw materials, chemicals, or sewage
Excessive Sedimentdisturbed earth of unpaved areas lacking adequate erosion control measures
Sanitary Waste /
Optical Enhancers *
illicit discharge
Orange Staininghigh mineral concentrations
Fluorescent dyes added to laundry detergent and some toilet paper
While many of the indicators listed in Table 1 would indicate an illicit discharge, some indicators may occur
naturally. For example, orange staining could be the result of naturally occurring iron. However, it may be difficult
to determine the difference between natural foam and foam caused by pollution. Natural foam can typically be
found in water with high organic content such as bog lakes, streams that originate from bog lakes, productive
lakes, wetlands, or woody areas. As per the Central Massachusetts Regional Stormwater Coalition, it's important to
consider the following factors listed in Table 2 when determining if the source of foam present at a stormwater
5
outfall is natural or not.
Table 2-Conditional and Qualitative Considerations of Foam
Factors Explanation
Wind Direction or Turbulence
Natural foam occurrences of the beach coincide with onshore
winds. Often, foam can be found along a shoreline and / or on open
waters during windy days. Natural occurrences in rivers can be
found downstream of a turbulent site.
Proximity to Potential Pollution Source
Some entities including the textile industry, paper production
facilities, oil industries, and fire fighting activities work with
materials that cause foaming in water. If these materials are
released to a water body in large quantities, they can cause
foaming. The presence of silt in water, such as from a
construction site can cause foam.
Physical FeelingNatural foam is typically persistent, light, not slimy to the touch.
Visual ObservationPrescence of decomposing plants or organic material in the water.
In addition to foam, both bacteria and petroleum can create a sheen on the water surface. Differentiating the two
can be as simple as disturbing the " sheen " with a pole, stick, or similar object. A sheen caused by oil will remain
intact and move in a swirl pattern while a sheen caused by bacteria will separate into a number of smaller patches
and appear " blocky. " In addition, bacteria or naturally occurring sheens are usually silver or dull in color. While
6
bacterial sheen is not a pollutant, it should be noted when describing the discharge.
5
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
6
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
Project No. 20233959.001Page 4 of 11February 2023
2023 Kleinfelderwww.kleinfelder.com
KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
ED_019088A_00020378-00076
COPLA
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
Optical enhancers on the other hand can be visible to the naked eye when found in high enough concentrations
and will appear as a bluish - purple haze. If a visual observation is unable to confirm the presence of this pollutant, a
quantitative test can be used. In order to perform this test, a clean, white, cotton pad should be placed, either
directly in, or within a sample of, the discharge for several days. After soaking, the cotton pad should be dried and
then viewed under a fluorometer. If the cotton pad fluoresces, optical enhancers are assumed to be the pollutant
and present. The magnitude of the fluorescence, as measured in fluorescent units, can be used to determine the
concentration of optical enhancers within the sample. Often a visual observation is enough as it is not typical that
this analysis is required.
Sample Collection
Table 3 lists the field equipment commonly used for dry weather outfall screening and sampling.
Table 3-Field Equipment for Dry Weather Outfall Screening and Sampling
Equipment Use / Notes
ClipboardFor organization of field sheets and writing surface
Field Forms or Tablet for Electronic Forms
Field sheets for both dry weather inspection and dry weather
sampling should be available, with extra sheets included
Chain of Custody FormsTo ensure proper handling of all samples
Pens / Pencils / Permanent MarkersFor proper labeling
Nitrile GlovesTo protect the sampler as well as the sample from contamination
Flashlight / Headlamp w / BatteriesFor looking in outfalls or manholes, helpful in early mornings as well
Cooler with IceFor transporting samples to the laboratory
Digital CameraFor documenting field conditions at time of inspection
Personal Protective Equipment (PPE)
Reflective vest, safety glasses, hard hats, and boots at a minimum.
Work gloves, long pants, and sleeves for protection from
environmental conditions such as brush, insects, and poisonous
plants.
Insect / Plant Repellant and SunscreenFor protection from environmental conditions.
GPS ReceiverFor taking spatial location data
Distilled waterFor use with test kits and water quality meters
Water Quality MetersHand - held meters for testing various water quality parameters.
Field Test Kits
Have extra kits on hand to sample more outfalls than are anticipated
to be screened in a single day
Rinse Water / Calibration standardsCleaning equipment and calibration
Label TapeFor labeling sample containers
Make sure all sample containers are clean.
Keep extra sample containers on hand at all times.
Sample ContainersMake sure there are proper sample containers for what is being
sampled for (i.e., bacteria and total phosphorus analysis require
sterile containers and preservatives).
Telescopic Sampling Pole / Dipper for hard to reach locations.
Cooler with IceLaboratory sample submittals
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KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
ED_019088A_00020378-00077
COPLA
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
EquipmentUse / Notes
Pry Bar, Pick, and / or ShovelFor opening catch basins and manholes when necessary
SandbagsFor damming low flows in order to take samples
Small Mallet or HammerHelping to free stuck manhole and catch basin covers
Utility KnifeMultiple uses
Measuring TapeMeasuring distances and depth of flow
Traffic ConesSafety
Hand SanitizerDisinfectant / decontaminant
Machete / ClippersAccessing overgrown infrastructure
Flashlight with batteriesFor looking in outfalls, manholes, and catch basins
Zip Ties / Duct TapeFor making field repairs
Rubber Boots / WadersFor accessing shallow streams / areas
Sampling Pole / Dipper / Sampling CageFor accessing hard - to - reach outfalls and manholes
5-gallon Bucket w / CoverDisposal of chemical waste
DBI Sali Tripod and retrieval wench; MSA Tripod, rescue wench and
Confined Space Entry Equipment (if needed)material / personal wench; full body harness; 10'ladder; waders; hard
hat; air monitoring equipment (Ventis 4 gas meter)
As per the 2016 Massachusetts Small MS4 General Permit, where dry weather flow is found at an
7
outfall / interconnection, at least one (1) sample shall be collected. A discrete manual or grab sample shall be
collected for dry weather outfall inspections due to the time - sensitive nature of the process. Grab samples classify
water at a distinct point in time and are used primarily when the water quality of the discharge is expected to be
homogenous, or unchanging, in nature. A flow - weighted composite sample classifies water quality over a
measured period of time and are used when the water quality of discharge is expected to be heterogenous, or
8
fluctuating, in nature. "
Protocols for collecting a grab sample as per the Central Massachusetts Regional Stormwater Coalition are as
follows:
1. Fill out sample information on sample bottles and field sheets (see Attachment 4 for example field
sheets).
2. Do not eat, drink, or smoke during sample collection and processing.
3. Do not collect or process samples near a running vehicle.
4. Do not park vehicles in the immediate sample collection area, including both running and non - running
vehicles.
5. Always wear clean, powder - free nitrile gloves when handling sample containers and lids.
6. Never touch the inside surface of a sample container or lid, even with gloved hands.
7. Never allow the inner surface of a sample container or lid to be contacted by any material other than the
sample water.
7
United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small municipal... -
US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
8
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
Project No. 20233959.001Page 6 of 11February 2023
2023 Kleinfelderwww.kleinfelder.com
KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
ED_019088A_00020378-00078
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
8. Collect sample with dipper or directly into sample containers. If possible, collect water while facing
upstream of the flow into the sample bottles so as to not to disturb water or sediments in the outfall pipe
or ditch.
9. Do not overfill sample containers, and do not dump out any liquid in them. Liquids are often added to
sample containers intentionally by the analytical laboratory as a preservative or for pH adjustment.
10. Slowly lower the bottle into the water to avoid bottom disturbance and stirring up sediment.
11. Do not allow any object or material to fall into or contact the collected water sample.
12. Do not allow rainwater to drip from rain gear or other surfaces into sample containers.
13. Replace and tighten sample container lids immediately after sample collection.
14. Place laboratory samples on ice for analysis of bacteria and pollutants of concern.
15. Accurately label the sample with the time and location.
16. Document on the Dry Weather Outfall Inspection Survey that analytical samples were collected, specify
parameters, and note the sample time on an Inspection Survey (see Attachment 2 and 3 for examples).
This creates a reference point for samples.
17. Fill out chain - of - custody form for laboratory samples.
18. If using a dipper or other device, triple rinse the device with distilled water and then in water to be
sampled, except for bacteria sampling.
19. Store used test strips and test kit waste / ampules properly in a 5-gallon bucket with a cover. Storage and
disposal shall be coordinated with the City.
20. Decontaminate all testing personnel and equipment.
Samples that are unable to be analyzed for parameters using field instrumentation require laboratory analysis.
Coordination with the laboratory, including the pick - up and / or dropping off, of samples, is the responsibility of the
City. The laboratory requires that a chain - of - custody form be filled out and accompany any samples that require
analysis. The laboratory will also provide additional details regarding how samples should be collected based on
the sample containers and / or specific analytes.
Project No. 20233959.001Page 7 of 11February 2023
2023 Kleinfelderwww.kleinfelder.com
KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
ED_019088A_00020378-00079
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
Parameter Analysis
As per the Consent Decree, the City shall utilize the following IDDE screening thresholds shown in Table 4 as
9
guidelines for its analysis of the data generated for each outfall and interconnection discharge sample. In addition,
each outfall and interconnection discharge sample shall be concurrently analyzed for all the parameters shown
using laboratory analysis or field instrumentation defined in Table 4 as per EPA's Region 1's " EPA New England
10
Bacteria Source Tracking Protocol, " January 2012 Draft.
Table 4-Freshwater Water Quality Criteria, Threshold Limits, and Example Instrumentation
Threshold
Analyte / Indicator Limits / Instrumentation
Single Sample
E. coli 2> 410 cfu / 100mlLaboratory via approved method
Enterococci 2130 cfu / 100mlLaboratory via approved method
Surfactants (as> 0.25 mg / 1
MBAS Field Test Kit (e.g. CHEMetrics K-
9400)
MBAS)
> 0.1 mg / 1Laboratory via approved method
Ammonia (NH3)
> 0.5 mg / 1Ammonia Field Test Strips (e.g. Hach Brand)
> 0.1 mg / 1Laboratory via approved method
Chlorine> 0.02 mg / 1Field Meter (e.g. Hach Pocket Colorimeter II)
TemperatureN / AField Meter (e.g. YSI Model 30)
ConductivityN / AField Meter (e.g. YSI Model 30)
SalinityN / AField Meter (e.g. YSI Model 30)
A The mention of trade names or commercial products does not constitute endorsement or recommendation for use by the U.S. EPA
B
Class A or B Waters
C Levels that may be indicative of potential wastewater or washwater contamination
As per the 2016 Massachusetts Small MS4 General Permit and Consent Decree, all analyses, with the exception of
indicator bacteria and pollutants of concern, can be performed with field tests or field instrumentation and are not
subject to 40 CFR part 136 requirements. Sampling for bacteria and pollutants of concern shall be conducted using
the analytical methods found in 40 CFR 136, or alternative methods approved by EPA in accordance with the
11
procedures in 40 CFR 136.
The City is responsible for selecting a laboratory or field kits intended for measuring each analyte. When selecting
field kits, review the detection range for each field kit and ensure it corresponds to the threshold limits for each
analyte of interest, as listed in Table 4. These limits should be communicated to the laboratory so that the
laboratory's instrumentation can be properly calibrated to account for the threshold concentrations. In addition,
each analyte has a corresponding analytical method as per Appendix G of the 2016 Massachusetts Small MS4
9
Civil Action No. 19-CV-10332-MGM: Final Consent Decree. " United States District Court for the District of Massachusetts, United
States and Massachusetts v. City of Holyoke, September 27, 2022.
9 United States Environmental Protection Agency (EPA). (n.d.). EPA New England Bacterial Source Tracking Protocol Purpose. EPA
New England Bacterial Source Tracking Protocol. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2014Appendixl.pdf
10 United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small municipal
...- US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
Project No. 20233959.001Page 8 of 11February 2023
2023 Kleinfelderwww.kleinfelder.com
KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
ED_019088A_00020378-00080
COPIA
Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 1: Dry Weather Outfall Inspection
12
General Permit, that each field kit and laboratory analysis shall utilize to ensure compliance. Lastly, as per 40 CFR
13
136, maximum holding times and preservation requirements should be communicated to the laboratory. This is
not applicable for field kits since samples are analyzed instantaneously after sample collection. Table 5 summarizes
this information and it should be shared with the selected laboratory to ensure compliance with the Consent
Decree.
Table 5-Analytical Methods, Hold Times, and Preservatives for Laboratory Analysis
EPA or
Analyte orMax. Hold
Approved Preservation
ParametMe ethr od No.T 'i
me
EPA:
1103.1; 1603
Other:
E. coliColilert ,
Colilert-18,
mColiBlue-
8 hours
Cool >10 C, 0.0008%
Na2S2O3
EPA:
1106.1; 1600
EnterococcusOther:
Enterolert
8 hours
Cool >10 C, 0.0008%
Na2S2O3
12 22.
SurfactantsSM: 5540-C48 hoursCool >6 C
AmmoniaEPA: 350.128 daysCool >6 C, H2SO4 to pH < 2
SM Standard Methods
EPA or Approved Method No. obtained from Appendix G of the MA Small MS4 Permit, except for Surfactants obtained from 40 CFR Part
136
2Max Holding Time and Preservation obtained from 40 CFR Part 136
3
Ammonia and Surfactants can be analyzed in the field. Samples are sent to the lab to confirm field results if desired (not required to meet
40 CFR Part 136).
Evaluation of sample data can show positive results due to sources other than human wastewater and false
negative results due to chemical reactions or interferences. For example, elevated ammonia readings are common
in the New England region due to sampling near historically filled tidal wetlands where the breakdown of biological
organic material can skew sample results. The same elevated ammonia readings can also be triggered by discharge
from a nearby landfill. In addition, elevated surfactant readings caused by salinity levels greater than one (1) part
per thousand can be triggered by the presence of oil. Inconclusive surfactant readings, where the indicator ampule
turns green instead of a shade of blue, can often be caused by fine suspended particulate matter being present in
the sample being tested. Finally, very low bacteria concentrations can often be the result of elevated chlorine from
12
United States Environmental Protection Agency (EPA). (n.d.). Appendix G Massachusetts Small MS4 Permit Monitoring
Requirements For Discharges into Impaired Waters Parameters and Methods. Retrieved January 30, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/appendix-g-2016-ma-sms4-gp.pdf
13
The Federal Register. Federal Register. (n.d.). Retrieved January 30, 2023, from https://www.ecfr.gov/current/title-40/chapter-
I / subchapter - D / part-136? toc = 1
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SOP 1: Dry Weather Outfall Inspection
leaking drinking water infrastructure inhibiting bacterial growth. As such, any detection of chlorine above the
14
instrument Reporting Limit should be noted.
Inspection Reporting
The City shall maintain detailed and accurate records of outfall and interconnection discharge samples that
includes the following information:
Date and time that sampling was conducted
Weather conditions both during, and in the 48 hours prior to, each sampling event
Unique identifier
Receiving water
*Date of most recent inspection
Dimensions
Shape
Material (concrete, PVC, etc.)
Spatial location (latitude and longitude with a minimum accuracy of +/- 30 feet
Physical condition
Indicators of potential non - stormwater discharges (including presence or evidence of suspect flow and
sensory observations such as odor, color, turbidity, floatable, or oil sheen)
The Dry Weather Outfall Inspection Survey (Attachment 2) developed by the Central Massachusetts Regional
Stormwater Coalition and Outfall Inventory Field Sheet (Attachment 4) are templates that can be used for
documenting the listed observations related to both quantitative and qualitative characteristics of any / all flows
15
conveyed by the structure.
As per the 2016 Massachusetts Small MS4 General Permit, if an outfall / interconnection is inaccessible or
submerged, the permittee shall proceed to the first accessible upstream manhole or structure for the observation
and sampling and report the location with the screening results. In addition, if no flow is observed, but evidence of
illicit flow exists (see SOP 3 Locating Illicit Discharges), the City shall revisit the outfall during dry weather within
one week of the initial observation, if practicable, to perform a second dry weather screening and sample any
16
observed flow.
Attachments
1. Manhole Inspection Report
2. Dry Weather Outfall Inspection Survey developed by the Central Massachusetts Regional Stormwater
Coalition
3. Field Data Collection Sheet
4. Outfall Inventory Field Sheet
14
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
15
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
13 United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small municipal
...- US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
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Related Standard Operating Procedures
1. SOP 2: Wet Weather Outfall Inspection
2. SOP 3: Locating Illicit Discharges
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SOP 2: Wet Weather Outfall Inspection
SOP 2: WET WEATHER OUTFALL INSPECTION
Introduction
Outfalls can be in the form of pipes or ditches and is the final point of discharge into a body of water for an
engineered storm drain system. Current and pending regulations require that all outfalls, that are part of the storm
drain system, be inspected, and that the water quality at these outfalls be analyzed under both dry and wet
weather conditions. " SOP 1: Dry Weather Outfall Inspection, " covers the objectives for dry weather outfall
inspections. This SOP discusses the objectives of wet weather outfall inspections.
The objective of wet weather inspections is to determine whether wet weather - induced high flows in sanitary
sewers, or high groundwater in areas served by septic systems, results in discharges of sanitary flow to the MS4. As
per the Consent Decree, by May 31st, 2023, the City of Holyoke (the City) shall submit to the EPA for review an
Illicit Discharge Detection and Elimination (IDDE) Plan which includes screening and monitoring all known MS4
outfalls and interconnections in wet weather conditions. As defined in the Consent Decree, the City shall conduct
wet - weather inspections once every three years when at least 0.25-inches of rain has occurred over a 24-hour
period prior to sampling. However, precipitation events that produce enough flow from outfalls or
interconnections to be sampled, will also be acceptable.
Condition Assessment
Typical practice is to prepare for a wet weather inspection event when weather forecasts show a 40% chance of
rain or greater. Early preparation is key to sampling first flush which is within the first 30 minutes of discharge to
and reflects the maximum pollutant load. In some watersheds, increased discharge from an outfall may not occur
with the required 0.25-inches of rain due to the amount of impervious surface present. Therefore, as more
inspections occur, and the City understands how their outfalls respond to rain events, this precipitation amount
2
can be modified.
Dry weather sampling is required at any outfall or interconnection where any flow is observed under dry weather
conditions, but sampling during wet weather conditions is required at all outfalls. Particularly, any outfalls that did
not have any observed flow during dry weather conditions or those with dry weather flow that passed screening
thresholds. Unlike dry weather conditions, wet weather conditions can help to identify a number of situations that
would otherwise go unnoticed during dry weather. For example, wet weather can help identify locations where
elevated groundwater exists and is causing an exchange of wastewater between cracked or broken sanitary
sewers, failed septic systems, underdrains, or storm drains. Wet weather can also help to identify instances when
there's an increase in sewer volume and sewage may be entering the storm drain system at common manholes or
directly - piped connections to storm drains. Finally, wet weather can also help to identify locations subject to
capacity - related SSO discharges or illicit connections that are not carried through the storm drain system during
3
dry weather conditions.`
1
Civil Action No. 19-CV-10332-MGM: Final Consent Decree. " United States District Court for the District of Massachusetts, United
States and Massachusetts v. City of Holyoke, September 27, 2022.
2
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
3
United States Environmental Protection Agency (EPA). (n.d.). EPA New England Bacterial Source Tracking Protocol Purpose.
EPA New England Bacterial Source Tracking Protocol. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2014Appendixl.pdf
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SOP 2: Wet Weather Outfall Inspection
Prior to samples being taken, a visual observation of the discharge should occur. During this observation, the
presence of any pollution should be noted and further investigated. As per the Central Massachusetts Regional
4
Stormwater Coalition, the following visual indicators shown in Table 1 may be the result of the following. "
Table 1 - - Visual Condition Assessment
IndicatorPossible Source
Foamupstream vehicle washing activities or illicit discharge
Oil Sheenleak or spill
Cloudinesssuspended solids (i.e. dust, ash, powdered chemicals, ground up materials, etc.)
Color or Odorraw materials, chemicals, or sewage
Excessive Sedimentdisturbed earth of unpaved areas lacking adequate erosion control measures
Sanitary Waste /
Optical Enhancers *
illicit discharge
Orange Staininghigh mineral concentrations
Fluorescent dyes added to laundry detergent and some toilet paper
While many of the indicators listed in Table 1 would indicate an illicit discharge, some indicators may occur
naturally. For example, orange staining could be the result of naturally occurring iron. However, it may be more
difficult to determine the difference between natural foam and foam caused by pollution. Natural foam can
typically be found in water with high organic content such as bog lakes, streams that originate from bog lakes,
productive lakes, wetlands, or woody areas. As per the Central Massachusetts Regional Stormwater Coalition, it's
important to consider the following factors listed in Table 2 when determining if the source of foam present at a
5
stormwater outfall is natural or not.
Table 2-Conditional and Qualitative Considerations of Foam
Factors Explanation
Wind Direction or Turbulence
Natural foam occurrences of the beach coincide with onshore
winds. Often, foam can be found along a shoreline and / or on open
waters during windy days. Natural occurrences in rivers can be
found downstream of a turbulent site.
Proximity to Potential Pollution Source
Some entities including the textile industry, paper production
facilities, oil industries, and fire fighting activities work with
materials that cause foaming in water. If these materials are
released to a water body in large quantities, they can cause
foaming. The presence of silt in water, such as from a
construction site can cause foam.
Physical FeelingNatural foam is typically persistent, light, not slimy to the touch.
Visual ObservationPrescence of decomposing plants or organic material in the water.
4
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
5
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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In addition to foam, both bacteria and petroleum can create a sheen on the water surface. Differentiating the two
can be as simple as disturbing the " sheen " with a pole, stick, or similar object. A sheen caused by oil will remain
intact and move in a swirl pattern while a sheen caused by bacteria will separate into a number of smaller patches
and appear " blocky. " In addition, bacteria or naturally occurring sheens are usually silver or dull in color. While
6
bacterial sheen is not a pollutant, it should be noted when describing the discharge.
Optical enhancers on the other hand can be visible to the naked eye when found in high enough concentrations
and will appear as a bluish - purple haze. If a visual observation is unable to confirm the presence of this pollutant, a
quantitative test can be used. In order to perform this test, a clean, white, cotton pad should be placed, either
directly in, or within a sample of, the discharge for several days. After soaking, the cotton pad should be dried and
then viewed under a fluorometer. If the cotton pad fluoresces, optical enhancers are assumed to be the pollutant
and present. The magnitude of the fluorescence, as measured in fluorescent units, can be used to determine the
concentration of optical enhancers within the sample. Often a visual observation is enough. It's not typical that this
analysis is required.
Sample Collection
Table 3 lists the field equipment commonly used for wet weather outfall screening and sampling.
Table 3-Field Equipment for Wet Weather Outfall Screening and Sampling
Equipment Use / Notes
ClipboardFor organization of field sheets and writing surface
Field Forms or Tablet for Electronic Forms
Field sheets for both dry weather inspection and dry weather
sampling should be available, with extra sheets included
Chain of Custody FormsTo ensure proper handling of all samples
Pens / Pencils / Permanent MarkersFor proper labeling
Nitrile GlovesTo protect the sampler as well as the sample from contamination
Flashlight / Headlamp w / Batteries
For looking in outfalls or manholes, helpful in early mornings as
well
Cooler with IceFor transporting samples to the laboratory
Digital CameraFor documenting field conditions at time of inspection
Reflective vest, safety glasses, hard hats, and boots at a minimum.
Personal ProtectiveEquipment (PPE)Work gloves, long pants, and sleeves for protection from
environmental conditions such as brush, insects, and poisonous
plants.
Insect / Plant Repellant and SunscreenFor protection from environmental conditions.
GPS ReceiverFor taking spatial location data
Distilled waterFor use with test kits and water quality meters
Water Quality MetersHand - held meters for testing various water quality parameters.
Field Test Kits
Have extra kits on hand to sample more outfalls than are anticipated
to be screened in a single day
6
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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EquipmentUse / Notes
Rinse Water / Calibration standardsCleaning equipment and calibration
Label TapeFor labeling sample containers
Make sure all sample containers are clean.
Keep extra sample containers on hand at all times.
Sample ContainersMake sure there are proper sample containers for what is being
sampled for (i.e., bacteria and total phosphorus analysis require
sterile containers and preservatives).
Telescopic Sampling Pole / Dipper for hard to reach locations.
Cooler with IceLaboratory sample submittals
Pry Bar,, Pick, and / or ShovelFor opening catch basins and manholes when necessary
Small Mallet or HammerHelping to free stuck manhole and catch basin covers
Utility KnifeMultiple uses
Measuring TapeMeasuring distances and depth of flow
Traffic ConesSafety
Hand SanitizerDisinfectant / decontaminant
Machete / ClippersAccessing overgrown infrastructure
Flashlight with batteriesFor looking in outfalls, manholes, and catch basins
Zip Ties / Duct TapeFor making field repairs
Rubber Boots / WadersFor accessing shallow streams / areas
Sampling Pole / Dipper / Sampling CageFor accessing hard - to - reach outfalls and manholes
5-gallon Bucket w / CoverDisposal of chemical waste
DBI Sali Tripod and retrieval wench; MSA Tripod, rescue wench
Confined Space Entry Equipment (if needed)and material / personal wench; full body harness; 10'ladder; waders;
hard hat; air monitoring equipment (Ventis 4 gas meter)
A discrete manual or grab sample shall be collected for wet weather outfall inspections due to the time - sensitive
nature of the process. Grab samples classify water at a distinct point in time and are used primarily when the
water quality of the discharge is expected to be homogenous, or unchanging, in nature. A flow - weighted
composite sample classifies water quality over a measured period of time and are used when the water quality of
7
discharge is expected to be heterogenous, or fluctuating, in nature.
Protocols for collecting a grab sample as per the Central Massachusetts Regional Stormwater Coalition are as
follows:
1. Fill out sample information on sample bottles and field sheets (see Attachment 3 for example field
sheets).
2. Do not eat, drink, or smoke during sample collection and processing.
3. Do not collect or process samples near a running vehicle.
4. Do not park vehicles in the immediate sample collection area, including both running and non - running
vehicles.
5. Always wear clean, powder - free nitrile gloves when handling sample containers and lids.
6. Never touch the inside surface of a sample container or lid, even with gloved hands.
7
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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7. Never allow the inner surface of a sample container or lid to be contacted by any material other than the
sample water.
8. Collect sample with dipper or directly into sample containers. If possible, collect water while facing
upstream of the flow into the sample bottles so as to not to disturb water or sediments in the outfall pipe
or ditch.
9. Do not overfill sample containers, and do not dump out any liquid in them. Liquids are often added to
sample containers intentionally by the analytical laboratory as a preservative or for pH adjustment.
10. Slowly lower the bottle into the water to avoid bottom disturbance and stirring up sediment.
11. Do not allow any object or material to fall into or contact the collected water sample.
12. Do not allow rainwater to drip from rain gear or other surfaces into sample containers.
13. Replace and tighten sample container lids immediately after sample collection.
14. Place laboratory samples on ice for analysis of bacteria and pollutants of concern.
15. Accurately label the sample with the time and location.
16. Document on the Dry Weather Outfall Inspection Survey that analytical samples were collected, specify
parameters, and note the sample time on an Inspection Survey (see Attachment 1 and 2 for examples).
This creates a reference point for samples.
17. Fill out chain - of - custody form for laboratory samples.
18. If using a dipper or other device, triple rinse the device with distilled water and then in water to be
sampled, except for bacteria sampling.
19. Store used test strips and test kit waste / ampules properly in a 5-gallon bucket with a cover. Storage and
disposal shall be coordinated with the City.
20. Decontaminate all testing personnel and equipment.
Samples that are unable to be analyzed for parameters using field instrumentation require laboratory analysis.
Coordination with the laboratory, including the pick - up and / or dropping off, of samples, is the responsibility of the
City. The laboratory requires that a chain - of - custody form be filled out and accompany any samples that require
analysis. The laboratory will also provide additional details regarding how samples should be collected based on
the sample containers and / or specific analytes.
Parameter Analysis
As per the Consent Decree, the City shall utilize the following IDDE screening thresholds shown in Table 4 as
8
guidelines for its analysis of the data generated for each outfall and interconnection discharge sample. In addition,
each outfall and interconnection discharge sample shall be concurrently analyzed for all the parameters shown
using laboratory analysis or field instrumentation defined in Table 4 as per EPA's Region 1's " EPA New England
9
Bacteria Source Tracking Protocol, " January 2012 Draft.fl
Table 4-Freshwater Water Quality Criteria, Threshold Limits, and Example Instrumentation
Threshold
Analyte / Indicator Limits / Instrumentation
Single Sample
E. coli 2> 410 cfu / 100mlLaboratory via approved method
Enterococci 2> 130 cfu / 100mlLaboratory via approved method
8
Civil Action No. 19-CV-10332-MGM: Final Consent Decree. " United States District Court for the District of Massachusetts, United
States and Massachusetts v. City of Holyoke, September 27, 2022.
9 United States Environmental Protection Agency (EPA). (n.d.). EPA New England Bacterial Source Tracking Protocol Purpose. EPA
New England Bacterial Source Tracking Protocol. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2014Appendixl.pdf
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Threshold
Analyte / Indicator Limits / Instrumentation
Single Sample
Surfactants (as> 0.25 mg / 1
MBAS Field Test Kit (e.g. CHEMetrics K-
9400)
MBAS)
> 0.1 mg / 1Laboratory via approved method
> 0.5 mg / 1
Ammonida Field Test Strips (e.g. Hach
Ammonia (NH3)Brand)
> 0.1 mg / 1Laboratory via approved method
Chlorine> 0.02 mg / 1Field Meter (e.g. Hach Pocket Colorimeter II)
TemperatureN / AField Meter (e.g. YSI Model 30)
ConductivityN / AField Meter (e.g. YSI Model 30)
SalinityN / AField Meter (e.g. YSI Model 30)
A The mention of trade names or commercial products does not constitute endorsement or recommendation for use by the U.S. EPA
B Class A or B Waters
C Levels that may be indicative of potential wastewater or washwater contamination
As per the 2016 Massachusetts Small MS4 General Permit and Consent Decree, all analyses, with the exception of
indicator bacteria and pollutants of concern, can be performed with field tests or field instrumentation and are not
subject to 40 CFR part 136 requirements. Sampling for bacteria and pollutants of concern shall be conducted using
the analytical methods found in 40 CFR 136, or alternative methods approved by EPA in accordance with the
10
procedures in 40 CFR 136.
The City is responsible for selecting a laboratory, or field kits for measuring each analyte. When selecting field kits,
review the detection range for each field kit and ensure that it corresponds to the threshold limits for each analyte
of interest, as listed in Table 4. These limits should be communicated to the laboratory so that the laboratory's
instrumentation can be properly calibrated to account for the threshold concentrations. In addition, each analyte
11
has a corresponding analytical method as per Appendix G of the 2016 Massachusetts Small MS4 General Permit
that each field kit and laboratory analysis shall utilize to ensure compliance. Lastly, as per 40 CFR 136 12,
maximum holding times and preservation requirements should be communicated to the laboratory. This is not
applicable for field kits since samples are analyzed instantaneously after sample collection. Table 5 summarizes this
information and it should be shared with the selected laboratory to ensure compliance with the Consent Decree.
10 United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small municipal
...- US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
11
United States Environmental Protection Agency (EPA). (n.d.). Appendix G Massachusetts Small MS4 Permit Monitoring
Requirements For Discharges into Impaired Waters Parameters and Methods. Retrieved January 30, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/appendix-g-2016-ma-sms4-gp.pdf
12
The Federal Register. Federal Register. (n.d.). Retrieved January 30, 2023, from https://www.ecfr.gov/current/title-40/chapter-
I / subchapter - D / part-136? toc = 1
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Table 5-Analytical Methods, Hold Times, and Preservatives for Laboratory Analysis
EPA or
Analyte orMax. Hold
Approved Preservation
Parameter Time
Method No.
EPA:
1103.1; 1603
Other:
E. coliColilert ,
Colilert -,
mColiBlue-
8 hours
Cool >10 C, 0.0008%
Na2S2O3
EPA:
1106.1; 1600
EnterococcusOther:
Enterolert
8 hours
Cool >10 C, 0.0008%
Na2S2O3
12 22.
SurfactantsSM: 5540-C48 hoursCool < 6 C
AmmoniaEPA: 350.128 daysCool >6 C, HSO4 to pH < 2
SM Standard Methods
EPA or Approved Method No. obtained from Appendix G of the MA Small MS4 Permit, except for Surfactants obtained from 40 CFR Part
136
2 Max Holding Time and Preservation obtained from 40 CFR Part 136
3 Ammonia and Surfactants can be analyzed in the field. Samples are sent to the lab to confirm field results if desired (not required to meet
40 CFR Part 136).
Evaluation of sample data can show positive results due to sources other than human wastewater and false
negative results due to chemical reactions or interferences. For example, elevated ammonia readings are common
in the New England region due to sampling near historically filled tidal wetlands where the breakdown of biological
organic material can skew sample results. The same elevated ammonia readings can also be triggered by discharge
from a nearby landfill. In addition, elevated surfactant readings caused by salinity levels greater than one (1) part
per thousand can be triggered by the presence of oil. Inconclusive surfactant readings, where the indicator ampule
turns green instead of a shade of blue, can often be caused by fine suspended particulate matter being present in
the sample being tested. Finally, very low bacteria concentrations can often be the result of elevated chlorine from
leaking drinking water infrastructure inhibiting bacterial growth. As such, any detection of chlorine above the
13
instrument Reporting Limit should be noted.
13
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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Inspection Reporting
The City shall maintain detailed and accurate records of outfall and interconnection discharge samples that
includes the following information:
Date and time that sampling was conducted
Weather conditions both during, and in the 24 hours prior to, each sampling event
Unique identifier
Receiving water
Date of most recent inspection
Dimensions
Shape
Material (concrete, PVC, etc.)
Spatial location (latitude and longitude with a minimum accuracy of +/- 30 feet
Physical condition
Indicators of potential non - stormwater discharges (including presence or evidence of suspect flow and
sensory observations such as odor, color, turbidity, floatable, or oil sheen)
The Wet Weather Outfall Inspection Survey (Attachment 1) developed by the Central Massachusetts Regional
Stormwater Coalition and the Outfall Inventory Field Sheet (Attachment 3) are templates that can be used for
documenting the listed observations related to both quantitative and qualitative characteristics of any flows
14
conveyed by the structure..
Attachments
1. Wet Weather Outfall Inspection Survey developed by the Central Massachusetts Regional Stormwater
Coalition
2. Field Data Collection Sheet
3. Outfall Inventory Field Sheet
Related Standard Operating Procedures
1. SOP 2: Wet Weather Outfall Inspection
2. SOP 3: Locating Illicit Discharges
14
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
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Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 3: Locating Illicit Discharges
SOP 3: LOCATING ILLICIT DISCHARGES
Introduction
An " illicit discharge " is any discharge to an engineered storm drain system that is not composed entirely of
stormwater. Exceptions for allowable non - stormwater discharge are detailed in the Massachusetts MS4 Permit
and are as follows ':
a. Water line flushing
b. Landscape irrigation
C. Diverted stream flows
d. Rising ground water
e. Uncontaminated ground water infiltration (as defined at 40 CFR 35.2005 (20))
f. Uncontaminated pumped ground water
g. Discharge from potable water sources
h. Foundation drains
. Air conditioning condensation
j. Irrigation water, springs
k. Water from crawl space pumps
I. Footing drains
m. Lawn watering
n. Individual resident car washing
0. Flows from riparian habitats and wetlands
p. De - chlorinated swimming pool discharges
q. Street wash waters
r. Residential building wash waters without detergents
Illicit discharges can enter an engineered storm drain system via direct and indirect connections. These
connections can include: cross - connections of sewer services to storm drain systems; leaking septic systems;
intentional discharge of pollutants to catch basins; combined sewer overflows; connected floor drains; and sump
pumps connected to storm drain systems. As such, the discharges from these illicit connections can contribute high
levels of pollutants, including heavy metals, toxics, oil, grease, solvents, nutrients, and pathogens to the receiving
2
body of water.
The City of Holyoke's (City) Stormwater Ordinance, adopted by the City Council on May 17th, 2017, grants the City
the authority to prohibit illicit discharges, investigate suspected illicit discharges, eliminate illicit discharges
(including discharges from properties not owned by or controlled by the MS4 that discharge into the MS4), and
implement appropriate enforcement procedures and actions.
1
United States Environmental Protection Agency (EPA). (n.d.). General Permits for stormwater discharges from small municipal
...- US EPA. Massachusetts Small MS4 General Permit. Retrieved January 16, 2023, from
https://www3.epa.gov/region1/npdes/stormwater/ma/2016fpd/final-2016-ma-sms4-gp-mod.pdf
2
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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KLEINFELDER One Beacon Street, Suite 8100, Boston, MA 02108 p | 617.497.7800 f | 617.498.4630
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Standard Operating ProceduresCity of Holyoke
KLEINFELDER
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Illicit Discharge Detection and Elimination Plan
SOP 3: Locating Illicit Discharges
Identifying Illicit Discharges
Illicit discharges can be located be several methods, including routine dry weather outfall inspections (as described
in detail in " SOP 1: Dry Weather Outfall Inspection ") and citizen reports. As per the Central Massachusetts Regional
3
Stormwater Coalition, the following indicators shown in Table 1 may be the result of an illicit discharge.`
Table 1-Visual Condition Assessment
IndicatorPossible Source
Foamupstream vehicle washing activities or illicit discharge
Oil Sheenleak or spill
Cloudinesssuspended solids (i.e. dust, ash, powdered chemicals, ground up materials, etc.)
Color or Odorraw materials, chemicals, or sewage
Excessive Sedimentdisturbed earth of unpaved areas lacking adequate erosion control measures
Sanitary Waste /
Optical Enhancers *
illicit discharge
Orange Staininghigh mineral concentrations
Fluorescent dyes added to laundry detergent and some toilet paper
While many of the indicators listed in Table 1 would indicate an illicit discharge, some indicators may occur
naturally. For example, orange staining could be the result of naturally occurring iron. However, it may be difficult
to determine the difference between natural foam and foam caused by pollution. Natural foam can typically be
found in water with high organic content such as bog lakes, streams that originate from bog lakes, productive
lakes, wetlands, or woody areas. As per the Central Massachusetts Regional Stormwater Coalition, it's important to
consider the following factors listed in Table 2 when determining if the source of foam present at a stormwater
4
outfall is natural or not.
Table 2-Conditional and Qualitative Considerations of Foam
Factors Explanation
Wind Direction or Turbulence
Natural foam occurrences of the beach coincide with onshore
winds. Often, foam can be found along a shoreline and / or on open
waters during windy days. Natural occurrences in rivers can be
found downstream of a turbulent site.
Proximity to Potential Pollution Source
Some entities including the textile industry, paper production
facilities, oil industries, and fire fighting activities work with
materials that cause foaming in water. If these materials are
released to a water body in large quantities, they can cause
foaming. The presence of silt in water, such as from a
construction site can cause foam.
Physical FeelingNatural foam is typically persistent, light, not slimy to the touch.
Visual ObservationPrescence of decomposing plants or organic material in the water.
3
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
4
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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Illicit Discharge Detection and Elimination Plan
SOP 3: Locating Illicit Discharges
In addition to foam, both bacteria and petroleum can create a sheen on the water surface. Differentiating the two
can be as simple as disturbing the " sheen " with a pole, stick, or similar object. A sheen caused by oil will remain
intact and move in a swirl pattern while a sheen caused by bacteria will separate into a number of smaller patches
and appear " blocky. " In addition, bacteria or naturally occurring sheens are usually silver or dull in color. While
5
bacterial sheen is not a pollutant, it should be noted when describing the discharge.
Optical enhancers on the other hand can be visible to the naked eye when found in high enough concentrations
and will appear as a bluish - purple haze. If a visual observation is unable to confirm the presence of this pollutant, a
quantitative test can be used. In order to perform this test, a clean, white, cotton pad should be placed, either
directly in, or within a sample of, the discharge for several days. After soaking, the cotton pad should be dried and
then viewed under a fluorometer. If the cotton pad fluoresces, optical enhancers are assumed to be the pollutant
and present. The magnitude of the fluorescence, as measured in fluorescent units, can be used to determine the
concentration of optical enhancers within the sample. Often a visual observation is enough. It's not typical that this
analysis is required.
Citizen Reports
Reports by residents and other users can be effective tools in helping the City to identify illicit discharges. The
City's Department of Public Works (DPW) set up a phone hotline for this purpose, the phone number is (413) 534-
2222. In addition, DPW should also provide guidance to the local City police department(s) and dispatch centers on
how to manage data reported if residents should decide to report an illicit discharge with the police. An example
Incident Tracking Sheet, provided by the Central Massachusetts Regional Stormwater Coalition, is included as
Attachment 1 and can be used as an example that guides the responder to ensure that all pertinent details about
the reported discharge are accurately documented. Reported illicit discharges should be communicated with the
DPW.
Tracing Illicit Discharges
Once identified, suspected illicit connections must then be confirmed by the City. If confirmed, but the source is
unidentified, the following additional procedures, as per the Central Massachusetts Regional Stormwater Coalition,
should be:
1. Review and consider information collected when an illicit discharge was initially identified, including, but
not limited to, the time of day and the weather conditions for the previous 72 hours. Also review past
reports or investigations of similar illicit discharges in the area.
2. Obtain storm drain mapping for the area of the reported illicit discharge. If possible, use a tracking system
that can be linked to the City's GIS.
3. Document current conditions at the location of the observed illicit discharge point, including odors, water
appearance, estimated flow, presence of floatables, and other pertinent information. Photograph
relevant evidence.
4. If there continues to be evidence of the illicit discharge, collect water quality data using the methods
described in " SOP 1: Dry Weather Outfall Inspection " and " SOP 2: Wet Weather Outfall Inspection ". This
may include using field test kits or instrumentation or collecting analytical samples for full laboratory
analysis.
5
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
6
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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Standard Operating ProceduresCity of Holyoke
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Illicit Discharge Detection and Elimination Plan
SOP 3: Locating Illicit Discharges
5. Move upstream from the point of observation to identify the source of the discharge, using the system
mapping to determine infrastructure, tributary pipes, and drainage areas that contribute. At each point,
survey the general area and surrounding properties to identify potential sources of the illicit discharge.
Document observations at each point on an Incident Tracking Sheet (Attachment 1) as well as with
photographs.
6. Continue this process until the illicit discharge is no longer observed, which will define the boundaries of
the likely source. For example, if the illicit discharge is present in catch basin 137 but not the next
upstream catch basin, 138, the source of the illicit discharge is between these two structures.
If the source of an illicit discharge cannot be determined via the procedures listed above, additional methods, such
as sandbagging, dye testing, smoke testing, and / or closed - circuit television inspection (CCTV) may need to be
utilized. Descriptions for these four (4) methods are listed below.
Sandbagging
Sandbagging can be particularly useful when attempting to isolate intermittent or illicit discharges with
very little perceptible flow. This technique involves placing sandbags, caulking, weirs / plates, or other
temporary barriers within the outlets of a manhole to form a temporary dam. Sandbags and other
barriers should only be installed when dry weather is forecasted and are typically left in place for 48
hours. If flow is present after 48 hours behind the sandbags / barriers, this would allow the inspector to
properly observe and sample the flow, however, if no flow collects behind the sandbags / barriers, the
upstream pipe network can be ruled out as a source of the intermittent discharge. Unlike the other three
(3) methods described subsequently, this method can be quite time - consuming.
Dye Testing
Dye testing consists of discharging or flushing non - toxic dye into a suspended plumbing fixture and
observing a nearby storm drain structure and / or sanitary sewer manhole for the presence of the same
dye downstream. Fixtures, such as sinks, toilets, and sump pumps can all be tested with dye, but should
be tested separately. This test should ideally be conducted with a team of two or more people, with one
person adding the dye to the fixture of interest, while the other person watches for the presence or
absence of dye near the source. Unlike the other methods mentioned, dye testing is relatively quick,
effective, and inexpensive. This method is best used when the source of the illicit discharge has been
relatively narrowed down. Dye testing can be done by the City or a third - party contractor and requires the
City to receive permission prior to accessing any sites that may contain the suspected fixtures. Residents,
business owners, police, fire, and local public health staff shall be notified prior to testing in preparation
for responding to citizen phone calls concerning the dye and their presence in local surface waters.
Smoke Testing
Unlike dye testing, smoke testing is a useful method to utilize if the source of an illicit discharge is not as
obvious. Smoke testing often works best when trying to locate an illicit discharge along short sections of
pipe and, more specifically, along small diameters pipes. This method involves injecting a non - toxic smoke
with the use of a smoke bomb or smoke generator. When added to the storm drain system, smoke will
emerge in connected locations, allowing for an inspector to locate a less obvious source of an illicit
discharge. Similar to dye testing, this testing activity can be performed by a third - party contractor. Proper
notifications to residents, business owners, local police, and fire departments that may be in the area of
interest is critical. Smoke may cause minor irritation for residents with respiratory conditions. These
individuals should be monitored or evacuated from the area of testing.
7
Standard Operating Procedures. Central Massachusetts Regional Stormwater Coalition. (n.d.). Retrieved January 16, 2023, from
https://www.centralmastormwater.org/toolbox/pages/standard-operating-procedures
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Standard Operating ProceduresCity of Holyoke
KLEINFELDER
Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 3: Locating Illicit Discharges
Closed Circuit Television Inspection (CCTV)
In CCTV inspections, cameras are used to record the interior of storm drain pipes. These cameras can be
manually pushed with a stiff cable or guided remotely on treads or wheels. Video can be watched live, or
reviewed as a recording, to locate illicit connections and infiltration from sanitary sewers into the storm
drain. Again, this testing activity can be performed by a third - party contractor.
If the source of an illicit discharge still cannot be located, further investigation in a future program is necessary.
Figure 1 below, from the Central Massachusetts Regional Stormwater Coalition shows a pictorial summary of this
section.
Illicit Discharge Detected (Baseline
Information Collected from Incident
Tracking Sheet) '
Return Visit No Flow (Transitory orReturn Visit (Continuous Flow)
Intermittent Discharge)Collect a sample before (and after)
source is removed.
Source SiteNo Source SiteNo Source SiteSource Site
Suspected Suspected Suspected Suspected
Inspect PotentialVisually InspectVisually InspectInspect Potential
Source SiteStorm Drain AccessStorm Drain AccessSource Site
Points; Install Weirs,Points to trace flow
Sandbags, Dams orback to Source
Blocks.
Source SiteNo Source SiteSource Site
Suspected Identified Suspected
Smoke Test or Televise Storm Drain
System; Sample if necessary
Add to Further
Inspection List
Dye Test, Smoke Test, Televise, or Electronically Locate
Floor Drains, Sumps, or other Suspect Connection
Figure 1-Steps for Tracing Illicit Discharges
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Standard Operating ProceduresCity of Holyoke
KLEINFELDER
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Illicit Discharge Detection and Elimination Plan
SOP 3: Locating Illicit Discharges
Removal and Abatement of Illicit Discharges
As per the Consent Decree, the " date of verification " of an illicit discharge shall be the date on which the City has
identified a point of entry of an illicit discharge from a specific location, or address, that contributes wastewater
8
flow to the MS4. Figure 2 summarizes the steps the City shall take upon identification of an illicit source.
8 CivilAction No. 19-CV-10332-MGM: Final Consent Decree. " United States District Court for the District of Massachusetts, United
States and Massachusetts v. City of Holyoke, September 27, 2022.
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Standard Operating ProceduresCity of Holyoke
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Bright People. Right Solutions.
Illicit Discharge Detection and Elimination Plan
SOP 3: Locating Illicit Discharges
Identification verification
of illicit discharge by City.
Notify all responsible parties
for zny such discharge.
Require immediate cessation of
improper disposal practices.
Can the source of the illicit
discharge be identified?
Yes No
Is the source a direct-Is the source an indirect
plumbed source?source?
Yes No Yes No
Can the source be eliminatedCan the source be eliminated
within 60 days ofwithin 60 days of
identification verification ofidentification verification of
the original illicit discharge?the original illicit discharge?
Yes No Yes No
City shall establish anCity shall establish an
expeditious schedule, not toexpeditious schedule, not to
exceed one (1) year, for itsexceed one (3) year, for its
elimination elimination
Further investigation (i.e.
dye testing, smoke testing,
CCTV, etc.)
Figure 2-Steps to Eliminate Illicit Discharge as per Consent Decree
If the source of an illicit discharge is located, proper removal ensures that it does not recur. This includes
documenting any repairs, installation of new sanitary sewer connections, or any other corrective actions on an
Incident Tracking Sheet (Attachment 1). This should include, but is not limited to, the following information:
The location of the discharge and its source(s)
A description of the discharge
The method of discovery
Date of discovery
Date of elimination, mitigation or enforcement action OR planned corrective measures and a schedule for
completing the illicit discharge removal
Estimate of the volume of flow removed
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Standard Operating ProceduresCity of Holyoke
KLEINBriFghEt PLeopDle.E RiRght SIolultiolns.i
cit Discharge Detection and Elimination Plan
SOP 3: Locating Illicit Discharges
A final inspection is required to confirm the illicit connection has been removed. As per the Consent Decree, within
one year following the removal of a verified illicit discharge, the City shall conduct additional dry and wet weather
(see SOP's 1 and 2) monitoring to confirm that the illicit discharge has been eliminated. If confirmatory screening
indicates evidence of a continued potential illicit discharge, additional investigation of the catchment shall be
scheduled and removal of the illicit discharge is required.
Table 3-Illicit Discharge Enforcement Summary
Enforcement
Source IdentifiedAuthorityProcedure to Follow
One - time illicitOrdinance enforcement
discharge (e.g. spill,authority (e.g. Code
dumping, etc.)Enforcement Officer)
Contact Owner
* Issue Notice of
Violation
* Issue fine
* Contact Owner
Intermittent orIssue Notice of
Ordinance enforcement
continuous illicitViolation
authority (e.g. Code
discharge from legalDetermine schedule for
Enforcement Officer)
connection removal
* Confirm removal
Intermittent or
continuous illicit
discharge from illegal
connection or indirect
(e.g. infiltration or failed
septic)
Plumbing Inspector orNotify Plumbing
ordinance enforcementInspector or ordinance
authorityenforcement authority
Intermittent or
continuous illicitOrdinance enforcement
discharge from illegalauthority (e.g. Code
connection or indirectEnforcement Officer)
(e.g. failed sewer line)
* Issue work order
* Schedule removal
* Remove connection
Confirm removal
Notify exempt third
AnyUSEPAparty and USEPA of
illicit discharge
Attachments
1. Incident Tracking Sheet
Related Standard Operating Procedures
1. SOP 1: Dry Weather Outfall Inspection
2. SOP 2: Wet Weather Outfall Inspection
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APPENDIX G
IDDE EMPLOYEE TRAINING RECORD
KLEINFELDER
Bright People. Right Solutions.
20233959.001A / BOS23R154074
May 2023
ED_019088A_00020378-00100
HR-001 Training Documentation Form
Please complete the form in its entirety. All participant names on the Training Documentation Form must be entered into the
Talent Up system for accurate employee attendance tracking. All hard copies of the completed Training Documentation
Forms must be kept on site for a minimum of five years.
Title of Training SessionTraining Course # (ifTraining BU / Project Location (please
applicable):include address if applicable):
Name of BU / Project Training Coordinator:Date of Training:Time (e.g. 2 pm-4pm):Duration (hours):
Training Instructor:InternalExternalVendor / Consultant Name and Company
(if applicable):
Instructor Name:
CEU (if applicable):Reason for Training
(check all that apply):
New InformationRecertification
Skill Development Regulatory Refresher Tailgate
Requirement Training
Training Materials and Outline Used (i.e. Powerpoint, Hands On, Youtube Video, etc.):
Participants
Veolia Employee ID City Employee IDEmployee NameEmployee SignatureDate
1
2
3
4
5
6
7
8 00
9
10
11
12
13
ED_019088A_00020378-00101
Veolia Employee ID City Employee ID Employee Name Employee Signature Date
14
15
16
17
18
19
20
22--2OE2
21
23
24
25
222622
27
28
29
232023
31
32
333433
35
36
37
38
39
40
ED_019088A_00020378-00102