Document ZJg974dX9mJpDayME7QoMb7g8
Region 6 - Enforcement & Compliance Assurance Division
INSPECTION REPORT
Inspection Date(s): Media Program: Regulatory Program(s)
02/13/2024 and 02/14/2024 Drinking Water Safe Drinking Water Act (SDWA)
System Owner: System Name: System Physical Location:
(city, state, zip code) Mailing address:
(city, state, zip code) County/Parish: System Phone Number System Contact:
City of Sherman
City of Sherman Public Water System (PWS)
243 La Cima Rd.
Sherman, TX 75092
243 La Cima Rd.
Sherman, TX 75092
Grayson County
(903) 892-7258 Jim Cross jimcross@cityofsherman.com
I I Water Systems Manager
FRS Number: System Classification: PWS ID: Media Identifier Number: NAICS: SIC:
110013273698 Community Water System (CWS) TX0910006 N/A N/A 4941
Personnel participating in inspection:
Sami Doupnik
EPA Region 6
Enforcement Officer
Fatima Shaikh
EPA Region 6
Enforcement Officer
Craig Young
EPA Region 6
Enforcement Officer
Daniel Kim
EPA Region 6
Enforcement Officer
Danny O'Connell
PG Environmental/ERG (EPA Contractor) Inspector
Jake Okun
PG Environmental/ERG (EPA Contractor) Inspector
Jim Cross
City of Sherman
Water Systems Manager
Everado Falcon
City of Sherman
Distribution
Jayson Risner
City of Sherman
Distribution
Oscar Canales
City of Sherman
Maintenance Supervisor
Michelle Reed
City of Sherman
Water Quality Manager
DeWayne Sutherland
City of Sherman
Water System Coordinator
LeRoy Dorley
EPA Lead Inspector: Signature/Date
: . - City of Sherman
Water Production Supervisor 3/27/2024
Danny O'Connell (PG Environmental, a division of ERG) Date
EPA Supervisor: Signature/Date
LORI TANNER Digitally signed by LORI TANNER Date: 2024.03.29 08:55:10 -05'00'
Loribeth Tanner (EPA Region 6)
3/29/2024 Date
6ENFORM-019-R8.2 (02/12/2020)
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Section I - INTRODUCTION
City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Purpose Of The Inspection
On February 13-14, 2024, U.S Environmental Protection Agency (EPA) Region 6 and EPA contract inspectors from PG Environmental, a division of ERG (hereinafter the EPA Inspection Team) conducted an announced Safe Drinking Water Act (SDWA) compliance inspection of the City of Sherman Public Water System (the System or City) ID No. TX0910006. The inspection began at approximately 8:30 a.m. on February 13, 2024 and finished at approximately 4:00 p.m. on February 14, 2024. The City of Sherman owns and operates the PWS.
Danny O'Connell and Jake Okun presented their SDWA inspector credentials to the System representatives during the opening conference. The EPA Inspection Team informed the System representatives that this was an EPA inspection to determine compliance with the SDWA and other applicable federal and state regulations. The EPA Inspection Team met with Jim Cross, the System's Water Systems Manager, as well as other System representatives (see the attendance table on Page 1) for the opening conference.
This report summarizes observations made as part of the inspection, which consisted of the following major activities:
Discussions with the City's water system personnel regarding the operation and maintenance of the PWS
Site visits to the System's water treatment plants: o Conventional Surface Water Treatment Plant (offline during inspection) Pre-Sedimentation Basin Inline Static Mixers Flocculation Basins Sedimentation Basins Multi-Media Filters Electro-dialysis Reversal Demineralization (EDR) System North and South Clearwells High Service Pump Station o Ultra-Filtration/Reverse Osmosis (UF/RO) Surface Water Treatment Plant Pre-Sedimentation Basin Strainers Ultra Filtration RO Trains Break Tank North and South Clearwells High Service Pump Station
Site visits to the following sites: o Fairview Site Groundwater well G0910006Q Fairview underground storage tank (1.35 MG) Fairview chlorine storage/injection room Fairview distribution pump station
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
o Stephens Site Groundwater wells G0910006U and G0910006W Stephens ground storage tank (2 MG) Stephens chlorine storage/injection room Stephens distribution pump station
o Fairview Tower (1 MG)
Photos taken during the inspection are included in Appendix 1, Photograph Log.
System Description
The City of Sherman Public Water System (PWS) is a surface water and groundwater system that provides service to 21,236 connections and an estimated population of 43,645 individuals, according to the Safe Drinking Water Information System (SDWIS) database. The City of Sherman PWS is classified as a community water system. The City operates a conventional surface water treatment plant, an ultrafiltration/reverse osmosis (UF/RO) surface water treatment plant (the UF/RO plant), and 10 groundwater treatment plants that correspond to the groundwater wells positioned throughout the System. The conventional surface water treatment plant was completely offline for rehabilitation during the inspection, and System representatives indicated that it had been offline since December 2022. 23 groundwater wells, nine pump stations, and the 10 groundwater treatment plants are on one pressure plane, while the two surface water treatment plants are on another pressure plane that is divided into three pressure zones. Raw water produced from the groundwater wells is disinfected by gaseous chlorination. The groundwater system is capable of producing 10 million gallons per day (MGD) while the surface water system can produce a combined 20 MGD between the conventional treatment plant and the UF/RO plant. The System is also in the process of adding an additional 5 MGD of capacity to the UF/RO plant to meet anticipated growth. Peak daily demand for the System is approximately 16 MGD while average daily demand is approximately 8.2 MGD.
Surface water is sourced from Lake Texoma via a pump station that is shared with the North Texas Municipal Water District. System representatives explained that the state of Oklahoma owned the water, and that there may be some challenges in the future regarding water rights and the coordination of activities that require the use of the water. The surface water and groundwater pressure planes operate independently of each other, but interconnections exist between the two. The City also has interconnections with five other water systems, including the City of Knollwood PWS, the Marilee Special Utility District PWS, the City of Dorchester PWS, the Pink Hill Water Supply Corporation, and an emergency interconnection with Starr WSC. There are four elevated storage tanks and one ground tank throughout the surface water pressure plane, and two elevated storage tanks, two ground tanks, and eight underground storage tanks throughout the groundwater pressure plane.
A hydraulic profile of the main water system can be seen in Appendix 2, Exhibit 1, Main Water System Hydraulic Profile. A process flow diagram of the conventional plant can be seen in Appendix 2, Exhibit 2, Conventional Plant Process Flow Diagram, and a process flow diagram of the membrane (UF/RO) plant can be seen in Appendix 2, Exhibit 3, Membrane (UF/RO) Plant Process Flow Diagram. Each of these diagrams were obtained from a compliance investigation report generated by Texas Commission on Environmental Quality (TCEQ). The report was titled "Texas Commission on Environmental Quality Investigation Report" for the City of Sherman. The investigation was conducted at the City of Sherman PWS on June 21, 2023.
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Staffing Information
City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
The treatment plants are staffed twenty-four hours per day, seven days per week (24/7) through two, 12-hour shifts. The City also has a call center to assist customers 24/7. The treatment plant and operators and distribution staff are responsible for preventative maintenance (PM) activities and corrective maintenance (CM) activities (e.g., main breaks). At the time of the inspection, the System had open job positions for six distribution positions (two of which will be responsible for valve maintenance) and one for general plant operations.
Section II - INSPECTION ACTIVITY SUMMARY
The EPA Inspection Team conducted an array of interviews and field activities to discuss and observe PWS operation and maintenance (O&M) and to assess the condition of drinking water system assets. The physical inspection occurred over two days. Previous TCEQ Compliance Investigation reports were provided beforehand. The information in this report is based on document review, conversations with System representatives, and observations made during this inspection.
Supervisory Control and Data Acquisition (SCADA) System
The City uses a supervisory control and data acquisition (SCADA) system to monitor, trend, and operate flow/pumping rates and run times for all the wells and to monitor water levels inside finished water storage tanks. The wells are programmed, through the SCADA system, to turn on and off based on the level of the associated storage tank and the known hydraulic demand of its pressure zone.
Alarms are programed into the SCADA system to alert operators of failures in the treatment system, of well pump operational status, and of low tank levels.
Asset Management/Computerized Management Maintenance System (CMMS)
The City does not have a formal asset management system or computerized maintenance management system (CMMS) for the treatment plants, and the distribution system is currently using components of an `in-house' developed support system to track some aspects of its maintenance activities. The City tracks ongoing corrective maintenance activities in the distribution system through a customized work order system created using Microsoft Access and utilizes a written inventory to track warehoused distribution system parts. PM activities are not formally tracked at either the conventional treatment plant or the UF/RO plant. The City maintained a list of some ongoing CM activities; however, it is unclear to the EPA Inspection Team if it is a complete list (refer to Appendix 2, Exhibit 6, Ongoing Corrective Maintenance List). The City has redundant equipment (i.e., pumps, filters, EDR membranes, strainers, UF/RO units etc.) and backup equipment such as chemical injection pumps, but unique details for the equipment such as past maintenance activity, equipment age, run hours, and location are not formally tracked using an asset management system.
Work Order Log Sheets/Call Logs
The EPA Inspection Team received "Work Order Log Sheets" (call logs) from System representatives that range from July 5, 2023 through February 9, 2024. The call logs are not included in this report because they contain personally identifiable information such as caller name, address, and phone number. The
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
call logs contain information such as caller contact information, the problem reported by the caller, who received the call, what time the call was received, and the associated work order number. The logs did not identify the location where the call was received (i.e., control room at the plant, city hall, etc.).
The EPA Inspection Team identified the following during a review of the provided call logs: 109 water leaks 58 meter leaks 63 main breaks 132 "busted service lines" One water color complaint One water taste complaint 37 "N/W" (no water) complaints 20 fire hydrant leaks 23 low pressure complaints 7 dirty water/water quality complaints
Additionally, there were several work order logs pertaining to contractors hitting water lines, or just "water line hit" without additional detail. These work orders primarily span September 1, 2023 through November 30, 2023. There were also numerous call logs regarding a "choked" sanitary sewer, particularly spanning December 1, 2023 through January 31, 2024. Although logs pertaining to the sanitary sewer/wastewater collection system do not directly pertain to drinking water quality, it is worth noting due to the high volume of entries.
Examples of comments associated with the above complaints included the following: 7/30/2023 - "No Pressure" 8/22/2023 - "test pressure L/P [low pressure]" 8/25/2023 - "valve is leaking" 8/26/2023 - "contractor hit water line" 8/31/2023 - "MH running over" 9/9/2023 - "sewer leak/MH running over" 9/11/2023 - "contractor hit water line" 9/12/2023 - "dirty water" 9/20/2023 - "m/h running over" (Note: the definition of "m/h" is unknown, but it may refer to a possible sanitary sewer overflow in the collection system) 10/2/2023 - "hit water line" 11/3/2023 - "Brown water" 11/7/2023 - "water line hit" 11/10/2023 - "@ 0340 main line break" 11/13/2023 - "water line hit" 11/16/2023 - "water line hit" 11/20/2023 - "water line hit" 11/28/2023 - "Milky Water" 12/28/2023 - "Cont [contractor] hit water line" 1/16/2024 - three separate entries for "structure fire," two for "N/W", one for "brown water" 1/18/2024 - "flush hydrant, water tastes like dirt" 1/20/2024 - "MH running over" (Note: refer to the earlier entry regarding "m/h" above)
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Use of Geographic Information System (GIS)
The System utilizes a GIS database to inventory and track assets in the distribution system. Valves, lines, and hydrants are mapped in their GIS system, and it is primarily used as a tool to locate assets. Information regarding the type of material used in the construction of distribution assets is not currently maintained in the GIS system.
Lead and Copper Rule (LCR) Evaluation
While onsite, the EPA Inspection Team discussed LCR monitoring activities, including customer notifications and the last sampling event that occurred in 2022 when the UF/RO plant was brought online. During this sampling period, there was a sample taken on January 26, 2022 that showed elevated concentrations for Total Copper and Total Lead. The Total Copper value was 0.495 mg/L, and the Total Lead value was 0.482 mg/L. The sample site was retested on April 5, 2022 as it was suspected that a sampling error resulted in the elevated values. The retest results indicated a Total Copper value of 0.077 mg/L and a Total Lead value of <0.00025 mg/L.
The EPA Inspection Team reviewed the City of Sherman PWS Lead and Copper sampling plan following the onsite inspection. A document from 2016 titled "Lead/Copper Sample Site Selection Pool and Materials Survey Form" was provided via email after the conclusion of the onsite inspection (refer to Appendix 3, 2016 Sherman LCR Sampling Plan). The plan identifies the 35 regular sample sites and the 37 backup sample sites. The plan outlines the criteria for designating a sample site as Tier 1, Tier 2, Tier 3, or Other. When the UF/RO plant was brought online, TCEQ required the City to collect 60 Lead and Copper samples for two consecutive six-month monitoring periods.
In addition to the City's LCR sampling plan, the EPA Inspection Team also reviewed the City's process to meet EPA's LCR Inventory requirement by October 16, 2024. The City is in the process of working with a contract engineering company, carrying out a two-phase plan that involves generating a comprehensive lead service line inventory.
Hydrant Flushing
The EPA Inspection Team reviewed the City's hydrant flushing program, including 12 months' worth of dead-end main flushing reports for 2023, which contained monthly flushing routes and monthly total coliform monitoring results. According to the 2023 reports, the City flushed between 128 and 152 of their dead-end hydrants each month. It was unclear to the EPA Inspection Team how many total deadend hydrants were present in the distribution system. In general, the hydrants that weren't flushed were due to holidays, weather events (freezing rain, snow, etc.), or ongoing maintenance in the area (main breaks, line repairs, road construction). However, multiple hydrants were repeatedly not flushed each month for reasons such as mechanical failures and being located on private property. In addition to missing dead-end hydrant flushing, there was an example of a hydrant flushing colorimeter result that showed a Total Chlorine value that did not reach greater than 0.5 mg/L. The hydrant flushing summary report from November 2023 contains an example of each of these observations, so a portion of the summary will be included as an appendix of this report (refer to Appendix 2, Exhibit 4, Abbreviated November 2023 Hydrant Flushing Summary).
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Previous Sanitary Surveys
The EPA Inspection Team reviewed a document titled, "Texas Commission on Environmental Quality Investigation Report" for the City of Sherman conducted at the City of Sherman PWS on June 21, 2023. The EPA Inspection Team reviewed the document with the System representatives to ensure that the corrective actions identified in the sanitary survey had been completed.
Emergency Response Plan and Risk and Resiliency Assessment
The System used a contractor, Municipal H2O, to complete its Emergency Response Plan (ERP) and Risk and Resiliency Assessment (RRA) documents. The System certified to EPA the completion of its RRA on May 5, 2021 and the its ERP on September 23, 2021. Both documents were certified as complete by the appropriate deadlines. System representatives indicated that the ERP and RRA documents were last updated on February 5, 2024. The documents were complete, and fulfilled the requirements outlined in SDWA Sections 1433(a) and (b).
Anticipated Growth and Status of the Conventional Treatment Plant
The conventional treatment plant was out of service for rehabilitation during the inspection, and System representatives indicated that it had been offline since December 2022. Prior to 2021, the City was in the process of evaluating the cost of permanently decommissioning the plant versus rehabilitating it, and they determined that it would cost approximately $50 million to permanently decommission the plant. Based on this analysis, the City decided to formally decommission the conventional plant and to operate the UF/RO plant as its sole surface water treatment plant. Therefore, the City began allowing equipment at the conventional plant to reach the end of its useful life without conducting routine preventative maintenance to extend the life of the assets. For example, one of the two inline static mixers at the conventional plant had experienced a complete structural failure due to heavy corrosion before it was taken offline. Additionally, components of the EDR units were being scavenged from redundant EDR units when they experienced failure, rather than replacing the failed EDR components with new ones.
However, in November 2023 Texas Instruments (TI) announced plans to build a semiconductor manufacturing factory in Sherman, Texas that would use water at a rate of 12 to 15 MGD. In June 2022 GlobalWafers) also announced plans to build a silicon wafer fabrication factory in Sherman, Texas which would require an additional 8-10 MGD for their industrial processes. The City also anticipates an additional demand of 5 MGD to accommodate over 30 planned developments, restaurants, hotels, and shopping centers in Sherman. To help meet the forecasted demand, the City decided to invest the $50 million into rehabilitating the conventional plant rather than formally decommissioning it, adding an additional 10 MGD of treatment capacity to what they would be able to produce without the conventional plant. The City is in the process of replacing/repairing treatment equipment such as valves, pipes, mixers, chain and flight mechanisms, EDR components, and pumps to prepare to bring the plant back online once TI begins their operations. The City is also in the process of adding additional UF/RO membrane treatment units which will add an additional 5 MGD of treatment capacity.
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
FACILITY/SYSTEM WALKTHROUGH
Conventional Surface Water Treatment Plant
The Facility walkthrough began at the conventional treatment plant, which was offline for rehabilitation at the time of the inspection. Various treatment components were completely removed during the inspection. Refer to Appendix 2, Exhibit 2 for a process flow diagram of the conventional treatment plant.
First, the EPA inspection Team observed the raw water meter vault. There were three chemical injection ports into the raw water line entering the plant, but System representatives indicated that only one, the copper sulfate port, was used (refer to Appendix 1, Photograph 1). The other two injection lines had been disconnected. Copper sulfate is used for algae control during normal operation. System representatives indicated that potassium permanganate could also be fed through one of the ports, but that it hadn't been used in the treatment process for approximately four years. A process flow diagram of the conventional treatment plant provided by the TCEQ indicates that the chemical injection of copper sulfate and potassium permanganate occurs in the raw water vault prior to the raw water flow meter. However, the raw water flow meter is located upstream of the chemical injection points.
Following the raw water vault, the pre-sedimentation basin was observed. Water was observed to be leaking into the pre-sedimentation basin at an estimated rate of a few gallons per minute during the inspection, and System representatives suggested that the raw water valve might have been leaking or not completely closed (refer to Appendix 1, Photograph 2). The water was discharging through a partially open gate to the sanitary sewer (refer to Appendix 1, Photograph 3). It was unclear to the EPA Inspection Team how the sanitary sewer was connected to the basin or if there was a structure between the basin and the sanitary sewer. The potential for a cross-connection was not evaluated during the inspection. System representatives closed the raw water valve completely following the observation, and the leak stopped.
After the pre-sedimentation basin, water enters two parallel lines (an 18-inch line and a 36-inch line) each equipped with a static in-line mixer (refer to Appendix 1, Photograph 4). During normal operation, chemical injection of hydrochloric acid (HCl), chlorine, ammonia, polymer, and alum occurs prior to the mixers. The 18-inch line was already replaced and the 36-inch line was in the process of being replaced. System representatives stated that the lines were being replaced due to heavy corrosion and structural failure that resulted in water leaking from the lines. After the inline mixers, water flows into two flocculation basins. During normal operation, the flocculator system treats effluent from the presedimentation basin. The interior metal components of the flocculation basins were corroded, but System representatives indicated that the metal components would be replaced before the plant was brought back online (refer to Appendix 1, Photograph 5). Next, two parallel sedimentation basins were observed (refer to Appendix 1, Photograph 6). During normal operation, flights operate on skid tracks at the bottom of the basin to remove settled solids. The components of the chain and flight system used to remove solids from the basin had been completely removed. Solids are wasted to one of two onsite sludge ponds, and the decant water is pumped to the City's wastewater treatment plant.
The four dual media (sand and granular activated carbon) filters were observed next (refer to Appendix 1, Photograph 7). System representatives indicated that the valves and actuators on the filter lines were recently replaced. Backwashes occur on a time-based schedule (every 100 hours) rather than based on pressure differential or head loss. A backwashing standard operating procedure (SOP) was present in the
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
filter room (refer to Appendix 1, Photograph 8). System representatives indicated that finished water stored in a 0.6 MG backwash storage tank was used for backwashes (refer to Appendix 1, Photograph 9). The EPA Inspection Team observed the pipe gallery below the filters which included the new actuators on the filter lines, as well as chemical delivery lines to different areas of the treatment process. The potassium permanganate line was severed (refer to Appendix 1, Photograph 10). In addition, the HCI feed line had been modified in a few locations so that lines could be drained during the plant shut-down process.
The chemical storage room was observed following the pipe gallery. Two copper sulfate day tanks were observed, but they were labeled with potassium permanganate signs (refer to Appendix 1, Photograph 11). System representatives indicated that potassium permanganate used to be stored in the tanks but was no longer used in the treatment process. The secondary containment wall surrounding the day tanks was damaged in one location (refer to Appendix 1, Photograph 12). The wall was repaired and a photo was provided to the EPA Inspection Team prior to the conclusion of the inspection (refer to Appendix 4, Follow-Up Material). Next, the Electro-dialysis Reversal Demineralization (EDR) system was observed (refer to Appendix 1, Photograph 13). System representatives indicated that they had been scavenging parts from redundant EDR units to repair other EDR units while the plant was in operation rather than replacing the parts. However, the City was in the process of rehabbing all of the EDR units during the inspection. Following EDR treatment, the water flows through a clearwell meter vault prior to flowing into the North and South clearwells.
Membrane (UF/RO) Plant
The UF/RO plant was in operation during the inspection and was therefore treating 100% of the water being produced by the System. Refer to Appendix 2, Exhibit 3 for a process flow diagram of the UF/RO system.
The head of the UF/RO membrane plant contains a raw water meter vault and pre-sedimentation basin. After the pre-sedimentation basin, the five ultra-filtration feed pumps were observed (refer to Appendix 1, Photograph 14). A fifth pump had recently been added to accommodate the upgraded treatment capacity at the plant. Next, the seven, 130-micron strainers were observed (refer to Appendix 1, Photograph 15). System representatives indicated that the strainers were backwashed based on loss of pressure. Following the strainers, water flows through the five UF units (refer to Appendix 1, Photograph 16). Two UF units were being added during the inspection. 50% of the UF permeate is sent through an RO supply line via two RO feed pumps (one for each RO train). There were three unlabeled chemical injection ports into the RO supply line (reported to be for HCl, NaHSO4, and Anti-Scalant), however the HCl line had failed and was disconnected (refer to Appendix 1, Photographs 17 and 18). The line was in the process of being replaced. System representatives indicated that they weren't having trouble with maintaining target pH levels so the line didn't need to be immediately replaced.
RO permeate flows into an RO break tank. During the inspection, a third RO unit was being constructed (refer to Appendix 1, Photograph 19). The remaining 50% of the permeate from the UF system is bypassed around the RO units and sent directly to a UF break tank. The UF permeate and the RO permeate each enter a separate location in the break tank. They mix in a third section of the break tank and the mixture is injected with chlorine. The produced water from the UF/RO process is then injected with fluoride, phosphate, and caustic into the 84-inch clearwell feed line. The three chemical injection ports for the clearwell feed line were unlabeled. System representatives were unsure which line fed which chemical (refer to Appendix 1, Photograph 20). One of the injection ports was upstream of a flow
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
meter, and the other two were downstream. The water from the UF/RO plant is mixed with the produced water from the conventional process at the end of the baffled portion of the North and South clearwells.
North and South Clearwells After the clearwell feed line, the North and South clearwells were observed (refer to Appendix 1, Photograph 21). There were cracks that appeared to have been repaired on the surface of the clearwells roof/operation deck (refer to Appendix 1, Photograph 22). Chlorine is injected at the influent ends of the clearwells, which are baffled. Ammonia is injected after the baffles prior to the main clearwell basins to generate chloramines. Produced water from the UF/RO membrane plant is mixed with produced water from the conventional plant in the clearwells. During the inspection, only water from the UF/RO membrane plant was being sent to the clearwells. There were ultrasonic level sensors with electrical wiring on the surface of the clearwells that contained electrical conduits with openings, providing direct access to the water inside of the clearwells (refer to Appendix 1, Photograph 23). It was also unclear if there was a sealed gasket between the base of the ultrasonic level sensors and the top of the clearwell (refer to Appendix 1, Photograph 24). When this observation was made, System representatives covered the openings with electrical tape and provided a picture to the EPA Inspection Team (refer to Appendix 4, Follow-Up Material). Additionally, one of the hatchways on top of the clearwell contained a vaultstyle lid, and a drainage line that extended from the hatchway water trough was not covered by a mesh screen (refer to Appendix 1, Photograph 25). When this observation was made, System representatives placed a screen over the end of the line and provided a picture to the EPA Inspection Team (refer to Appendix 4, Follow-Up Material).
High Service Pump Station
The EPA Inspection Team observed the high service pump station which pumps finished water from a finished water vault into the distribution system (refer to Appendix 1, Photograph 26). There were four high service pumps present, and a fifth pump was removed for maintenance. The platform of the removed pump was covered with tarp, plywood, and caulking to prevent contaminants from entering the finished water supply (refer to Appendix 1, Photograph 27). The concrete pump pad appeared to be new. The metal bases of the other high service pump motors were heavily corroded and the concrete around the bases were cracked in places. The cracks provided potential access for contaminants to enter the finished water supply (refer to Appendix 1, Photograph 28).
Chlorine Storage and Injection Rooms
Following the inspection of the treatment plants, the chlorine storage and injection rooms were observed. There was one chlorine facility onsite that serves both the conventional and UF/RO plants. There was a respirator on the outside wall of the chlorine storage room, and System representatives stated that each of the facility personnel were fit tested for a respirator (refer to Appendix 1, Photograph 29). There was an observation window and crash bar for exiting on the door leading to the chlorine storage room and the chlorine injection room (refer to Appendix 1, Photograph 30). Chlorine gas sensors were present near the floor of the chlorine storage room and alarms were also present (refer to Appendix 1, Photograph 31). There was a bottle of liquid ammonia next to the chlorine cylinders. The chlorine injection room was located adjacent to the chlorine storage room and also contained a sensor and alarms. The ventilation system for both rooms was functional.
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Fairview Site
On the second day of the inspection, the Fairview Site was observed. The site was surrounded by a locked perimeter fence with barbed wire. The site consists of a groundwater well (G0910006Q), the Fairview Water Treatment Plant, a 1.35 MG underground storage tank (Fairview Tank), and a pump station. System representatives indicated that the well/pump station hadn't been operated since October/November 2023, and that the storage tank would be completely drained and refilled before the system was put back into operation. There was one, 2,000 gallon per minute (GPM) pump at the pump station, and the other had been removed for maintenance in October 2023 (refer to Appendix 1, Photograph 32). The pump pad for the removed pump was covered with plywood and a caulking seal.
The vents on the top of the tank had bases that were constructed of sheet metal that appeared to have voids and lacked sanitary seals (refer to Appendix 1, Photograph 33). Dirt was accumulating beneath the metal, and ants were observed crawling under the metal (refer to Appendix 1, Photograph 34). There were several manhole structures that appeared to be similar to sanitary sewer manholes on the surface of the tank that provided access to the tank (refer to Appendix 1, Photograph 35). The structures were approximately 1 to 2 inches above the ground. The manhole structures were covered with cylindrical metal lids that were locked. The lids lacked sealed gaskets, and dirt had accumulated inside of the lids (refer to Appendix 1, Photograph 36). Ants were also observed to be crawling under the lids. The manhole covers were sealed with duct tape and silicon caulking. The caulking was deteriorated in places and the duct tape was pealing (refer to Appendix 1, Photograph 37). Corrosion, moisture, and roots were observed on the interior surface of the manholes structures (refer to Appendix 1, Photographs 38 and 39). There were areas of depression surrounding some of the manhole structures where it appeared that water would pond during rain events (refer to Appendix 1, Photograph 40).
The EPA Inspection Team observed a heavily corroded pipe inside the tank that was visible from one of the manhole structures (refer to Appendix 1, Photograph 41). Operators indicated that the metal pipe was the end of an old line that extended from a small surge tank that used to be fed by a groundwater well that was no longer present at the site. The pipe did not appear to be plugged, leaving an open pipe into the tank. Therefore, there is potential for contaminants to enter through the pipe from the old surge tank. There was also a void surrounding the pipe and it was unclear if the void was from the pipe settling or if there was a failure in the tank wall (refer to Appendix 1, Photograph 42). There was a metal cap covering a cylindrical concrete structure next to the manhole from which the corroded metal pipe was observed System representatives were unsure what this asset was (refer to Appendix 1, Photograph 43).
Following the Fairview Tank, Well G0910006Q was observed at the Fairview site (refer to Appendix 1, Photograph 44). The well was operational but not in use during the inspection. There was a gap between the base of the well pedestal and the well pad (refer to Appendix 1, Photograph 45).
The chlorine storage and injection room were observed at the Fairview site. The door to the chlorine room lacked a crash bar and observation window (refer to Appendix 1, Photograph 46). The room also lacked an alarm system, and a full-face self-contained breathing apparatus or supplied air respirator was not present outside of the room. A threaded hose tap without backflow prevention was observed extending from a finished water line in the chlorine room (refer to Appendix 1, Photograph 47). A hose was attached to the hose tap, and it was disconnected when pointed out to System representatives. Chlorine is injected into the Fairview Tank via a finished carrier water line. The EPA Inspection Team observed the chlorine injection vault. The bottom of the vault was lined with dirt and showed signs of
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
past flooding and/or water accumulation inside of the vault (i.e., water marks, mud cracks). There was also an unattached port leading into the vault, and System representatives were unsure of the port's purpose (refer to Appendix 1, Photograph 48).
The Fairview site, including the pump station and Fairview Tank were inspected by Texas Tank Services on January 18, 2023. The associated tank inspection report was provided to the EPA Inspection Team (refer to Appendix 2 Exhibit 5, Contractor Fairview Tank Inspection Report 1/18/2023). Multiple observations regarding the Fairview Tank that were made by Texas Tank Services were also made by the EPA Inspection during this inspection. See Section III-Observations below for more detail.
Stephens Site
The Stephens Site, including two groundwater wells (G0910006U and G0910006W), the Stephens Water Treatment Plant, a 2 MG ground storage tank (Stephens Tank), and a pump station, was observed following the Fairview site. The Stephens site was surrounded by a locked perimeter fence with barbed wire, but there were trees growing against and through the perimeter fence in some locations (refer to Appendix 1, Photograph 49). When the EPA Inspection Team arrived at the Stephens site at approximately 1:30 p.m. on February 14th, the tank was leaking water onto the ground at an estimated rate of several gallons per minute (refer to Appendix 1, Photograph 50). System representatives had become aware of the leak on the morning of February 14th and were in the process of pumping the remaining water in the tank into the distribution system while also draining the tank water via a drain line (refer to Appendix 1, Photograph 51). It was unclear if the tank leak presented a threat to the finished water quality that was being sent to the distribution system. There was an approximately oneinch void between the tank bottom plate and the concrete foundation tank (refer to Appendix 1, Photograph 52). Caulking was not visible at the base of the tank. In terms of security, there was graffiti that had been painted over on the side of the tank, and System representatives indicated that they had experienced challenges with trespassers in the past. The tank's ladder lacked a ladder shield and extended to the ground (refer to Appendix 1, Photograph 53). The chlorine injection vault at the base of the tank was flooded (refer to Appendix 1, Photograph 54).
The Stephens Pump Station has three pumps, one of which was out of service due to a pump motor that had been removed for maintenance (refer to Appendix 1, Photograph 55). Of the two remaining inservice pumps, System representatives indicated that the 1,350 GPM pump was the primary pump and the 2,500 GPM pump was a backup pump that hadn't been used in approximately 20 years. System representatives stated that both groundwater wells were operational. Components of the well motor for well G0910006U had various unattached electrical wires. Additionally, it was unclear if the foodgrade oil barrel used for lubrication at the well contained oil (refer to Appendix 1, Photograph 56). There were also two sand separators present at the Stephens site used to support the wells (refer to Appendix 1, Photograph 57).
The chlorine storage and injection room were observed at the Stephens site. The door to the chlorine room lacked a crash bar and observation window. The room also lacked an alarm system, and a selfcontained breathing apparatus or supplied air respirator was not present outside of the room. A threaded hose tap without backflow prevention was observed extending from a finished water line in the chlorine room (refer to Appendix 1, Photograph 58). During the inspection, the chlorination pump had been manually turned off (unplugged and closed valve) due to the water leak from the tank (refer to Appendix 1, Photograph 59).
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Fairview Elevated Tower
The 1 MG elevated Fairview Tower was observed next. The tower was surrounded by a locked perimeter fence with barbed wire. There were multiple small tree branches growing through the ground near the base of the tank, as well as along the fence surrounding the tower (refer to Appendix 1, Photographs 60 and 61). When this observation was made to System representatives, the trees and branches were removed (refer to Appendix 1, Photographs 62 and 63).
Hydrant Flushing As a component of the inspection, the EPA Inspection Team observed a hydrant flushing at the "3300 Mimosa @ Cypress G Rd North Side" hydrant. An operator completed a flushing log during the flushing event (refer to Appendix 1, Photograph 64). A dechlorination diffuser was attached to the hydrant prior to the beginning of the flush. At the start of the flushing event, the water was slightly cloudy but became clear within a minute (refer to Appendix 1, Photograph 65). A Total Chlorine measurement, obtained by the operator after the hydrant had been flushing for multiple minutes, documented a total chlorine residual of 2.95 mg/L (refer to Appendix 1, Photograph 66).
Section III - OBSERVATIONS
Asset Management
Observation 1.
Observation 2.
The following observations pertain to the SDWA and Texas Administrative Code (TAC) Title 30, Part 1, Chapter 290, Subchapter D1.
Asset Management
Observation 3.
The City does not have a formal computerized maintenance management system (CMMS) or asset management program (AMP) for the treatment plants or the distribution system. Ongoing maintenance activities in the distribution system are tracked through a City-developed work order system created using Microsoft Access,
1 TAC Title 30, Part 1, Chapter 290, Subchapter D can be found at the following link: https://texreg.sos.state.tx.us/public/readtac$ext.ViewTAC?tac view=5&ti=30&pt=1&ch=290&sch=D&rl=Y
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
and the City utilizes a written inventory to track warehoused parts used to make repairs in the distribution system. Preventative and corrective maintenance activities are not formally tracked at either the conventional treatment plant or the UF/RO plant. The City has redundant equipment (i.e., pumps, filters, EDR membranes, UF strainers, RO units etc.) and backup equipment such as chemical injection pumps, but maintenance activity associated with the equipment is not formally tracked using a CMMS.
Work Order Log Sheets/Call Logs
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.46(f) states, "Operating records and reports. All public water systems must maintain a record of water works operation and maintenance activities and submit periodic operating reports."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.46(f)(1) states, "The public water system's operating records must be organized, and copies must be kept on file or stored electronically."
Observation 4.
The System maintains hard copy "Work Order Log Sheets" containing daily logs of customer calls/complaints, but they lack organization and detail regarding the nature of the complaint, the specific problem being reported, and if/when the problem was resolved based on subsequent evaluation. Based on the lack of information provided in the call logs reviewed by the EPA Inspection Team, it is unclear what the true impact was on the potable water or if any of these complaints represent a threat to consumer health based on finished water quality.
Hydrant Flushing
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.46(l) states "Flushing of mains. All dead-end mains must be flushed at monthly intervals. Dead-end lines and other mains shall be flushed as needed if water quality complaints are received from water customers or if disinfectant residuals fall below acceptable levels as specified in 290.110 of this title."
Observation 5.
Based on records reviewed by the EPA Inspection Team, the System was not flushing all dead-end mains in the distribution system at monthly intervals (refer to Appendix 2, Exhibit 4). According to 12 months' worth of Dead End Main Flushing 2023 reports, monthly flushing routes, and monthly total coliform monitoring reports from 2023, multiple hydrants were repeatedly not flushed each month (for example, 3800 Town Center - Home Depot and Hilltop Dr @ Premium Storage), and the comments entered for these hydrants stated "DNF [did not flush]- metered," "DNF has meter on it," or just "DNF." Additionally, one hydrant (5100 Marshall St.) was repeatedly not flushed in 2023 because it was "seized up" or "too hard to open." It was unclear to the EPA Inspection Team if the City is referring to a valve stem for hydrant activation or if the hydrant caps are seized/too difficult to open.
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.46(d)(2) states, "The disinfection equipment shall be operated to maintain the following minimum disinfectant residuals in each finished water storage tank and throughout the distribution system at all times:
A) a free chlorine residual of 0.2 milligrams per liter (mg/L); or
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
B) a chloramine residual of 0.5 mg/L (measured as total chlorine) for those systems that distribute chloraminated water."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.110(a) states, "Applicability. All public water systems shall properly disinfect water before it is distributed to any customer and shall maintain acceptable disinfectant residuals within the distribution system."
Observation 6.
In the dead-end flushing reports from 2023, the EPA Inspection Team observed at least one example of a hydrant flushing colorimeter result that showed a Total Chlorine residual that was not at least 0.5 mg/L (Bob Utter Ford). The flushing reports also document multiple hydrant flushing events during which Total Chlorine values were lower than expected (<1.0 mg/L) over the course of multiple months (for example, 1915 Hwy 82 @ Dr Pepper). In one instance, a Total Chlorine sample at a hydrant (1604 Ann Ave) was <1.0 mg/L, and "High Water Age" was written in the comment field. The hydrant flushing summary report from November 2023 contains an example of each of these observations (refer to Appendix 2 Exhibit 4, Abbreviated November 2023 Hydrant Flushing Summary).
Conventional Water Treatment Plant
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.42(c)(4) states, that "All plant piping shall be constructed to minimize leakage. No cross-connection or interconnection shall be permitted to exist between a conduit carrying potable water and another conduit carrying raw water or water in a prior stage of treatment."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.42(13) states, "The identification of influent, effluent, waste backwash, and chemical feed lines shall be accomplished by the use of labels or various colors of paint. Where labels are used, they shall be placed along the pipe at no greater than five-foot intervals. Color coding must be by solid color or banding. If bands are used, they shall be placed along the pipe at no greater than five-foot intervals."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.46(m) states, "Maintenance and housekeeping. The maintenance and housekeeping practices used by a public water system shall ensure the good working condition and general appearance of the system's facilities and equipment. The grounds and facilities shall be maintained in a manner so as to minimize the possibility of the harboring of rodents, insects, and other disease vectors, and in such a way as to prevent other conditions that might cause the contamination of the water."
Observation 7. The following observations were made regarding the status of various assets at the conventional water treatment plant, which was offline during the inspection (and had been since December 2022):
a. There were three chemical injection ports into the raw water influent line, and the only port that had a chemical line attached to it (the copper sulfate line) was unlabeled.
b. Water was leaking into the conventional plant pre-sedimentation basin at a rate of approximately a few gallons per minute on the first day of the inspection even though the influent gate valve leading to the basin was supposed to be closed, indicating a lack of
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
maintenance on the valve (refer to Appendix 1, Photographs 2 and 3). The water was draining to the sanitary sewer through an open gate in the corner of the basin. This gate was designed to drain the basin as well as to remove solids as required. When System representatives were made aware of the leak, the valve was fully closed, and the leak stopped. A potential cross connection between the sanitary sewer and this basin was not evaluated but could potentially present a concern. It was unclear to the EPA Inspection Team if there was an intermediate asset between the pre-sedimentation basin and the sanitary sewer, or if the pre-sedimentation basins drained to the on-site sludge ponds.
c. The static mixing lines downstream of the HCL addition were in the process of being replaced due to heavy corrosion (refer to Appendix 1, Photograph 4). System representatives stated that the corrosion had led to structural failure of the lines while the plant was operating, which resulted in water leaking from the lines.
d. In the chemical storage room, the secondary containment wall that surrounded the copper sulfate day tanks was damaged (refer to Appendix 1, Photograph 12). The wall was repaired after this observation was made to System representatives, and a photo was provided to the EPA Inspection Team (refer to Appendix 4, Follow-Up Material). Additionally. the copper sulfate day tanks still contained potassium permanganate labels, even though the tanks were no longer used to hold potassium permanganate (since it is no longer used at the plant) (refer to Appendix 1, Photograph 11).
Membrane (UF/RO) Treatment Plant
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.42(13) states, "The identification of influent, effluent, waste backwash, and chemical feed lines shall be accomplished by the use of labels or various colors of paint. Where labels are used, they shall be placed along the pipe at no greater than five-foot intervals. Color coding must be by solid color or banding. If bands are used, they shall be placed along the pipe at no greater than five-foot intervals."
Observation 8. The following observations were made regarding the status of various assets at the membrane (UF/RO) water treatment plant:
a. Three unlabeled chemical injection points were upstream of the RO trains. One of the injection ports didn't have a hose (refer to Appendix 1, Photographs 17 and 18). System representatives stated the HCL line experienced a failure approximately a week earlier.
b. Three unlabeled chemical injection points were present on the 84-inch produced water line that conveys water from the UF/RO break tank to the North and South clearwells (refer to Appendix 1, Photograph 20). Operators were unsure which injection point was for which chemical. A process flow diagram of the UF/RO treatment plant provided by TCEQ indicates that fluoride, phosphate, and caustic are injected following the finished water flow meter. However, the EPA Inspection Team observed that one of the chemical injection points was positioned upstream of the flow meter and the other two were downstream of the flow meter.
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Finished Water Storage
City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.43(c), Design and construction of clearwells, standpipes, ground storage tanks, and elevated tanks, states "All facilities for potable water storage shall be covered and designed, fabricated, erected, tested, and disinfected in strict accordance with current American Water Works Association (AWWA) standards and shall be provided with the minimum number, size and type of roof vents, man ways, drains, sample connections, access ladders, overflows, liquid level indicators, and other appurtenances as specified in these rules. The roof of all tanks shall be designed and erected so that no water ponds at any point on the roof and, in addition, no area of the roof shall have a slope of less than 0.75 inch per foot."
Observation 9. The following observations were made regarding the clearwells and high service pump station/finished water meter vault at the end of the conventional and membrane (UF/RO) surface water treatment plants:
a. There was no screen covering a drainpipe that extended from the inside of one of the vault-style hatchways on top of the North clearwell (refer to Appendix 1, Photograph 25). A screen was placed over the drainpipe after this observation was made to System representatives, and a photo was provided to the EPA Inspection Team (refer to Appendix 4, Follow-Up Material).
b. There were ultrasonic level sensors with electrical equipment on the surface of the clearwells that contained electrical conduits with openings, providing direct access for contaminants to enter the clearwells (refer to Appendix 1, Photograph 23). Additionally, it was unclear if there was a sealed gasket beneath the equipment, and there were gaps beneath the platform that the equipment was positioned on (refer to Appendix 1, Photograph 24). After the electrical conduit openings were observed, System representatives covered the conduit with electrical tape and provided a photo to the EPA Inspection Team (refer to Appendix 4, Follow-Up Material).
c. There was heavy corrosion on the metal pads that multiple high service pumps were positioned on, and there were cracks in the concrete seal around the base of the pump shafts, creating potential access to the finished water in the pump station/finished water meter vault (i.e., the vault where finished water is drawn from prior to being pumped into the distribution system) (refer to Appendix 1, Photograph 28). The EPA Inspection Team observed System representatives repairing the cracks/metal bases of the pump shafts on the second day of the inspection, after this observation was made to System representatives.
Fairview Site
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.43(c), Design and construction of clearwells, standpipes, ground storage tanks, and elevated tanks, states "All facilities for potable water storage shall be covered and designed, fabricated, erected, tested, and disinfected in strict accordance with current American Water Works Association (AWWA) standards and shall be provided with the minimum number, size and type of roof vents, man ways, drains, sample connections, access ladders, overflows, liquid level indicators, and other appurtenances as specified in these rules. The roof of all tanks shall be designed and erected so that no water ponds at any point on the roof and, in addition, no area of the roof shall have a slope of less than 0.75 inch per foot."
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.43(c)(1) states, "Roof vents shall be gooseneck on roof ventilator and be designed by the engineer based on the maximum outflow from the tank. Vents shall be installed in strict accordance with current AWWA standards and shall be equipped with approved screens to prevent entry of animals, birds, insects, and heavy air contaminants. Screens shall be fabricated of corrosion-resistant material and shall be 16-mesh or finer. Screens shall be securely clamped in place with stainless or galvanized bands or wires and shall be designed to withstand winds of not less than tank design criteria (unless specified otherwise by the engineer)."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.43(c)(2) states, "All roof openings shall be designed in accordance with current AWWA standards. If an alternate 30-inch diameter access opening is not provided in a storage tank, the primary roof access opening shall not be less than 30 inches in diameter. Other roof openings required only for ventilating purposes during cleaning, repairing, or painting operations shall be not less than 24 inches in diameter or as specified by the licensed professional engineer. An existing tank without a 30-inch in diameter access opening must be modified to meet this requirement when major repair or maintenance is performed on the tank. Each access opening shall have a raised curbing at least four inches in height with a lockable cover that overlaps the curbing at least two inches in a downward direction. Where necessary, a gasket shall be used to make a positive seal when the hatch is closed. All hatches shall remain locked except during inspections and maintenance."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.42(d)(2)(A) states, "Vacuum breakers must be provided on each hose bibb within the plant facility."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.42(e)(4)(A) states, "When chlorine gas is used, a full-face self-contained breathing apparatus or supplied air respirator that meets Occupational Safety and Health Administration (OSHA) standards for construction and operation, and a small bottle of fresh ammonia solution (or approved equal) for testing for chlorine leakage shall be readily accessible outside the chlorinator room and immediately available to the operator in the event of an emergency."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.46(m)(1)(A) states, "Ground and elevated storage tank inspections must determine that the vents are in place and properly screened, the roof hatches closed and locked, flap valves and gasketing provide adequate protection against insects, rodents, and other vermin, the interior and exterior coating systems are continuing to provide adequate protection to all metal surfaces, and the tank remains in a watertight condition."
Observation 10. The following observations were made in regard to various assets at the Fairview site:
a. The bases of the vent structures to the Fairview Tank were constructed out of multiple pieces of sheet metal and had voids in areas, allowing grass to grow through (refer to Appendix 1, Photograph 33). The vent structures appeared to be covering a pipe that was encased by a concrete pad. No sanitary seal or gasket material was observed between the metal bases and the concrete pads that the vents were positioned on. The concrete pads supporting the vent structures had multiple ant hills and ants positioned under the sheet metal structures (refer to Appendix 1, Photograph 34).
b. Manholes/accessways on top of the Fairview Tank did not provide adequate protection to the finished water. The EPA Inspection Team observed the following potential threats to the finished water quality:
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
It was unclear if a positive seal was being formed around the lids of the manholes. A silicon caulking had been used around the rim of the manhole covers, but it was deteriorated in some places (refer to Appendix 1, Photograph 37). Duct-tape was used in some areas around the manhole crown but was peeling off during the inspection.
Roots were seen growing through the inside of the concrete structures of the manholes, and some were touching the surface of the water (refer to Appendix 1, Photograph 39). There was also heavy corrosion and condensation (moisture) on the metal components of the manholes (refer to Appendix 1, Photograph 38).
The manhole structures were covered by external cylindrical metal lids (refer to Appendix 1, Photograph 36). The lids lacked sealed gaskets, and dirt was built up around the sides of the elevated manholes beneath the lids. Ants were also observed crawling under the lids.
The manhole covers had varying heights associated with the dirt and grass in the area, and some areas had less than four inches of clearance (refer to Appendix 1, Photograph 35).
The manhole structures appeared to be in lower laying areas that appeared to pond water during wet weather events (refer to Appendix 1, Photograph 40).
c. There were multiple openings leading into the Fairview Tank that provided potential contamination concerns to the finished water supply: There was a heavily corroded metal pipe inside of the Fairview Tank that was visible from one the manhole hatchways (refer to Appendix 1, Photograph 41). Operators indicated that the metal pipe was the end of an old line that extended from a small surge tank that used to be fed by a groundwater well that was no longer present at the site. The pipe did not appear to be plugged, leaving an open pipe into the tank. There was a void in the tank wall next to the corroded metal pipe (refer to Appendix 1, Photograph 42). It was unclear if the void was a wall failure or situation where the historic pipe settled, creating the void. The void provided direct access to the finished water supply.
d. There was a gap between the base of the well pedestal and the well pad (refer to Appendix 1, Photograph 45).
e. There was an unattached open port inside of the chlorine injection vault next to the Fairview Tank, and operators were unsure of the port's use (refer to Appendix 1, Photograph 48). There were also signs of past flooding and/or water accumulation inside of the vault (i.e., water marks, mud cracks).
f. A tank inspection report was conducted by Texas Tank Services on January 18th, 2023, and multiple observations that were made by the EPA Inspection Team (including corrosion of tank components and failure to meet tank hatchway requirements) were included in the report. The report was provided to the EPA Inspection Team and is included in Appendix 2, Exhibit 5, Contractor Fairview Tank Inspection Report 1/18/2023.
g. There was no full-face self-contained breathing apparatus outside of the chlorine storage room at the Fairview site. Additionally, the door of the chlorine storage room at the Fairview site lacked a crash bar and observation window (refer to Appendix 1, Photograph 46). No alarm system was present to indicate a chlorine leak inside of the room. 19
City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
h. A threaded hose tap without backflow prevention extended off of a finished water line (used to supply carry water for chlorine injection) inside of the chlorine storage room at the Fairview site (refer to Appendix 1, Photograph 47). The hose was disconnected upon The EPA Inspection Team's field discussion with City staff.
Stephens Site
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.43(c) Design and construction of clearwells, standpipes, ground storage tanks, and elevated tanks, states "All facilities for potable water storage shall be covered and designed, fabricated, erected, tested, and disinfected in strict accordance with current American Water Works Association (AWWA) standards and shall be provided with the minimum number, size and type of roof vents, man ways, drains, sample connections, access ladders, overflows, liquid level indicators, and other appurtenances as specified in these rules. The roof of all tanks shall be designed and erected so that no water ponds at any point on the roof and, in addition, no area of the roof shall have a slope of less than 0.75 inch per foot."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.42(d)(2)(A) states, "Vacuum breakers must be provided on each hose bibb within the plant facility."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.43(e), Facility security, states "All potable water storage tanks and pressure maintenance facilities must be installed in a lockable building that is designed to prevent intruder access or enclosed by an intruder-resistant fence with lockable gates. Pedestal-type elevated storage tanks with lockable doors and without external ladders are exempt from this requirement. The gates and doors must be kept locked whenever the facility is unattended."
Title 30, Part 1, Chapter 290, Subchapter D, Rule 290.42(e)(4)(A) states, "When chlorine gas is used, a full-face self-contained breathing apparatus or supplied air respirator that meets Occupational Safety and Health Administration (OSHA) standards for construction and operation, and a small bottle of fresh ammonia solution (or approved equal) for testing for chlorine leakage shall be readily accessible outside the chlorinator room and immediately available to the operator in the event of an emergency."
Observation 11. The following observations were made in regard to assets at the Stephens site:
a. Water was leaking from the base of the Stephens Tank due to a structural failure (refer to Appendix 1, Photograph 50). The failure occurred on the morning of February 14, 2024. Finished water was flowing into an overflow drain that ultimately discharged into a storm sewer (refer to Appendix 1, Photograph 51). Due to the leak, operators had opened the drain valve in the bottom of the tank which also discharged to the overflow drain. While the tank was draining, water was also being pumped into the distribution system. It was unclear if the tank leak presented a threat to the finished water quality that was being sent to the distribution system.
b. There were various locations surrounding the base of the tank where there was an approximately inch-wide void between the bottom plate of the tank and the concrete foundation (refer to Appendix 1, Photograph 52).
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
c. There was graffiti that had been painted over on the side of the Stephens Tank. System representatives indicated that they had experienced challenges with intruders at the Stephens site in the past. There were multiple trees growing around/through the fence line at the Stephens site, potentially compromising the intruder resistance of the fence (refer to Appendix 1, Photograph 49). The Stephens tank ladder lacked a locked ladder shield, and the ladder extended all the way to the ground.
d. The chlorine injection vault at the base of the Stephens Tank was flooded (refer to Appendix 1, Photograph 54).
e. There was no full-face self-contained breathing apparatus outside of the chlorine storage room at the Stephens site. Additionally, the door of the chlorine storage room at the Stephens site lacked a crash bar and observation window. No alarm system was present to indicate a chlorine leak inside of the room.
f. A threaded hose tap without backflow prevention extended off of a finished water line (used to supply carry water for chlorine injection) inside of the chlorine storage room at the Stephens site (refer to Appendix 1, Photograph 58).
Closing Conference
On February 14, 2024 the EPA Inspection Team met with Jim Cross, the City of Sherman Water System Manager, as well as other City of Sherman PWS representatives for a closing conference at approximately 4:00 p.m. The EPA Inspection Team reviewed observations with the Facility representatives and explained that the observations were preliminary and did not constitute any formal compliance determinations.
Section IV - FOLLOW UP
The Lead and Copper Sampling Plan, dead-end flushing program, as well as the Fairview Tank inspection documents were received following the conclusion of the inspection on February 14, 2024. Photos of the repaired secondary containment wall in the chemical storage room, screens that were placed over the drainage port at the North clearwell, and electrical tape placed over the electrical conduit at the South clearwell were provided to the EPA Inspection Team on February 14, 2024, the second day of the inspection. The Stephens Tank was drained and inspected on February 19, 2024 to find the source of the leak. A summary of the findings (corrosion between the bottom plate of the tank and the mud valve used to drain the tank) was sent to the EPA Inspection Team on March 5, 2024 (refer to Appendix 4, Follow-Up Material).
Section V - LIST OF APPENDICES
Appendix 1 - Photograph Log Appendix 2 - Exhibit Log
Exhibit 1 - Main Water System Hydraulic Profile Exhibit 2 - Conventional Plant Process Flow Diagram
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024 Exhibit 3 - Membrane (UF/RO) Plant Process Flow Diagram Exhibit 4 - Abbreviated November 2023 Hydrant Flushing Summary Exhibit 5 - Contractor Fairview Tank Inspection Report 1/18/2023 Exhibit 6 - Ongoing Corrective Maintenance List Appendix 3 - 2016 Sherman LCR Sampling Plan Appendix 4 - Follow-Up Material
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Appendix 1 Photograph Log
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 1 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Flow Meter
Three Injection Ports
Photograph 1. 2/13/2024 12:53 PM DSCN9214.JPG Conventional Plant, Raw Water Meter Vault View of the raw water influent line inside the raw water meter vault. There were three injection ports present on the line but only one had a chemical line attached to it (copper sulfate). The other two injection lines had been disconnected. The injection ports were downstream of the flow meter.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 2 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Water Leaking into Basin
Direction of Flow
Photograph 2. 2/13/2024 1:00 PM DSCN9217.JPG Conventional Plant, Pre-Sedimentation Basin View of water leaking into the influent end of the presedimentation basin at the conventional plant at an estimated rate of a few gallons per minute. System representatives suggested that the raw water valve might have been leaking or not completely closed.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 3 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 3. 2/13/2024 1:01 PM IMG_0005.JPG Conventional Plant, Pre-Sedimentation Basin View of water flowing through a partially open gate. It was unclear to the EPA Inspection Team how the sanitary sewer was connected to the basin or if there was a structure between the basin and the sanitary sewer. System representatives stated that the water flowed to the sanitary sewer. The EPA Inspection Team did not evaluate cross-connection controls associated with this line.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 4 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Old 36" Line
Photograph 4. 2/13/2024 1:07 PM DSCN9222.JPG Conventional Plant, In-Line Static Mixers View of the vault containing the two, inline static mixer lines. There are two parallel lines, an 18-inch line and a 36-inch line. The System was in the process of replacing the 36-inch due to a structural failure caused by heavy corrosion. A removed section of the 36inch line was next to the vault. System representatives stated that during normal operation, HCl is injected immediately upstream of the mixers.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 5 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Heavy Corrosion
Photograph 5. 2/13/2024 1:16 PM DSCN9229.JPG Conventional Plant, Flocculation Basins View inside one of the flocculation basins. The interior metal components were corroded. System representatives indicated that the components would be replaced before the conventional plant was put back online.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 6 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 6. 2/13/2024 1:19 PM DSCN9230.JPG Conventional Plant, Sedimentation Basin View of one of the two parallel sedimentation basins. The solids-removing infrastructure had been removed and the basins were being rehabilitated during the inspection. New flight and chain equipment is scheduled for installation.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 7 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 7. 2/13/2024 1:28 PM IMG_0020.JPG Conventional Plant, Dual Media Filters View inside Filter No. 1. The structure had some concrete loss, and some aggregate was exposed.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 8 Location: City of Sherman Public Water System
City of Sherman
I County: Grayson
I State: Texas
URE STEPS
room fo badnnsh
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Go to Blower Control Panel - M 30z.~ for fflter #2 &14 or M 302-Z for
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Photograph 8. 2/13/2024 1:34 PM DSCN9244.JPG Conventional Plant, Filter Backwash SOP View of a filter backwash SOP maintained inside the filter control room.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 9 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Backwash Storage Tank
Photograph 9. 2/13/2024 1:29 PM DSCN9241.JPG Backwash Water Storage Tank View of the 0.6 MG backwash water storage tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 10 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Severed Potassium Permanganate Line
Photograph 10. 2/13/2024 1:59 PM DSCN9260.JPG Conventional Plant, Pipe Gallery View of the chemical lines in the pipe gallery. The potassium permanganate line had been severed and therefore could not be used. There were multiple severed/disconnected chemical feed lines inside the pipe gallery in addition to the severed potassium permanganate line.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 11 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Potassium Permanganate Label
Photograph 11. 2/13/2024 2:29 PM DSCN9284.JPG Conventional Plant, Chemical Storage Room View of one of the two labels on the two copper sulfate day tanks. The labels both said potassium permanganate even though potassium permanganate was no longer used in the treatment process.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 12 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Damage
Photograph 12. 2/13/2024 2:22 PM DSCN9280.JPG Conventional Plant, Chemical Storage Room View of the secondary containment wall surrounding the two copper sulfate day tanks. The wall was damaged in one location. When this observation was made to System representatives, the wall was repaired (refer to Appendix 4, Follow-Up Material).
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 13 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 13. 2/13/2024 2:34 PM DSCN9289.JPG Conventional Plant, EDR Units View of several of the EDR units. System representatives indicated that all of the EDR units were being rehabilitated prior to bringing the plant back online.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 14 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 14. 2/13/2024 3:00 PM DSCN9311.JPG Membrane (UF/RO) Plant, UF Feed Pumps View of the five UF feed pumps at the UF/RO plant. The fifth pump (furthest to the right in this image) had been recently added to accommodate the upgraded treatment capacity at the plant. There was scaffolding supporting additional equipment upgrades at multiple areas inside the UF/RO plant.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 15 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 15. 2/13/2024 3:03 PM DSCN9313.JPG Membrane (UF/RO) Plant, UF Strainers View of the UF strainers at the UF/RO plant.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 16 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 16. 2/13/2024 3:10 PM DSCN9317.JPG Membrane (UF/RO) Plant, UF Units View of three of the five UF units at the UF/RO plant. Two additional UF units were being added during the inspection to accommodate the upgraded treatment capacity at the plant.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 17 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Disconnected HCl Port
Photograph 17. 2/13/2024 3:25 PM IMG_0094.JPG Membrane (UF/RO) Plant, RO Supply Line View of the three unlabeled chemical injection ports into the RO supply line that feeds UF permeate to the RO units. The line to the HCl port had failed and was disconnected. The line was in the process of being replaced.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 18 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Disconnected HCl Port
Photograph 18. 2/13/2024 3:25 PM IMG_0095.JPG Membrane (UF/RO) Plant, RO Supply Line Additional view of the three unlabeled chemical injection ports and the disconnected HCl line.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 19 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
New RO Unit
Photograph 19. 2/13/2024 3:31 PM DSCN9337.JPG Membrane (UF/RO) Plant, RO Units View of two of the RO units at the UF/RO plant, including the new RO unit that was being constructed during the inspection.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 20 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Flow Meter
Upstream Injection Line
-
f\N\SHED WATER l
Downstream Injection Lines
Photograph 20. 2/13/2024 3:47 PM DSCN9347.JPG Clearwell Meter Vault View inside the clearwell meter vault where produced water flows from the UF/RO plant into the North and South clearwells. There were three unlabeled chemical lines attached to the water line, one upstream of the flow meter and two downstream of the flow meter. Caustic, fluoride, and phosphate are injected into this line, but system representatives were unsure which chemical line injected which chemical.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 21 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
South Clearwell
North Clearwell
Photograph 21. 2/13/2024 3:55 PM IMG_0114.JPG North and South Clearwells View of the North and South clearwells.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 22 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 22. 2/13/2024 4:09 PM IMG_0124.JPG North and South Clearwells View of cracks on the surface of the clearwells that appeared to have been repaired.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 23 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Conduit with Opening
Base
Photograph 23. 2/13/2024 4:09 PM IMG_0126 North and South Clearwells View of a conduit for ultrasonic level sensor equipment on top of the North clearwell. There was a gap in the electrical conduit providing direct access to the water inside of the clearwell. When this observation was made to System representatives, the electrical conduit was covered in electrical tape (refer to Appendix 4, Follow-Up Material). A close-up view of the base can be seen in the next photograph.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 24 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 24. 2/13/2024 4:10 PM IMG_0131.JPG North and South Clearwells View of the base of the equipment associated with the ultrasonic level indicator on top of the North clearwell. There was a gap between the base of the equipment and the top of the clearwell and it was unclear if a sealed gasket was present to prevent the entry of contaminants to the clearwell.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 25 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Uncovered Drain Line
Vault-Style Hatchway
Photograph 25. 2/13/2024 4:03 PM DSCN9353.JPG North and South Clearwells View of the vault-style hatchway leading to the clearwell and the uncovered drainage line extending off the side of the clearwell. The drainage line is for the interior of the vault-style hatchway. When this observation was made, System representatives placed a screen over the end of the line and provided a picture to the EPA Inspection Team (refer to Appendix 4, FollowUp Material).
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 26 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Removed Pump
Photograph 26. 2/13/2024 4:11 PM DSCN9357.JPG High Service Pump Station View of three of the five pumps at the high service pump station. One of the pumps is not visible in this image, and the other was removed for maintenance.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 27 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 27. 2/13/2024 4:14 PM DSCN9362.JPG High Service Pump Station View of the pump platform where one of the high service pumps had been removed for maintenance. The platform for the removed pump was covered with tarp, plywood, and a sealant material to prevent contaminants from entering the finished water supply.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 28 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 28. 2/13/2024 4:11 PM DSCN9359.JPG High Service Pump Station Close-up view of one of the metal bases of the high service pump motors. The bases were heavily corroded, and there were cracks between the metal base and the concrete seals; it was unclear to the EPA Inspection Team if there was a potential for contaminants to enter the finished water supply at this location.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 29 Location: City of Sherman Public Water System
City of Sherman
I County: Grayson
IState: Texas
Self Cootained Brealhing Appar~--
'
Photograph 29. 2/14/2024 9:50 AM DSCN9395.JPG Chlorine Storage and Injection Rooms View of the respirator on the outside wall of the chlorine storage room at the conventional and UF/RO plants.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 30 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 30. 2/14/2024 10:06 AM DSCN9404.JPG Chlorine Storage and Injection Rooms View of the doors leading to the chlorine storage and injection rooms. The doors contained observation windows and crash bars.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 31 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 31. 2/14/2024 9:57 AM DSCN9399.JPG Chlorine Storage and Injection Room View of the chlorine gas sensor positioned near the floor in the chlorine storage room at the conventional and UF/RO plants.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 32 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Removed Pump
Photograph 32. 2/14/2024 10:45 AM DSCN9414.JPG Fairview Pump Station View of the Fairview Pump Station. There was one, 2,000 gallon per minute (GPM) pump at the pump station, and the other had been removed for maintenance in October 2023. The pump pad for the removed pump was covered with plywood and a caulking seal.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 33 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 33. 2/14/2024 10:50 AM IMG_0016.JPG Fairview Tank View of the base of one of the vents on top of the Fairview Tank. The bases of the vents were constructed of metal that appeared to have voids and lacked sanitary seals.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 34 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Ants
Photograph 34. 2/14/2024 10:50 AM IMG_0017.JPG Fairview Tank Additional view of the base of one of the vents on top of the Fairview Tank. Dirt had accumulated beneath the metal, and ants were observed crawling under the metal.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 35 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 35. 2/14/2024 11:03 AM DSCN9427.JPG Fairview Tank View of one manholes for accessing the interior of the Fairview Tank. The manhole was constructed of a metal ring and cover similar to a sanitary sewer manhole. The manhole structures were approximately 1 to 2 inches above the ground.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 36 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Dirt
Metal Lid (Inverted)
Photograph 36. 2/14/2024 11:01 AM DSCN9426.JPG Fairview Tank View of one of the manhole structures that was covered in dirt. Also visible in this image is one of the metal lids that were covering the manhole structures. The lids lacked sealed gaskets. Ants were observed crawling under the lids.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 37 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Silicon Caulking
Duct Tape
Photograph 37. 2/14/2024 11:03 AM DSCN9429.JPG Fairview Tank View of one of the manholes that provided access to the interior of the Fairview Tank. A silicon caulking had been used around the rim of the manhole covers, but it was deteriorated in some places. Duct tape was also used in some areas around the manhole crown but was peeling off during the inspection.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 38 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 38. 2/14/2024 11:19 AM IMG_0037.JPG Fairview Tank View inside of one of the manholes at the Fairview Tank. Corrosion, moisture, and roots were observed on the interior surface of the manhole structures.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 39 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 39. 2/14/2024 11:19 AM IMG_0041.JPG Fairview Tank View of roots growing through the manhole structure toward the water surface inside the Fairview Tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 40 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Areas of Ponding
Photograph 40. 2/14/2024 10:52 AM DSCN9421.JPG Fairview Tank Close-up view of low area with evidence of ponding adjacent to two manholes for the Fairview Tank. The two manholes provide access to the interior of the Fairview Tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 41 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Corroded Pipe
Photograph 41. 2/14/2024 11:19 AM IMG_0044.JPG Fairview Tank View of a heavily corroded metal pipe inside of the Fairview Tank that was visible from inside one the manholes. Operators indicated that the metal pipe was the end of an old line that extended from a small surge tank that used to be fed by a groundwater well that was no longer present at the site. The pipe did not appear to be plugged, leaving an open pipe into the tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 42 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Open Pipe
Void
Photograph 42. 2/14/2024 11:19 AM IMG_0043.JPG Fairview Tank View of a void in the tank wall next to the corroded metal pipe. It was unclear if the void was a wall failure or situation where the historic pipe settled, creating the void. The void provided direct access to the finished water supply.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 43 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Cylindrical Concrete Structure
Photograph 43. 2/14/2024 11:03 AM IMG_0028.JPG Fairview Tank View of an unknown cylindrical concrete structure that is covered by a metal cap. The structure was positioned near the manhole at the Fairview Tank that contained the heavily corroded metal pipe.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 44 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 44. 2/14/2024 11:28 AM IMG_0046.JPG Fairview Site, Well G0910006Q View of the wellhead for Well G0910006Q at the Fairview site. The well was operational but not in use during the inspection.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 45 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Gap
Photograph 45. 2/14/2024 11:30 AM IMG_0051.JPG Fairview Site, Well G0910006Q View of the base of the well pedestal for Well G0910006Q where it meets the well pad. There was a gap between the well pedestal and the pad.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 46 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 46. 2/14/2024 11:39 AM IMG_0072.JPG Fairview Site, Chlorine Injection Room View of the door to the chlorine injection room that lacked a crash bar and observation window. In addition, a respirator was not available at this location.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 47 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Hose Tap
Photograph 47. 2/14/2024 11:35 PM DSCN9454.JPG Fairview Site, Chlorine Injection Room View of a threaded hose tap without backflow prevention with an attached hose inside of the chlorine injection room at the Fairview site. The tap was attached to a line that is supplying finished water. It is unknown if the line had backflow prevention. The hose was unattached when this observation was made to System representatives.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 48 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Unknown Port
Photograph 48. 2/14/2024 11:30 AM IMG_0053.JPG Fairview Site, Chlorine Injection Vault View of the vault housing the chlorination injection line. There was an additional unknown port without a hose inside of the vault. The bottom of the vault was lined with dirt that appeared to be wet.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 49 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Trees
Photograph 49. 2/14/2024 1:32 PM IMG_0079.JPG Stephens Site, Perimeter Fence View of the perimeter fence surrounding the Stephens site. There were multiple trees growing through and around the fence, potentially compromising the integrity of the fence and security of the site.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 50 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Leak
Photograph 50. 2/14/2024 1:50 PM IMG_0085.JPG Stephens Tank View of a leak from the Stephens Tank caused by a structural failure that occurred on the morning of February 14, 2024. The tank was leaking water from under the bottom plate onto the ground adjacent to the tank foundation at an estimated rate of several gallons per minute during the inspection. The EPA Inspection Team received follow-up communication from the System on March 5, 2024 indicating that the tank had been drained and inspected, and that the source of the leak was due to corrosion between the steel floor/plate of the tank and the "mud valve" seal. The mud valve is used to drain the tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 51 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Tank Overflow
Photograph 51. 2/14/2024 1:50 PM DSCN9504.JPG Stephens Tank View of finished water from the Stephens Tank that was flowing into an overflow drain that ultimately discharged into a storm sewer. Due to the leak, operators had opened the drain valve in the bottom of the tank which also discharged to the overflow drain. Water was also being pumped into the distribution system while the tank was draining.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 52 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 52. 2/14/2024 1:47 PM DSCN9513.JPG Stephens Tank View of an approximately inch-wide void between the bottom plate of the Stephens Tank and the concrete foundation. Similar voids were present in various areas around the base of the tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 53 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Chlorine Injection Vault
Photograph 53. 2/14/2024 1:50 PM DSCN9515.JPG Stephens Tank View of the access ladder for the Stephens Tank. The ladder lacked a ladder shield and extended to the ground. . The chlorine injection vault was flooded.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 54 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 54. 2/14/2024 1:50 PM IMG_0116.JPG Stephens Tank View inside the flooded chlorine injection vault at the Stephens Tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 55 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Removed Pump #2
Photograph 55. 2/14/2024 1:53 PM IMG_0088.JPG Stephens Site, Pump Station View of the pump station at the Stephens site. One of the three pumps (Pump #2) was out of service and had been removed for maintenance. The work order for its repair was created on October 9, 2023. The shaft was scheduled to be pulled on October 11, 2023. The work order `Ticket Status' states that the repair is `In Progress.'
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 56 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Unattached Electrical Wires
Photograph 56. 2/14/2024 1:32 PM DSCN9506.JPG Stephens Site, Well G0910006U View of Well G0910006U at the Stephens site. Components of the well motor had various unattached electrical wires. It was unclear if the food-grade oil barrel used for lubrication (right of the image) at the well contained oil.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 57 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 57. 2/14/2024 2:01 PM DSCN9523.JPG Stephens Site, Sand Separator View of one of the two sand separators at the Stephens site.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 58 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Hose Tap
Photograph 58. 2/14/2024 2:24 PM DSCN9533.JPG Stephens Site, Chlorine Injection Room View of a threaded hose tap without backflow prevention inside of the chlorine injection room at the Stephens site. The tap was attached to a line that is supplying finished water. It is unknown if the line had backflow prevention.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 59 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 59. 2/14/2024 2:24 PM IMG_0110.JPG Stephens Site, Chlorine Injection Room View of the chlorine pump that had been unplugged inside of the chlorine injection room at the Stephens site. The pump was unplugged because the System representatives were in the process of draining the Stephens Tank during the inspection.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 60 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 60. 2/14/2024 2:49 PM IMG_0124.JPG Fairview Elevated Tank View of a small tree growing against the base of center column for the Fairview Elevated Storage Tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 61 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 61. 2/14/2024 2:50 PM IMG_0121.JPG Fairview Elevated Tank View of a tree growing against the fence surrounding the Fairview Elevated Storage Tank.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 62 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 62. 2/14/2024 2:52 PM IMG_0125.JPG Fairview Elevated Tank View of the tree around the base of the Fairview Elevated Storage Tank being removed.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 63 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 63. 2/14/2024 2:55 PM IMG_0132.JPG Fairview Elevated Tank View of the tree around the perimeter fence surrounding the Fairview Elevated Storage Tank being removed.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 64 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
'"'""""
ufllrv.-t.' "''
F 1,1!.'H[">.~
f :-.H.a.rAAT f"ilEfOCLUII
1;,,,.
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Photograph 64. 2/14/2024 3:12 PM DSCN9546.JPG Hydrant Flushing Event View of the flushing log that was filled out by System representatives during the flushing of the "3300 Mimosa @ Cypress G Rd North Side" hydrant.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 65 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 65. 2/14/2024 3:12 PM DSCN9553.JPG Hydrant Flushing Event View of the dechlorinator that was used during the hydrant flushing event observed by the EPA Inspection Team during the inspection. The water that was flushed in the beginning of the event was slightly cloudy but became clear within a minute.
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Photograph Log
Photo No. 66 Location: City of Sherman Public Water System
City of Sherman
County: Grayson
State: Texas
Photograph 66. 2/14/2024 3:18 PM DSCN9562.JPG Hydrant Flushing Event View of the Total Chlorine result taken at 3:19 p.m. (CT) at the "3300 Mimosa @ Cypress G Rd North Side" hydrant during the flushing event. The Total Chlorine result was 2.95 mg/L.
City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Appendix 2 Exhibit Log
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Exhibit Log
Exhibit 1 Main Water System Hydraulic Profile
(
City of Sherman TCEQ ID No. 0910006 Investigation Date: 6/21-22/23 Investigator: Eric Leigh
Texas Commission on Environmental Quality Public Water System Diagram
Surface Water Pressure Planes
Hl1h Service Pumps 3@5400gpm 2@ 2250gpm
SWTP
Pressu re Zone 3 3116
Connections
Oty ofKnollwood PWS ID No. 0910146 Max Rate: 500 gpm
0ti _ Re~~ru~:2~.,
1401 Marshall St.
- - ~~
Southwest Pump Station 2200 Hwy 1417 (Fills all !NI towers)
1.63 MG GST
High Service Pumps 2@ 3800gpm 2@ 2500gpm 1 @ lS001pm
IQ_~
4 Southwest Tower
Cl2 lAS
bypm
StarrWSC PWSIDNo.
0910046 Emer en
2.0MG EST
Pres.,ure Zone 2 8502
Connections
Gallagher Tower 1200 Gollogher Or.
Pressure Zone 4 80
C.Onntdlons
Shepherd Tower 517 Shepherd Rd.
0.75 MG EST
f
City of Sherman
Texas Commission on Environmental Quality
TCEQID No.0910006 Investigation Date: 6/21-22/23
Public Water System Diagram
Investigator: Eric Leigh
Groundwater Pressure Plane
(S)Wells G0910006A G0910006B G0910006C G0910006D G0910006F
' Sand Separation Gu Chlorine
(2)Wells G0910006AC G0910006AD
Gas Chlorine
(S) Servke l'IJmps
Ida Rd. WTP 1800 E. Ida Rd. EP 001
S.O MG GST
O.SO M G UST
2 @1 1000 gpm l@SOOgpm
1 @ 3000 gpm 1 @ 2400gpm 2@20001pm 1@ 1200gpm
Shepherd WTP 200 E. Shepherd Rd.
Old Settlers WTP 1722 N. Ross St.
EP002
Fairview Tower N. Alexander &
Dupree 1 MG EST
McA/ee WTP - 1016 LaSalle St. (Emergency)
EP 003
Emergency
(5)Wells G0910006J' G0910006K G0910006l' G0910006M ' G0910006N'
0.50 MG UST
City of D0<chester PWS I D No. 0910021
ftawwater Max Rate: 0.167 MGD
Gas Chlorine
sand Separition
Gas Chlorine
I MG UST
~ Dorchester WTP - 8700 Farmington Rd.
ti
EP004
Pressure Plane 1
9538
EP 006
Connections
Russell WTP 2720 Hwy 7S South
EP 009
M 1rUeeSUD PWS ID No. 0910081
Max Rate: o.s MGD
PlnkHnlWSC PWS ID No. 0910034 Max Rate: 0.015 MGD
Gas Chlorine
(3)Wells G0910006U G0910006V G0910006W
Gas Chlorine
2 MGGST
1 @I ZSOO gpm 1 @I ISOO gpm 1 @ 13SOgpm
(3)Wells G0910006Y G0910006Z G0910006AA
Gu Chlorine
I @2000gpm I@ 6001pm
1 @ 1000gpm 1 @SOO gpm
Stephens WTP 300 Stephens Rd. EP 007
Fairview WTP - 915 W . Birge St.
EP005
Tuck WTP 4500 Hwy 75 South EPOOS
Harrison Tower N. Harrison & E. lewis St. 0.75 MG EST
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Exhibit Log
Exhibit 2 Conventional Plant Process Flow Diagram
(
(
City of Sh erman
Texas Commission on Environmental Quality
TCEQ ID No. 0910006 Invest iga tion Date: 6/21-22/ 23
Public Water System Diagram
Investiga t or: Eric Leigh
Conventional Surface Water Treatment Plant - 243 La Cima Or.
Lake Texoma
Red River Basin
Flow to Membrane
SWTP
I
Q
Bad::wnh
~ - -I'-~G(~ra~i : t : : ~~F~
-~
Filter Influe nt
Vc1ult
Waste to
Sludge
Pond
'I
Pre-Sedimentation Basin 0.650 MG
- - - - - - - - - - - - - - - - - .- - - - - - - - i
Sedimentation Basins w/ Sludge Tracks
3-Stage Flocculat10n with variable speed
conveyor mixers
I - -;,- - - - -- - - - I
I
-+---'f-1
_ _ ___,,,__ _ _ _ ___ I
' I I
0:
--- ---- - ---1
Wute to Sludse Pond
I
lnline
I Static
I
Mixer
I
I
Splitter Box/ Flash Mixer
03
Train 8 60%
Electro-dialysis Reversal Demineralization Banks
Conventional Recyc!e Basin
0.445 MG
....
Waste brine to sludge pond
Decant North Sludge Pond
Sludge stockpiled onslte then landfilled
Decant to North
Sludge Pond
Supunatant pumped to wastewater trutment plant
Clearwell Meter Vault
Cl, DJB,gln
Ntt, *
South
a n<Wtll
Flo\from .-Membtane SWT,P
SW Distribution:
Pressure Planes ,._.
2, 3, & 4
(2) 1.694 MG Clearwells
High Service Pumps I
3@ 5400gpm
I
2@ 2250 &Pm
I
~
~__,
Pump Station/ flnJshed Water
Met" Vault 0.404 MG
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Exhibit Log
Exhibit 3 Membrane (UF/RO) Plant Process Flow Diagram
(
City of Sherman TCEQ ID No. 0910006
Texas Commission on Environmental Quality Public Water System Diagram
Investigation Date: 6/21-22/23
Invest igator: Eric Leigh
Membrane Surface Water Treatment Plant - 243 La Cima Dr.
Ultr a-Filtr at ion Feed Pumps (4) @ 3010 gpm
Flow from Raw W ater Pump
Stati on
Rever se Osmosis Feed Pumps
(2) @ 2042 gpm
V,
0 ~
M
UF/RO Recycle Basin
0.445 M G
"0
"0
C
C
0
0
Q.
Q.
:0 t
"0 :,
"0
:,
iii
iii
t;
nl
w
Dec.ant to North
Sludge Pond
Pre-Sedlffil!nl atlon Ba~n o:6S0MG . ".
(5) Toray Torayfit HFU-2020N UF Trains
r---- .. - ---..,
I
...
I T""T" T " - ,
I
:
:,-':'-::i:==41
""-r-
I
I
I
I
I
I
I
Citric Acid
Backwash Feed to Strainers
1
Strainer
1 Backwuh
:
Pump
, (II@ 16001pm
I
I
I
I
I
;-,
L.---- -----..- ---- --, ----- .. J \ __ ______ I
~'i
.S :
,.,. ~ ) , Ill
(2) Toray TMG20D-400 Brackish Water RO Trains
:U. I
::)
o ,
-,
-0 I QJ I
~;
,"=' I'
3:
-t; ,
Ill I CD I
I
RO Backwash Pumps
(2) @ 4601pm
I
________ ___ ___ Backwash Feed to RO Trains ______ "~-________
-,
I
'
Decant North Sludge
Pond
Sludge stoclcpOed onsJte then landfilled
High ~rvice Pumps 3 @5400gpm 2 (II 2250 gpm
UFCIPPump () @460gpm
No<lh Clearwell
SW Distribution:
Pressure Planes 2, 3, & 4
~ -~
-
~ B~ - 1 ~Pump Station/ - W Finished Water
Me ter Vault
0.404MG
NH,
so..th Clurvnll
(7 sets) 130-micron Strainers
Break Tank 0.043 MG
Flowfrom COhv~ntlonat
SWTP .
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Exhibit Log
Exhibit 4 Abbreviated November 2023 Hydrant Flushing Summary
Dept. 7725 Water Quality Services
City of Sherman
Total Coliform Monitoring DEM Flushing Summary
For the Month of:
November 2023
# of Flushing Sites Scheduled:
# of Sites Flushed:
# of Work Order sites flushed:
# ofNAPs taken:
# of Surface Water sites flushed:
# of Ground Water sites flushed:
# of Total Gallons flushed:
146 140 7 9 107 33 1,022,409
Completed By: Peered By:
Kenneth Rousseau
Water Quality Specialist
~ Water Quality Supervisor
~
Monthly Dead End Main Flushing Summary Rev. 1.0
12/1/2023
Dept. 7725 Water Qualitv Services
Day DEM Routes Scheduled
Weck 1
11/01/23
1
2
11/02/23
3
4
11/03/23
5
6
Weekly Goal >
Weck 2
11/06/23
7
8
11/07/23
9
10
11/08/23
11
12
11/09/23
13
14
11/10/23
15
16
Weekly Goal ->
Week3
11/13/23
17
18
11/14/23
19
20
11/15/23
21
22
11116/23
23
11117/23 Weekly Goal >
Week4 11/20/23
11/21/23
11/22/23
11/23/23
Holiday
11/24/23
Holiday
Weekly Goal >
Week 5
11/27/23
11/28/23
11/29/23
11/30/23 Weekly Goal >
ed
Goal
DEM Flushing Schedule Nov-23
OEM Routes Completed
completed
Work Perfomed
NAP
f,tUll:enance Petformed
Notes
2
0
2
0
2
0
6
Weekly Totals ----- ->
0
0
0
2
0
2
0
2
0
2
0
2
0
10
Weekly Totals - - -->
0
0
0
2
0
2
0
2
0
1
0
0
0
7
Weekly Totals ----- --->
0
0
0
0
0
0
0
0
0
Holiday
0
0
Holiday
0
0
0
Weekly Totals----- -->
0
0
0
0
0
0
0
0
0
0
Weekly Totals ---- ---->
0
0
0
No. of Routes Scheduled ->
No. of Routes Completed ->
No. of NAP samples collected >
0
No. of Hydrants Maintaned ->
Dept. 7725 Water Qualitv Services
Day DEM Routes Scheduled
Week 1
11/01/23
1
2
11/02/23
3
4
11/03/23
5
6
Weekly Goal ---------->
Week2
11/06/23
7
8
Goal
DEM Flushing Schedule Nov-23
DEM Routes Completed
COmplel ed
VI ork Pertomeu
NAP
Ma'.n!MallCe Perfmed
Noles
2
1
3
4
3
2
2
7
5
3
10
2
6
12
6
9
5
6
Weekly Totals ---------->
11
0
0
2
14
1
11/07/23
9
10
2
13
1
11/08/23
11
12
2
11
1
RAIN
11/09/23
13
14
2
0
11/10/23
15
16
Weekly Goal ---->
Week3
11/13/23
17
18
2
16
15
18
10
Weekly Totals--------->
17
19
20
2
3
6
0
0
3
11/14/23
19
20
2
22
21
23
24
4
11/15/23
21
22
2
0
11/16/23
23
24
2
DEM FLUSHING COMPLETE
0
11/17/23 Weekly Goal ----->
Week4 11/20/23
11/21/23
0
0
8
Weekly Totals --------->
7
0
0
0
0
DEM FLUSHING COMPLETE
0
0
11/22/23
0
Holiday
11/23/23
0
Holiday
11/24/23
0
Weekly Goal->
0
Week 6
11/27/23
0
Holiday Holiday Weekly Totals --------->
0
0
0
0
0
0
0
11/28/23 11/29/23
0
0
DEM FLUSHING COMPLETE
0
0
11/30/23
Weekly Goal->
0
Weekly Totals---------->
0
0
0
~CID! e
NAP Samples Colle"c''!t'e"d'= - -- .. H~drant Main enance Performed
No . of Routes Scheduled --> No. of Routes Completed ----> No. of NAP samples collected > No. of Hydrants Maintaned ->
0 0
Dept. 7725 Water Qual
Date
- rvices 11/1/2023
Production Flush Site Field Data
City of Sherl""'-'1 Water Quality Services
_, 1Flush log
OK
Evie
Equipment Used
-~,> '9.Pn-t.ah,
;;;;;
TOWN &ROA0 HORtZON
SL- Leak 1502 N Binkley
Reason for Flushi ng
Flush#
LOCATION
Fire Dept ID#
MAIN
J
7 5627 Texoma Parkway@ Texoma Bicycle 2732-001
8"
ARRIVAL TIME
FLUSH START TIME TO CLEAR
TIME
.c:-,, ~ r ...
FLUSH END TIME
MIN FLUSHED
- SOURCE
WATER ZONE SL1000
Surface
NWS
GPM
GALLONS FLUSHED
Height
i?Jt/ J / !jt(> lt/'17
Tii l/5'(o TIM/ 5'o?- TIME
/S'a~ / ~/~
'3 11
~ -z55lv H/D J
TIME
TIME
TIME
TIME
TIME
J o o 3.ea s J ~ ~T~ )~
,CZ
or~ FREf 'TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL
Colori meter
CL2 Tabs
Diffuser Used
Co - 7 ~
No
----X Feet
TIME
TIME
e,__
FREE TOTAL FREE TOTAL
-
Routine
A
Flush No
Response to
l9 Work Order
Yes
Fire Hydrant Sched Maint
Yes G)
Work Order Required
Yes ( 9
::1
NITRIFICATION MONITORING (NAP)
TIME -
MONO NH3 FREE TOTAL MONO NH3
Flush Site Field Data
Equipment Used
Reason for Flushing
Flush #
LOCATION
Fire Dept ID #
MAIN
SOURCE
WATER ZONE SL1000
8
5100 Marshall St
2832-004
8"
Surface
NWS
ARRIVAL TIME
FLUSH START TIME TO CLEAR TIME
FLUSH END TIME
/
i/_50?5
TIME
TIME
TIME
TIME
MIN FLUSHED
TIME
TIME
GPM
GALLONS FLUSHED
Height 1? nn
TIME
TIME
FREE TOTAL FREE ' TOTAL FREE 'TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL
Colori meter
CL2 Tabs
r~
-
X Feet
TIME
FREE TOTAL
Diffuser Used
Vfte -
Routine Flush
,,c~I ..
/
Response to
~- Work Order ~
Fire Hydrant Sched Main!
= ~-----
Work Order Required
--
/ /~ /c /J?/c ///;/ -z-3
s /Z, cd u.P .
TIME
TIME
NITRIFICATION MONITORING (NAP)
--- . -- FREE TOTAL MONO NH3
FREE TOTAL MONO NH3
-
'
Flush Site Field Data
Equipment Used
Reason for Flushing
Flus h #
LOCATION
Fire Dept ID#
MAIN
9
4203 Dripping Springs @ Carter Ct
2832-008
6"
ARRIVAL TIME
FLUSH START TIME TO CLEAR TIME
FLUSH END TIME
MIN FLUSHED
SOURCE
WATER ZONE SL1000 Colori meter
CL2 Tabs
Surface
NWS
GPM
GALLONS FLUSHED
--
Height
re -
X Feet
Diffuser Used Routine
Yes 8 0
Flush No
Response to Work Order
Yes ~
Fire Hydrant Sched Main!
Yes ~
Work Order
Required
Yes e
!,f/0
/~/~ -
~
TOT~
'---"'.'
J o ,5/
;,!! Z- t-M/n
TIM/ ~ 7_ 0
TIME
- J ~T~ FljEE lrorAL
J,31 I
I5 2,,1- I o,.,JVI,,-
TIME
TIME
FREE TOTAL FREE TOTAL
35
TIME
FREE TOTAL
~ -~ Mik sFl~
NAL FOR DEM ENTRY 051021
\
Performed By:
L ~./.,,,-,e ,,e,:Jl ,'V".
3,050
I
/l's
TIME
TIME -
FREE TOTAL FREE TOTAL
DEM FLL H LOG
z_
TIME
FREE TOTAL
...
TPI "''
FREE
~
-
NITRIFICATION MONITORING (NAP)
TOTAL MONO NH3
FREE TOTAL MONO
Peer Reviewed by:
TIME
NH3
11/1/ : 023
Dept. 7725
M) \ ~
City of Sher- ., Water Quality Services
< ... ;?,P~h
Water Qua: __ _:_rv_i_ce__s- -.........- - -~- - - -~- - - - - . . . - - - - - - - - - - - - - - -- - __1_F_l_u_s_h_L_o.;.g;;.__ _ _ _...,._ _ _ _ _--r_ _ _ _ _ _ _ _ _ _ _ _ _ _ _e_:::--.';..=:; ;row N OROAO HORIZON
Date
11/1/2023
PRODUCTION
Tyler -OK
EVIE
SL-1502 N Binkley
Flush# 17
LOCATION
Flush Site Field Data Fire Dept ID#
3800 Town Center - Home Depot
2829-007
MAIN
8"
SOURCE Surface
Equipment Used
WATERZONE SL1000 Colori meter
CL2 Tabs
Diffuser Used Routine
Flush
Reason for Flushing
Response to Work Order
Fire Hydrant Sched Maint
NWS
Yes
No
Yes
No
Yes
No
Yes
No
Work Order Requi red
Yes
No
ARRIVAL TIME
FLUSH START TIME TO CLEAR TIME
FLUSH ENO TIME
MIN FLUSHED
GPM
' \ TIME
TIME
TIME
TIME
TIME
TIME
GALLONS FLUSHED
Height
TIME
TIME ~
~ 1:)tJF- tR\\JITTc_ ~i b
TIME
TIME
TIME
NITRIFICATION MONITORING (NAP)
FREE \ TOTAL FREE ITOTAL FREE ITOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE T ~ ~FREE TOTAL FREE TOTAL FREE TOTAL MONO NH3
FREE TOTAL MONO NH3
Flush#
LOCATION
Flush Site Field Data
Fire Dept ID# /
.;
MAIN
SOURCE
Equipment Used
WATER ZONE SL1000 Colori meter
CL2 Tabs
Diffuser Used Routine
Flush
Reason for Flushing
Response to Work.Order
Fire Hydrant Sched Maint
Work Order Required
18
3800 Town Center - JC Penny
8"
Surface
NWS
ARRIVA TIME
I TIME I
FLUSH START TIME
TIME
TIME TO CLEAR FLy_::;t END / TIME
TIME
MIN FLUSHED
TIME
TIME
GPM
GALLONS FLUSHED
Height
20.00
TIME
TIME
TIME
Yes
No
Yes
No
Yes
tJn
Yes
No
Yes
No
I
TIME
TIME
NITRIFICATION MONITORING (NAP)
FREE I TOTAL FRE~
AL FREE ITOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL MONO NH3
V
~ i.-----
FREE TOTAL MONO NH3
-r--
Flush#
LOCATION
Flush Site Field Data Fire Dept ID#
MAIN
SOURCE
Equipment Used
WATER ZONE SL1000 Colori meter
CL2 Tabs
Diffuser Used Routi ne
Fl us h
Reason for Flushing
Response to Work Order
Fire Hydrant Sched Maint
Work Order Required
19
Hilltop Dr @ Premium Storage
lS
Surface
NWS
------- ARRIVAL ~
~ R T TIME TO CLEAR FLUSH ENO TIME
MIN FLUSHED
GPM
TIME
TIME
TIME
TIME
TIME
GALLONS FLUSHED
Height
14.00
TIME
TI ME
TIME
No Yes No Yes No Yes
I
I
TIME
TIME
NITRIFICATION MONITORING (NAP)
FREE TOTAL FREE ITOTAL FR ~ 'FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL MONO NH3
FREE TOTAL MONO NH3
~~
~
KE, ~
G FINAL FOR DEM ENTRY 051021 -
' /!>erformed By :
/L)-/"--~. L
"'-
,J/
,
\ --I~
~ - - - ,,.,,_.. ~ H LOG
I 1/r / 23
Peer: : ? !
/#Jg -
No 11/1/: 023
Dept. 7725 Water Qua!
Date
-rvices 11/2/2023
Flush#
LOCATION
Production Flush Site Field Data
Fire Dept ID#
29
1915 Hwy 82 @ Dr Pepper
3030-028
MAIN
8"
City of Sherr-.,,., Water Quality Services
~ / ~r~h
Jamie - OK'
_ F;..l.u.;..;s_h___L;;.o;..;g:.__
_ _ _ _ _ _ _ _ _. - - - - - - - - - - - - - - - -~-
-;'owN """0""120...
Evie
M.B. - 2203 Norwood - 2 --- Taps - Flannery
Equipment Used
Reason for Flushing
SOURCE Surface
I ~ e (3 (S) <!2 WATER ZONE SL1000 Colori CL2 meter Tabs
Diffuser Used Routine Flush Response to Work Order
NWS
Yes
No Yes
Fire Hydrant Sched Maint
Yes
Work Order Required
Yes
FREE }6-r~ FREE ~~ FREE yfcTA_!;, FREE p-6T1Y FREE ~ FREE ~ FREE ~~ FREE ~ FREE Yo:::tY FREE TOTAL MONO NH3 FREE TOTAL MONO NH3
Flush#
LOCATION
Flush Site Field Data Fire Dept ID#
MAIN
ARRIVAL TIME FLUSH START TIME TO CLEAR FLUSH ENO
TIME
TIME
MIN FLUSHED
Equipment Used
GPM
SOURCE
WATER ZONE SL1000
::;um,.,.,
... , v
GALLONS FLUSHED
I
/
Height
Colori CL2 meter Tabs
J I
I I
X Feet
Diffuser Used
Routine
~
'" ,r'
Flush -
Reason for Flushing
Response to Work Order
Fire Hydrant Sched Maint
"- ~ Yes It ; \
~
-=-
Work Order Required
vft~
15.0 0
TIME
FREE
TIME
TIME
TIME
TOTAL FREE ITOTAL FREE JroTAL FREE
TIME
TOTAL FREE
TIME
TOTAL FREE
TIME
TOTAL FREE
TIME
TOTAL FREE
TIME
TOTAL FREE
TIME -
I ./
/ ' i,.,--- NITRIFICATION MONITORING (NAP)
TIME . - _
TOTAL F ~ T OTAL MONO NH3
, FREE TOTAL MONO NH3
Flush#
LOCATION
Flush Site Field Data Fire Dept 10 #
MAIN
31
3804 Crimsonwood@ J uniper Dr
2931-011
6"
ARRIVAL TIME FLUSH START TIME TO CLEAR FLUSH ENO
TIME
TIME
MIN FLUSHED ~
i V
Equi pment Used
SOURCE lv-wATER..-~ SL1000 Colori
'7'
meter
CL2 Tabs
/ V
~~ NWS
PM GALLONS Height FLUSHED
II
X Feet
Diffuser Used Routine Flush
Yes No b?I No
Reason for Flushing
Response to Work Order
Yes IC5
Fire Hydrant Sched Maint
Yes ~
Work Order
bRequired
Yes
22.00
TIME
TIME
TIME
Tl~
TIME
TIME
TIME
TIME
TIME
TIME
TIME
NITRIFICATION MONITORING (NAP)
FREE TOTAL FREE rTOTAL FR':;.) TO'l"AL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL MONO NH3
FREE TOTAL MONO NH3
'~~ 7
SRF ~
_n l/
Uh
Performed By:
OEM FLL H LOG
11/2/: 023
Dept. 7725
- Water Quali Date
:vices 11/7/2023
Production
City of Sherrr-... Water Quality Services
Flush Log
,__.
OK
Evie
SL, Leak 279 Pumping -Jack Rd.
Flush Site Field Data
Equipment Used
Reason for Flushing
LOCATION
V 129
Bob Utter Ford
J ARRIVAL TIME /3 2.0 7~ z s
FLUSH START TIME
;32-z__
TIM/ & / D
TIME TO CLEAR
2~1t. l
TIME
y ~~ F~ _~ T~ )~ ,-~
V
'
J 0 I 0211r--_01(C;
Fire Dept ID #
MAIN
SOURCE
WATER ZONE SL1000
FV
2"
FLUSH END TIME
MIN FLUSHED
Surface ~ ,--
GPM
GALLONS FLUSHED
Height
/~ .-15 /t/,5IU~ ,
/ 7 3 (/t;, ot~ I
;//,
TIME
TIME
TIME
TIME
TIME
FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAL
Colori CL2 meter Tabs
~ -
X Feet
- lL
TIME
FREE TOTAL
Diffuser Used
Yes kS
-z. 1/x
--- ~
TIME
FREE TOTAL
Routine Flush Response to Work Order
Fire Hydrant Work Order Sched Maint ~ _..., Required
~ No
.5 rx._ /
bv Yes
Yes ~ Ivt;~
1'... . /1; -
I ~,t-,,-F~J /J..:,/'
fr/R
n
A/-ee/4-
Y-u
{(~h_~
TIME_
NITRIFICATION MONITORING {NAP)
MONO NH3
--
FREE TOTAL MONO NH3
-
Flush Site Field Data
Equipment Used
Reason for Flushing
Flush#
LOCATION
Fire Dept ID #
MAIN
SOURCE
WATER ZONE SL1000
J 58
1616 B aker Dr - by Dealer's Elec
3030-017
6"
Surface
NWS ....._
ARRIVAL TIME
FLUSH START TIME TO CLEAR TIME
FLUSH END TIME
MIN FLUSHED
(
I /3 3,0 ! 3 32 /o /f,tt '11 lt,,;30 C:, 2."'1,,, ' 3
/ 3 7 s3 ? TIME
TIME
TIME
5:6 TIM/ f"o5 / ~ 2 . U
GPM
<::> [
GALLONS FLUSHED
Height
f<K~fo1.- 17.00
TIME
TIME
~
cfioT~ 9EE f oTAL 11~ (fToT39 ~ TOTAL FREE/ TOTAL FREE TOTAL FREE TOTAL FREE TOTAL
Colori meter
~
CL2
Tabs
-
X Feet
2--
~
FREE TOTAL
Diffuser Used Routine
Yes r3 (9
Flush No
Response to Work Order
Yes Gs
Fire Hydrant Sched Maint
Yes ( 3
Work Order Required
Yes @
A - /_r,c,/ ~ C' L" &/' o ~?t
- ~L #s
/ t,(_,t;--,/., r -
~-e..
TIME
NITRIFICATION MONITORING {NAP)
~ TIME
--- -- FREE TOTAL MONO NH3
FREE TOTAL MONO NH3
J o ,'--;t-/
-
V,L(D
I, 4- S-
/ 2-3 J
Flush Site Field Data
-
-
Equipment Used
Reason for Flushing
Flush#
LOCATION
Fire Dept ID#
MAIN
SOURCE
WATER ZONE SL1000
J 59
1604 Ann Ave
3030-010
6"
Surface
- NWS
..__
ARRIVAL TIME
J /f;o~
rnj { /0
FLUSH START TIME
;Jo7
TIMJf2f5
TIME TO CLEAR
FLUSH END TIME
-Z,f~ /&;,DJ
TIM; f J O Tlj {;!O
MIN FLUSHED
GPM
$'Gkt,l Z~1
7 &;cC> TIME -
GAL LONS FLUSHED
Height
/0757' 22.00
TIME
TIME
7cf o/if ~
fOT~ ~
OTA; ~~ ~ roT~ ~
J l), &1- (),3' 6 , /0 <>,
, - l--. OTAL >FR3/' TOTAL
V
v
FREE
TOTAL
FREE
TOTAL
Perform By:
M,il ,& ~ro"TM=mo - ~~- /4,'/; e M J /c..,-
DEM FLL HLOG
Colori meter
~
CL2 Tabs
-
X Feet
-z_
Diffuser Used Yes ~
'-
TIME
TIME
.,____-
FREE TOTAL FREE TOTAL
,
k::_
JJ -Yf
,
Routine Flush Response to Work Order
C:;> No Yes ~
Fire Hydrant Sched Maint
Yes
Work Order Required
Yes ~
11:JJ tuahv- q?'e_.,,,,
-r
NITRIFICATION MONITORING {NAP)
TIME .____
MONO NH3
FREE TOTAL MONO NH3
-L)
L7
11/7/: 023
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Exhibit Log
Exhibit 5 Contractor Fairview Tank Inspection Report 1/18/2023
City of Sherman
1 Million Gallon Clearwell `Fairview Pump Station'
January 18,2023
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
1
Texas Tank Services
103 Stacy Drive Whitehouse, Tx. 75791
1-866-788-3483
Inspection REPORT #6 1 million gallon clearwell
`Fairview Pump Station' CITY OF SHERMAN, texas
GENERAL INFORMATION:
Date: Tank Size: Tank Type: Diameter: Crew Leader:
1/18/2023 1 Million Gallons Concrete Clearwell 50 yards X 60 yards Michael Terry
Introduction: When Texas Tank Services performs any inspection and
in-service cleaning service, we strictly adhere to the standard of all divers and in-tank equipment in accordance with AWWA Standard C65202 for disinfection. All gear and equipment entering the potable water tank are cleaned and disinfected, and the dressed diver is sanitized with a 200-PPM Chlorine concentration prior to entry into the system. The inspector/diver utilizes a helmet and dry suit and is in direct voice communication with outside personnel.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
2
Security Fence:
EXTERIOR INSPECTION
This facility is surrounded with a 6-foot chain link and barbed wire security fence that was in good condition at the time of inspection. No abnormalities were reported.
Pump:
The two pumps were in fair condition at the time of inspection. Moderate corrosion was reported on one pump. No other abnormalities were reported. TEXAS TANK SERVICES recommends machines prepping the corroded areas of the pumps and adding a new protective coating.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
3
Overflow Pipe and Flapper:
The overflow pipe and flapper were in fair to good condition. They are located at the ten o'clock position of the facility. The pipe measures 10 inches in diameter and it discharges 9 inches from the ground. The flapper measures 13 inches in diameter and maintains a good seal. Moderate staining was reported inside of the pipe. No abnormalities were reported.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
4
Water Level Indicator:
The one water level indicator was operable and in good condition. The other gauge was fading and unreadable. TEXAS TANK SERVICES recommends replacing the one water pressure gauge to bring the component back to fully functional status.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
5
Roof Ventilation Structures:
The two roof ventilation structures were in good condition at the time of inspection. They measure 22 x 22 inches. They are each equipped with a 16-mesh screen that is also in good condition. Light staining was noted. No other abnormalities were reported.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
6
Water Access Hatch:
The nine water access hatches were in poor condition. The hatches measured 24 inches in diameter. The hatches were locked with a keyed lock upon arrival of the inspection crew. However, they were not labeled as a "Confined Space" entry. Heavy surface corrosion was reported on all of the hatches. TEXAS TANK SERVICES recommends replacing and enlarging the water access hatch to at least 30 x 30 square inches or 30 inches in diameter. Enlarging the hatch would enable safety equipment to enter the facility if anyone was ever in need of medical attention inside the structure. TEXAS TANK SERVICES also recommends installing "Confined Space" entry placards to the hatch. TEXAS TANK SERVICES further recommends machine prepping the corroded areas of the water access hatches and adding a new protective coating
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
7
Water Access Hatch:
INTERIOR INSPECTION
The water access hatch was in poor condition upon internal inspections. Heavy surface corrosion was reported. TEXAS TANK SERVICES recommends replacing and enlarging the water access hatch to at least 30 x 30 square inches or 30 inches in diameter. Enlarging the hatch would enable safety equipment to enter the facility if anyone was ever in need of medical attention inside the structure.
Water Access Ladder:
This facility was not equipped with a water access ladder. TEXAS TANK SERVICES recommends installing a water access ladder with cable style fall protection to ensure the safety of anyone entering or exiting the facility.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
8
Internal Sidewall Plates (above the water line):
The internal sidewall plates were in fair condition above the water line. Light condensation and heavy staining were reported. TEXAS TANK SERVICES recommends performing a chemical power wash of the interior of the facility, utilizing Blue Earth Labs' product Floran, to remove staining and extend the life of this structure.
Support Columns:
The support columns were in fair to good condition above the water line. Moderate staining was reported. TEXAS TANK SERVICES recommends performing a chemical power wash of the interior of the facility, utilizing Blue Earth Labs' product Floran, to remove staining and extend the life of this structure.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
9
Internal Roof Plates:
The internal roof plates were in good condition upon internal inspection. Heavy condensation and staining were reported. TEXAS TANK SERVICES recommends performing a chemical power wash of the interior of the facility, utilizing Blue Earth Labs' product Floran, to remove staining and extend the life of this structure.
Roof Ventilation Structures:
The two roof ventilation structures were in fair condition upon internal inspection. They are located on the roof plates of the facility and measure 22 inches in diameter. They are each equipped with 16-mesh screens that were in good condition. Moderate surface corrosion was reported. TEXAS TANK SERVICES recommends replacing and enlarging the roof ventilation structure due to the amount of condensation and corrosion currently accumulating within the facility.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
10
Pumps:
The pumps were in poor condition. Heavy corrosion and heavy staining and calcium growth were reported. TEXAS TANK SERVICES recommends performing a chemical power wash of the interior of the facility, utilizing Blue Earth Labs' product Floran, to remove staining and extend the life of this structure. TEXAS TANK SERVICES recommends machine prepping the corroded areas of the pumps and adding a new protective coating.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
11
Sidewall Plates (below the water line):
The internal sidewall plates were in fair condition. Heavy staining was reported. TEXAS TANK SERVICES recommends performing a chemical power wash of the interior of the facility, utilizing Blue Earth Labs' product Floran, to remove staining and extend the life of this structure.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
12
Internal Floor Plates:
The internal floor plates were not seen due to 100% coverage of sedimentation. TEXAS TANK SERVICES recommends an in-service cleaning to remove this sediment in order to better evaluate the floor plates, as well as improve the quality of the water in this tank.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
13
Sediment Depth:
The sediment depth was reported to be of an inch and consisting of sand. TEXAS TANK SERVICES recommends an in-service cleaning to remove this sediment in order to better evaluate the floor plates, as well as improve the quality of the water in this tank.
Water Condition:
The water condition was fair. The clarity of the water was fair, and the temperature was cool. No oils, insects, or odors were reported.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
14
RECOMMENDATIONS
TEXAS TANK SERVICES would like to make the following suggestions to improve and extend the life of this facility:
1. Keep this facility on a scheduled maintenance program to maintain the integrity of this water storage facility and help preserve the quality of your water.
2. Perform an in-service cleaning to remove the inch of sediment in order to better evaluate the floor plates, as well as improve the quality of the water in this tank.
3. Replace and enlarge the water access hatch to at least 30 inches in diameter or 30 x 30 square inches. Enlarging the hatch would enable safety equipment to enter the facility if anyone was ever in need of medical attention inside the facility.
4. Add a "Confined Space Entry" placard to the water access hatch . 5. Replace and enlarge the two roof ventilation structures to reduce the amount of
condensation and corrosion currently accumulating within the facility. 6. Install a water access ladder with cable style fall protection to ensure the safety
of anyone entering or exiting the facility and to comply with OSHA standards. 7. Perform a chemical power wash of the interior of the facility, utilizing Blue
Earth Labs' product Floran, to remove staining and extend the life of this structure. 8. Replace the one pressure gauge water level indicator to bring the component back to fully functional status. 9. Machine prep the corroded areas of the interior and exterior pumps and add a new protective coating.
#6_Sherman_1 MG Clearwell_Fairview Pump Station Inspect 1.18.2023
15
UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
Exhibit Log
Exhibit 6 Ongoing Corrective Maintenance List
Report- Unresolved Tickets
1 leaulg 12" Ina 2 ~and~::.::~h,
on SWBPSHSP2 3
4 WTPHSP#4 5 ~9T6 ldaRd.T-
-Flow~ 7
Chlorine IIUlldong 6
WTP~~9
-10 CclrmaSlollJ012tVZ3
11 Flow-
---- 12 Doo~ILScamlll
,.13 L.--2oomlol - - 1 1 2 - ..
-__ 1 ~IQ ,_ --
10 1r Olil-lT 9 9-11
.
..
.
95 12"' discharge line leaking in POE meter vault web-fonn@smartsheet.com
92 trench drain lift station High, Low and moisture web-form@smartsheel.com alarm is on
89 HSP 2 at SWBPS is not pumping the same as ii web-form@smartsheet.com
has been. The Operators have to tum the VFD
: ~ 5!l:n~i."fh~~F~ ~s~~~~~8~t98
45%. The effluent flow meter does not work so we can not see If the flow is changing.
84 HSP 4 appea,s lo have had a short and caught web.form@smartsheel.com fire in the control panel box.
73 Dorchester 9T failed
71 The now meler is maxing out when shutting off
HSP Hz 2 and locking up the totalizer
web-form@smartsheet.com web-form@smartsheet.com
70 Backwash Flow Meter is very erratic when
web-form@smartsheet.com
do4ng backwashes and keeps reading white the
Backwash Tank Is filling.
67 There are several heating elements that do not WOO( in the chlorine storage room. Could
someone please look Into this issue. Thank yoo.
web-form@smartsheel.com
66 There are a tot of heating elements that do not wOf1c. on the heaters. Could someone please
look tnto,this Issue. Thank you.
web-form@smartsheet.com
65 Convn Status Comm faBs
web-form@smartsheet.com
62 The effluent flow meter has not worked in quite whde. Could someone please look into this. Thonk yoo
web-form@smartsheet.com
57 Dos t._. 1 LS com fall
web-form@smartsheet.com
56 l.uek sde2com fall
web-form@smartsheel.com
52 pulled pump #2 lor moisture
web-form@smartsheet.com
27 __,shatlonHSP#2 26 #1 HSP lod<ed up 15 Nol openl1lonat ,. Nol openl1lonat
web-form@smartsheet.com web-form@smartsheet.com web-form@smartsheel.com web~orm@smartsheet.com
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City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Appendix 3 2016 Sherman LCR Sampling Plan
TEXAS COMMISSION ON ENVIRONMENTAL QUALITY LEAD/COPPER SAMPLE SITE SELECTION POOL AND MATERIALS SURVEY
FORM 20467
THE NUMBER OF SAMPLE SITES REQUIRED IS BASED ON POPULATION AND CAN BE FOUND IN THE INSTRUCTIONS. PLEASE READ THE INSTRUCTION SHEET BEFORE COMPLETING THIS FORM.
PWS ID: 0910006
SYSTEM TYPE: ~ CWS
NTNC
SYSTEM NAME: City of Sherman
POPULATION: >100,000
ADDRESS: P.O. Box 1106, Sherman, TX 75091-1106
~ 10,001 to 100,000
CONTACT PERSON: Nathan Whiddon
3,301 to 10,000
PHONE NUMBER: 903-892-7286
501 to 3,300
EMAIL ADDRESS: nathanw@ci.sherman.tx.us
101 to 500
-< 100
SAMPLE SITE CATEGORIES Systems must pick as many Tier 1 sites as possible before using Tier 2 sites. If there are insufficient Tier 2 sites, Tier 3 sites may be used. If there are insufficient Tier 1, 2 or 3 sites, the sampling pool may be completed using non-tier sites. If it is not known whether lead is present in the plumbing, the site should be designated as a nontier site. The SDWA lead ban requiring the use of "lead-free" plumbing for drinking water took effect in 1988: buildings constructed after this date would not legally contain lead solder.
TIER 1
For Community Water Systems (CWS), it is single family structure that contains lead pipes or copper pipes with lead solder and/or is served by lead service lines installed after 1982.
# of Sites 26
TIER 2
For Non-Transient Non-Community Systems (NTNCWS), it is buildings that contain copper pipes with lead solder installed after 1982 and/or served by lead service lines.
For CWS, it is a building or multiple-family residences that contain lead pipes or copper pipes with lead solder installed after 1982, and/or is served by lead service lines.
# of Sites N/A # of Sites N/A
TIER 3 OTHER
For NTNCWS, it is buildings that contain copper pipes with lead solder installed before 1983. Applies to CWS Only. Single family structures that contain copper pipes with lead solder installed before 1983. Sites not defined by Tiers 1 - 2 or 3: explain:
Includes sites with copper service lines and customer plumbing that includes galvanized, copper or PVC materials.
# of Sites N/A # of Sites 1 # of Sites 45 TOTAL # OF SITES 72
TCEQ-20467 (Rev 01-01-16)
Page 1 of 7
TEXAS COMMISSION ON ENVIRONMENTAL QUALITY LEAD/COPPER SAMPLE SITE POOL SELECTION FORM
PWS NUMBER: 0910006
Make sure you include all regular and backup sites and make as many pages as you need.
No Site Name
Tier 1, 2, 3,
(R)egular
Type of
Other
sample sites or
Plumbing Material
(B)ack-up site
Date of Construction
1 1925 Timberline 2 325 Arapaho West 3 810 E. Jones 4 911 Starlight 5 911 N. Branch 6 908 S. Maxey 7 4709 Bello Vista Cir. 8 1019 S. Crockett 9 616 S. Maxey 10 605 S. Hazelwood 11 402 W. Steadman 12 5201 Camino Dos Lagos 13 325 W. Middleton 14 920 N. Harrison 15 323 N. Cleveland 16 1117 S. Walnut 17 1112 S. Elm 18 1107 N. Harrison 19 1305 N. Harrison 20 815 N. Cleveland 21 1124 E. Jones 22 915 E. Jones
Tier 1 Tier 1 Tier 1 Tier 4 Tier 1 Tier 1 Tier 4 Tier 1 Tier 1 Tier 1 Tier 1 Tier 4 Tier 4 Tier 1 Tier 4 Tier 1 Tier 4 Tier 1 Tier 1 Tier 1 Tier 1 Tier 1
(R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular
(City) - Copper (Customer) - Copper w/lead solder (City) - Copper (Customer) - Copper w/lead solder (City) - Lead (Customer) - Galvanized (City) - Copper (Customer) - Copper (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Copper (Customer) - Copper (City ) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Copper (Customer) - PVC (City) - Copper (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Lead (Customer) - PVC (City) - Copper (Customer) - Galvanized (City) - Lead (Customer) - Galvanized w/brass solder (City) - Lead (Customer) - Copper w/lead solder (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized
1990 1990 <1945 <1966 <1940 1962 1984 <1951 <1951 <1951 1980 1987 <1951 <1920 <1951 <1920 <1950 <1940 <1946 <1940 <1930 <1925
TCEQ-20467 (Rev 01-01-16)
Page 2 of 7
23 1015 E. Cherry 24 520 S. Charles 25 906 N. Branch 26 616 E. Orange 27 306 W. Dulin 28 1319 N. Cleveland 29 523 S. Charles 30 1116 S. Montgomery 31 1301 N. Harrison 32 914 S. Montgomery 33 1018 S. Crockett 34 1401 N. Cleveland 35 3112 Mimosa 36 3212 Mimosa 37 3112 Redbud 38 1631 Idlewood 39 3014 S. Carolina 40 3008 Mimosa 41 4908 W. Park Ave. 42 2604 W. Cascade 43 501 S. Glacier 44 2612 W. Biscayne Dr. 45 2609 Shenandoah Cir. 46 201 Arapaho Trail West 47 1726 Archer Dr. 48 508 S. Dewey 49 3210 N Marseille
TCEQ-20467 (Rev 01-01-16)
Tier 1 Tier 1 Tier 1 Tier 1 Tier 4 Tier 1 Tier 1 Tier 4 Tier 1 Tier 1 Tier 1 Tier 1 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4
(R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (R) - Regular (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up
(City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - PVC (City) - Copper (Customer) - Copper (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Copper (Customer) - PVC (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Copper w/lead solder (City) - Lead (Customer) - Galvanized (City) - Lead (Customer) - Galvanized (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC
<1930 <1925 <1940 <1944 <1951 <1940 <1920 <1966 <1940 <1953 <1920 <1946 1984 1986 1978 1977 1983 1975 1986 1988 1985 1985 1988 1986 1985 1988 1982
Page 3 of 7
50 601 Oxford 51 1301 N. Cleveland 52 1124 E. Jones 53 115 N. Ricketts 54 902 N. Woods 55 820 S. Throckmorton 56 607 S. Vaden 57 518 S. Crockett 58 812 E. Brockett 59 520 S. Throckmorton 60 1326 S. Crockett 61 1424 S. Travis 62 1701 River Oak Cir. 63 2501 San Miguel 64 3105 Normandy 65 1008 N. Harrison 66 1202 S. Rusk 67 603 E. Thomas 68 1513 S. Vaden 69 1837 Glenway 70 1813 Glenway 71 2406 Turtle Creek 72 1200 W. Marlborough
Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 4 Tier 3
(B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (B) - Back-up (R) - Regular
(City) - Copper (Customer) - PVC (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - PVC (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - Galvanized (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - Copper (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - PVC (City) - Copper (Customer) - Copper w/lead solder
1979 <1961 <1951 1957 <1951 <1968 <1951 <1951 <1966 <1965 <1951 <1956 1992 1979 1984 <1951 <1951 <1961 1970 1984 1986 1981 1968
I have verified and certify that all sites from which lead and copper tap samples are collected shall be selected from a pool of targeted Tier 1, 2, 3, or "other" sample sites. Sample sites selected are representative of the distribution system and specifically represent areas of the systems most vulnerable to corrosion of lead and copper in water.
Signature: ____________________________________ Date: _________________
Printed Name: Mark Gibson, P.E. Title: Director of Utilities
TCEQ-20467 (Rev 01-01-16)
Page 4 of 7
TEXAS COMMISSION ON ENVIRONMENTAL QUALITY INSTRUCTIONS FOR SELECTING LEAD/COPPER SAMPLING SITES
The objective when selecting sampling sites is to choose sites with interior plumbing materials of lead and/or copper, if possible.
These types of sites are categorized on the Lead/Copper Sample Site Selection Form (SSF) from highest to lowest risk (#1Other) based on their likelihood to leach lead and/or copper into the drinking water.
Identify a sample pool consisting of sites that fit in the highest category (ies) as possible (closest to #1). For example, search first for sites that meet the description in Categories #1 or #2 on the Form. If you can't find sites that fit in either of these categories, then try to find sites that fit in Categories #3. If you can't find any sites that fit in Categories #1-3, then all of your sampling sites will go in Category Other.
You must list the type of plumbing material and the date of construction for each site you put in Category #4.
Your Sampling Pool should include all identified sites EQUAL to the number of sites your system is required to sample during standard or initial monitoring. This is true for all systems on initial or reduced monitoring.
Example: Selecting Tier Sites and Sampling Pool A PWS serves 3,301 to 10,000 people and is on reduced monitoring It is required to have a pre-approved sampling pool of 40 sites of which to sample from If your sampling pool needs updating, please use the site selection form and materials evaluation survey form to help identify the 40 sites. Turn it into TCEQ for approval.
Identify which sites are "normal" sites and which sites are "reserved for back-up" sites
Your Monitoring Plan will be updated at the same time your sampling pool is updated - keep a copy in your
records.
Your normal tap water sampling is 20 sites on reduced monitoring. Make sure in advance that your customers
want to participate.
Bottles arrive and sampling begins.
Number of Sampling Sites Required for Standard / Initial Monitoring
System Size
System Population
Number of PBCU sample sites
Large
>100K
100
50,001 - 100K
60
Medium
10,000 - 50K
60
3,301 - 10,000
40
Small
501 - 3,300
20
101 -500
10
< 100
5
Number of Sampling Sites Required for Routine / Reduced Monitoring
System Size
System Population
Number of PBCU sample sites
Large
>100K
50
50,001 - 100K
30
Medium
10,000 - 50K
30
3,301 - 10,000
20
Small
501 - 3,300
10
101 -500
5
< 100
5
TCEQ-20467 (Rev 01-01-16)
Page 5 of 7
TEXAS COMMISSION ON ENVIRONMENTAL QUALITY INSTRUCTIONS FOR SELECTING LEAD/COPPER SAMPLING SITES
ADDITIONAL GUIDELINES WHEN SAMPLING TAP WATER MONITORING
1. When a sufficient number of Tier 1 sites do not exist or are inaccessible, you must complete your sample pool with Tier 2 sites.
2. For CWSs, when a sufficient number of Tier 1 and Tier 2 sites do not exist or are inaccessible, you must complete your sampling pool with Tier 3 sites.
3. Any water system that cannot complete its sampling at sites that meet the applicable tier criteria must complete sampling at representative sites throughout the distribution system.
4. You are not required to target buildings with lead solder installed after the 1988 Texas Lead ban.
5. You should not monitor at sampling sites that have water softeners; however, if all of your available sampling sites have water softeners, you should identify the highest risk sites (Tier 1) and monitor at those locations kitchen or bathroom sinks.
6. If you are not able to draw at least half of your samples from taps served by lead service lines, you must collect a sample from each available site that is serviced by a lead service line.
7. If you have lead service lines, but you have lead goosenecks or pigtails, you can collect tap water samples at the sites with the goosenecks and/or pigtails.
8. You should not sample at sites with point of use devices or point of entry devices.
9. Once monitoring begins, you must use the same sites, unless a site is no longer accessible to you or no longer fits the requirements of a priority site. If your sites have changes you must update your sampling pool.
TCEQ-20467 (Rev 01-01-16)
Page 6 of 7
TEXAS COMMISSION ON ENVIRONMENTAL QUALITY LEAD/COPPER SAMPLING SITE MATERIALS EVALUATION SURVEY
The following is a checklist of resources for water systems to use when evaluating and identifying plumbing materials in their systems. Investigate the interior plumbing of your customers or your facility to determine what types of plumbing materials are present in your system. Mark the resource(s) you used in your investigation in the blank(s) provided. If you use a resource which is not listed below, indicate that in the blanks provided next to "Other Sources".
MATERIALS SURVEY CHECKLIST
1.
Distribution System Materials - Sources available to determine the number of lead service lines or
lead goosenecks in the distribution system.
Distribution System Maps and Record Drawings (provide) Capital improvement plans for distribution system development. X Utility records including meter installation records, customer complaint investigations and all historical documentation which indicate and/or confirm the location of lead service connections. X Interview senior personnel. Perform community survey.
2.
Interior Plumbing Materials - Sources available to determine the number of residential or non-
residential buildings which have interior lead pipe or copper pipe with lead solder joints.
County appraisal district records. X Contacts within the water system, municipal office or other local officials.
Survey area plumbers about when and where copper pipe with lead solder was used. Interview residents - letters, phone survey, personal contact, etc. Interview local contractors, developers and builders.
3.
__X__ __X__ __X__ __X__
Corrosivity Characteristics - Community water supply systems shall identify whether the following construction materials are present in their distribution system and report to the State: Lead from piping, solder, caulking, interior lining of distribution mains, alloys and home plumbing Copper from piping and alloys, service lines, and home plumbing. Galvanized piping, service lines, and home plumbing. Ferrous piping materials such as cast iron and steel.
Other Sources (explain)
Return the form to:
TEXAS COMMISSION ON ENVIRONMENTAL QUALITY PUBLIC DRINKING WATER - LEAD/COPPER PROGRAM - MC 155
P.O. BOX 13087 AUSTIN, TEXAS 78711-3087
If you have any questions, please call the Lead/Copper Program at Phone: 512/239-4691. Fax: 512/239-6050
TCEQ-20467 (Rev 01-01-16)
Page 7 of 7
City of Sherman PWS ID No. TX0910006 Inspection Date(s): 02/13/2024 and 02/14/2024
Appendix 4 Follow-Up Material
City of Sherman Stephens Pump Station - Ground Storage Tank Leak
Ground Storage Tank
Mud Valve Stem
Overflow Pipe
February 14, 2024:
Stephens Pump Station GST experienced a structural failure and water was leaking at the base of the tank.
February 19, 2024:
The GST was drained for inspection. The leak was determined to be at the base of the mud valve and steel floor plate. It appears that the steel plate has deteriorated at and around the threaded holes used to fasten the mud valve. The deterioration allowed the mud valve seal to leak as well as water to pass through the floor of the tank.
A contractor has been scheduled to inspect the tank the week of 3/4/24 and provide recommendations for the repair.
Mud Valve
Steel Floor Plate / Mud Valve Mount
Drain / Overflow Discharge Pipe
City of Sherman - Stephens Pump Station GST - Mud Valve Floor Plate 2/19/24
Floor Plate
Threaded holes for mounting the mud valve
Deterioration: cracks/flaking
~ M r ~ ~ ~ SSIC TOWN. BROAD HORIZON.
Water <Procfuction Services
April 19, 2024
Environmental Protection Agency - Region 6 Enforcement and Compliance Assurance Division 1201 Elm Street, Suite 500 Dallas, TX 75202-2102
ATTN: Sarni Doupnik Physical Scientist Water Resources Section
REF: EPA SDWA Inspection Report for City of Sherman Public Water System TX0910006
Sarni, It was a pleasure to work with your inspection team on February 13-14, 2024. Thank you for your comments and observations presented in the Inspection Report. Please find our responses to the report attached to this letter.
If you have questions or require additional information, please contact me at your earliest convenience.
er:~
a~~~oss
Water System Manager
City of Sherman Water Production Services
Cc
Clint Philpot, P.E. Assistant City Manager
Eric Sandberg, Public Works Manager
Jayson Risner, Utility Maintenance Superintendent
Shawn Hackworth, Information Technology Manager
Tom Pruitt, P.E. Utility Engineer
Brian Stevens, Facilities Manager
Water Production Staff
EPA Region 6- Enforcement & Compliance Assurance Division Inspection Report Responses
Region 6 - Enforcement & Compliance Assurance Division Inspection Report 02/13/24 - 02/14/24 City of Sherman PWS TX0910006 Ref: Responses to observations outlined in "Section Ill -OBSERVATIONS" of the EPA Inspection Report
Asset Management- Ref: Inspection Report page 13 - 14 o Observation 3 a) Staff agrees that a modernized CM MS/ AMP system is necessary for City water, wastewater, and distribution maintenance management. Staff met with the City's IT department and is actively searching for a consultant to drive the evaluation and selection of a CMMS software appropriate for the City's needs. Selection, Installation, programming, training, implementation, and costs are to be determined. o Observation 4 a) The Utility Maintenance Department is currently addressing the data concerns in the current work order system. This was also discussed during the initial meeting regarding the search for a modern CMMS and should be improved when a new system is implemented.
Hydrant Flushing- Ref: Inspection Report page 14 - 15 o Observation 5 The hydrants noted at Home Depot and Premium Storage are privately owned and are not normally flushed by the city and will be removed from th e dead end main flushing list. "DNF Metered" hydrants have meters attached, ie used by construction companies, etc. and are not flushed as DEM until the hyd rant is no longer in temporary contractor use and the meter has been removed . All hydrants remain on the annual maintenance list. The hydrant at address 5100 Marshall St. is in an industrial area. The business at this location has a high volume of monthly usage {approx. 10,000 ga l/MO). Because of the location and high volume, this hydrant will be removed from the DEM flushing list. Also, this hydrant is an older model and was recently checked by Utility Maintenance. Though it was operational, it was reported "difficult to manipulate the valve stem". Utility Maintenance made the decision to replace t he hydrant at the next opportunity.
EPA Region 6 - Enforcement & Compliance Assurance Division Inspection Report Responses
o Observation 6 The 2" Flush Valve at Bob Utter Ford that was not flushed to the state minimum was an oversight that was addressed early the next morning. The water qua lity specialist was instructed to return to the site and flush until an acceptable residual of 1.00 mg/L Total Chlorine was reached. Please see attached field log ATTACHMENT 1. There was also additional training and discussion with the individual and staff about the misstatement written on the field log of "High Water Age". There was no evidence to support the statement. A Disinfectant flow chart was designed after this incident to help prevent oversites like this from occurring in the future. Please see attached flow chart ATTACHMENT 2. 1915 Hwy 82@ Dr. Pepper and 1604 Ann Ave. are examples of why we flush DEM and other mains to help identify high water age areas and minimize low residuals and as indicated in (290.46(1)), the City of Shermans Nitrification Action Plan. The disinfectant residuals were <1.00 our targeted goal however it does satisfy the required state minimum of 0.2 mg/L Free, or 0.5 mg/L total required. However again additional training with staff and flow charts were developed to help staff comply with the City of Shermans, Nitrification action plan, triggers, targets and goals that must be monitored and maintained. See ATTACHMENT 3 Additional training with the Water Quality Department personnel has taken place to address the issues in this observation.
Conventional Water Treatment Plant - Ref: Inspection Report page 15 - 16 o Observation 7 a) The Copper Sulfate line is now labeled as EARTHTEC. EARTHTEC is a copper sulfate product. See ATTACHMENT 4 b) The Pre-Sedimentation basins drain to the on-site sludge ponds. Sludge ponds in turn drain to the sanitary sewer. Eventually, the sludge pond drain system will be disconnected from the sanitary sewer. The city has received a permit from TCEQ to discharge the concentrate into an open channel leading back to Lake Texoma. A Concentrate Discharge Pump Station project is currently in progress that when complete, will pump to the approved channel. c) The Rapid Mix vault directly downstream from the Pre-Sedimentation basin was scheduled to be demolished during the future "PKG 2" membrane plant expansion as it would have been in the way of new construction. When the decision was made to re-invest in conventional treatment, a Rapid Mix vault project wa s developed to build another vault in the vicinity but away from the site for new construction. Bids were solicitated and received on 3/26/24 and the project has been awarded. Estimated completion is 1st QTR of 2025. d) The damaged containment was repaired as shown in the Inspection Report Appendix 4. The potassium permanganate labels were removed and replaced with EARTHTEC copper sulphate labels. See ATTACHMENT 5 - picture of the new labels.
Membrane (UF/RO) Treatment Plant- Ref: Inspection Report page 16 o Observation 8 a) RO injection points have been labeled to be visible from a distance. Please see ATTACHMENT 6 - picture of the chemical injection labels b) The three injection points located in the Membrane Effluent Vault were labeled but difficult to see from the hatch. Labels have been added to improve visibility. See ATTACHMENT 7 pictures of the chemical injection tags.
2
EPA Region 6 - Enforcement & Compliance Assurance Division Inspection Report Responses
Finished Water Storage - Ref: Inspection Report page 17 o Observation 9 a) Screens were added to the drains as noted in the report. All similar drains and vents were inspected. b) Rubber gasket seals were confirmed. The broken conduit was temporarily repaired with electrical tape as noted in the report. Changing out the conduit will take place at the next opportunity. c) Repairs to the grout and painting of the metal components were completed as noted in the report. See ATTACHMENT 8
Fairview Site - Ref: Inspection Report page 17 - 20
o Observation 1o
a) Fairview GST has been taken out of service and work is in progress to address the observations made during the inspection. Excavation has taken place to remove the dirt layer and expose the top of the tank. See ATTACHMENT 9 The grade around the tank has been lowered several inches below the top of the tank. See ATTACHMENT 10
b) Manholes/ Accessways on top of the GST Two new manholes will be installed and sealed. They will be located on opposite sides of the GST, one at the influent side and one at the effluent side. Two vents will remain, and all other accesses will be removed. Structural GST rehabilitation requirements will be reviewed by an engineer and planned accordingly. This includes options for meeting roof slope requirements. French drain was installed completely around tank. See ATTACHMENT 10 The only well that feeds this GST is located on site. All other remote wells that fed the adjacent surge tank in the past have been plugged. The local well will be rerouted to feed the GST from the opposite side of the GST effluent/ high service pump to maximize contact time. See ATTACHMENT 10
c) The surge tank connections to the GST will be plugged and the tank demolished and filled. See ATTACHMENT 11
d) The gap between the base of the well pedestal and well pad has been filled. See ATTACHMENT 12
e) The chlorine injection point will be relocated to feed the new well route. Injection point to be determined.
f) An updated tank inspection report will be provided to an engineer to be included in a rehabilitation project.
g) Doors I SCBA / Chlorine leak detectors Plant Staff scheduled a meeting with the City's Facilities Maintenance Department to discuss the doors and windows observations. Facilities Maintenance scheduled a site visit with a door contractor. A proposal was submitted and accepted. When the contractor has received all required materials, the doors at all remote chlorine pump rooms will be replaced, will open outward, and include observation windows and crash bars. Anticipate this project to begin in May 2024
SCBA equipment is not stored at the remote chlorine storage rooms. Two authorized and trained operators are required to distribute, store, handle and connect the #150 chlorine bottles used at remote ground water chlorine rooms. These operators are responsible to have a full face respirator but not authorized to
3
EPA Region 6- Enforcement & Compliance Assurance Division Inspection Report Responses
respond to a c hlorine emergency rising to the level of requiring SCBA without the required backup emergency team in place. When a c hlorine emergency is reported at a remote site then the Response Coordinator or Chief Operator w ill notify and dispatch the response team with the appropriate PPE and other equipment. Th e City SOP for chlorine Emergency Teams is as follows:
o Emergency Preparedness Plan SECTION VII. 5 Emergency Teams Rescue team members must wear the following personal protective equipment before entering an area: selfcontained breathing apparatus (SCBA). The rescue team will worl< on the buddy system with a bacl<Up buddy system . The baclcup rescue team will be dressed out in the same safety equipment as the primary rescue team.
o Remote Site Chlorine SOP Personal Protective Equipment Self-Contained Breathing Apparatus (SCBA) o A worl<er must use an SCBA when an emergency chlorine teal< has developed, and the ai rborne chlorine concentration is unknown or is measured at more than 10 ppm. A worl<er must not enter a contaminated atmosphere until both the qualified worl<er and teammate, AND, a qualified bacl<up team are equipped with the appropriate personal protective equipment including SCBA, and ready to respond to the emergency.
Research is currently in progress for chlorine detectors with local alarms at each remote chlorine room. If possible, the detectors/alarms will be integrated into t he SCADA syste m to allow full time monitoring.
h) A threaded vacuum breaker has been at tached to the hose bib. City staff performed additional inspections and insured vacuum breakers were installed on all hose bibs. See ATTACHMENT 13 as representative of the type placed on all hose bibs found delinquent.
Step hens Site - Ref: Inspection Report page 20 - 21 o Observation 11 a) Step hens GST experi enced a structural failure at the base of the drain valve. The tank was drained and the va lve flange connection at the floor/drainpipe was found to have deteriorated and allowed a substanti al leak to enter under the tank floor and discharge around the base of the tank. See ATTACHMENTS 14 AND 15. The drain valve was removed and a steel plat e was welded in place to plug the opening until a permanent fix can be sched uled. The GSTwas disinfected and placed back into service. Garver Engineering has been contracted to provide specifications t o rehabilitate the GST. The rehab will be scheduled for the 4th QTR of 2024-1 st QTR 2025. The rehab will include th e obse rvations made during t he inspection. b) The voids at the base of the tank will be addressed during the drain repairs/rehab outlined in response (a). c) Security and Housekeep ing: The IT Department will contact a consultant for options and recommendations in installing security camera(s) .
4
EPA Region 6- Enforcement & Compliance Assurance Division Inspection Report Responses
The security fence surrounding the site originally ended at both sides of the control building exposing the face of the building. The fence was relocated and now the building is recessed completely inside of the fence. See ATTACHMENT 16
The foliage and vegetation was removed from the surrounding security fence. See ATTACHMENT 17
The storage tank will be rehabilitated as outlined in response {a) to include o sandblasted and repainted o ladders and hatches modified/replaced to meet standards
d) The chlorine injection vault will be part of the rehabilitation outlined in response {a) e) SCBA / Doors I Chlorine leak detectors
SCBA equipment is not stored at the remote chlorine storage rooms. Two authorized and trained operators are required to distribute, store, handle and connect the #150 chlorine bottles used at remote ground water chlorine rooms. These operators are responsible to have a full face respirator but not authorized to respond to a chlorine emergency rising to the level of requiring SCBA without the required backup emergency team in place. When a chlorine emergency is reported at a remote site then the Response Coordinator or Chief Operator will notify and dispatch the response team with the appropriate PPE and other equipment. The City SOP for chlorine Emergency Teams is as follows: o Emergency Preparedness Plan SECTION VII. 5 Emergency Teams Rescue team members must wear the following personal protective equipment before entering an area: selfcontained breathing apparatus {SCBA). The rescue team will worl< on the buddy system with a bacl<up buddy system. The baclcup rescue team will be dressed out in the same safety equipment as the primary rescue team. o Remote Site Chlorine SOP Personal Protective Equipment Self-Contained Breathing Apparatus {SCBA) o A worker must use an SCBA when an emergency chlorine Leal< has developed, and the airborne chlorine concentration is unknown or is measured at more than 10 ppm. Aworlcer must not enter a contaminated atmosphere until both the qualified worl<er and teammate, AND, a qualified bacl<up team are equipped with the appropriate personal protective equipment including SCBA, and ready to respond to the emergency.
Plant Staff scheduled a meeting with the City's Facilities Maintenance Department to discuss the doors and windows observations. Facilities Maintenance scheduled a site visit with a door contractor. A proposal was submitted and accepted. When the contractor has received all required materials, the doors at all remote chlorine pump rooms will be replaced, will open outward, and include observation windows and crash bars. Anticipate this project to begin in May 2024
5
EPA Region 6- Enforcement & Compliance Assurance Division Inspection Report Responses
Research is currently in progress for chlorine detectors with local alarms at each remote chlorine room. If possible, the detectors/alarms will be integrated into the SCADA system to allow full time monitoring
f) A threaded vacuum breaker has been attached to the hose bib. City staff performed additional inspections and insured vacuum breakers were installed on all hose bibs. See ATTACHMENT 13.
SUMMARY: As noted throughout the Inspection Report, and where possible, Water Plant personnel immediately took action to mitigate the Inspection Team's observations. Continued efforts are ongoing as outlined in the responses. Some observations require additional research, rehabilitation, design and in some cases additional funding in order to be resolved.
6
EPA Region 6- Enforcement & Compliance Assurance Division Inspection Report Responses
ATTACHMENTS
7
Dept. 7725 Water Qual~.
vices
Date
,, 11/8/;0~~ _
I<~# / I
Production
Flush Site Field Data
City of St
6 /4- ATTACHMENT 1
1 /S
_ 1S
2 2-
57'> ~ ~, -, - , ~ ---l>,
C
:ows. ~ HOf::1%~
.,/4/ {,_ t!/e,cJ_....f. ,
Reason for Flushing
J 129
ARRIVAL TIME
J S I B" :'-/
0 1111l.C~
f' r'
~ e ;;)
,..-F
\JJ O I D~
LOCATION
Fire Dept ID#
MAIN
SOURCE
Colori CL2 WATER ZONE SL1000 meter T:tbs
BobUtterFord.
FV
2"
Surface
-
C:, -
FLUSH START TIME TO CLEAR FLUSH END
TIME
TIME
8:' l-/ 7 Z M'111 , / 73 5
MIN FLUSHED
3 l-J ~ .
GPM
; --;-3,
GALLONS FLUSHED
H ht e,g
0 9--z.o'{ -z...' '~ ' > k
XF t ee
/ '
'r?ME L / 3 "'7 'nMt
nMt
'nME
TL\IE
TIME;
TIMC
T1rtE
/ 7 .;:> -:--- --+-- - - -t-- - -+ - - - -t-- - ---1-- - - -~ -~
';,,,< ~ ""Y I,.,,.. """ 1"TAL """ = """ roTAL """ n:n'AL "'"' TOTAL """ ~
/, 3 2-
.
.
Response to
Diffuser Used Routine Flush Work Order
Yes ~
Yes ~ ( 9 No
Fire Hydrant Sehcd Maint
Work Order ijequircd
Yes G)~C9
TINt
TIME
__ - -
NITRIFICATION MONliORING (NAP)
-
" " " TOrAL """" ""' R
""" -
MONO ... Eli
Flush Site Field Data
Equipment Used
Reason for Flushing
/ ..Flush#
./1
I 60
LOCATION 1616 Hilton@ East End
. F1reDeptlD#
3130-006
MAIN
SOURCE
6" (,....-GrounC
Colori CL.2 WATERZONE SL1000 meter Tabs
GW
- - C:, -
.
.
D1ffuserUsed Routine Flush
Yes ~ 1 3 1No
Response to Worl<Order
Yes ~
Fire Hydrant SehcdMaint
Yes (9
Work Order Required
Yes C9
VARRIVAL TIME FLUSH START TIME TO CLEAR FLUSH END
TIME
TIME
MIN FLUSHED
GPM
GALL<;>NS FLUSHED
H ht e,g
X F et e
/ !/Lf > o-0 .t i(,OL 5rvt!V\.., j?j/Z- /0,M'vt 3, I 7 ,310 14.00
2-.
"''"/ V/ ,-....._ ~
b-L..,' '-' ~
TIXE.
nME
nMt
nr.-:e
~
TIME
TUI
- - -+ - -- -+ - - - --t- - - --t- - - ---11----......:!-,____
~ FREE ~ ~ ~ FREEJ TOTAL FREE lOTAL FREE TOTAL FREE TOTAL FREE TOTAL FREE Tor.AL FREE TOTAL
~
,,,,,.,.._ . /
7J1U/ IO I / '7 ,'-- V
mte
FREE
-
TM.A&.
NITRIFICATION MONITORING (NAP)
IIONO NH3 FREE TEn'AL IIONO
nxc
- - --1
NH3 -
Flush Site Field Data
Equipment Used
Rc:ison for Fl ushing
~
Flush,.
LOCATION
~
Fire Dept ID,.
MAIN
SOURCE
Colori CL2
.
.
Response to
WATER ZONE SL1000 meter Tabs Diffuser Used Routine Flush Work Order
Fire Hydr.int Sehed Maint
Work Order Required
1
I 61
2105 Texoma Pkwy & Mi ldred
3030-018
6"
Surface
NWS - k - - Yes Gi) GJ No Yes ~ Yes , Yes , l
ARRIVAL TIME FLUSH START TIME TO CLEAR FLUSH END MIN FLUSHED
TIME
TIME
GPM
GALLONS FLUSHED
H ht e,g
X Feet
1
I I Y15
nNt ~
I / -z, 0
1Y17 z~,,-i,., 1-Yz?'
I 2 TIME
,,,,.... 'NU!.
nMt
-
'f '7
/ l;/;4
5 37
~c;0 7
12 00 -
TIW:
TIMC
3
TIME
~ TI! -
~
NITRIFICATION MONITORING (NAP)
~~ FREE ITE>TAL FREE f'FAL FREE TOTAL FREE TOTAL FREE TOTAL FREE TOTAi. FREE TOTAL FREE TOTl\L FREE TOTAL IIONO NH3
FREE TOTAL MONO NH3
v/ 6,99 J,-i__'J
,,, 2-,. _
"'1/\
Minl oFJEIDLOGFJNAlFOROEMENTRYOSl02l
--
Performed By:
"J/1;;c-e., ) , I t<fl/[/-e,/'/.__f /(,, y
OEMFLL HLOG
-k_
/)
~
~
-
~ /
11/l'.t(l0l23
ATTACHMENT 2
FLUSH THE SITE FOR A MINIMUM
OF 3 TO 5 MINUTES AND MEASURE CL2
City of Sherman Water Quality Monitoring Disinfectant Residual Flow Chart
IS CL2 = TO OR > YELLOW TRIGGER LEVEL / < MCL FREE > 0.70 - 1 .00 < 4.00 TOTAL > 1.00 - 1.50 < 4.00
~ t'~'1
IS THE CL2 = TO THE
TARGET GOAL
aJ1.,1a~Jtm
DOCUMENT YOUR READING AND MOVE ON TO THE NEXT SITE
VERIFY RESULTS, DOCUMENT THE READING ON YOUR FIELD LOG. IF
BELOW THE STATE MINMUM CONTINUE TO FLUSH THE SITE AND CONSIDER OPENING A FIRE HYDRANT, YOU MUST FLUSH THE AREA UNTIL
THE CL2 RESIDUAL IS ABOVE THE STATE MINIMUM. IF THE RESIDUAL IS
ABOVE THE MCL CONTACT PRODUCTION TO NOTIFY/VERIFY
SYSTEM ISSUES.
11-29-2023 Dept. 7725
' ' VERIFY RESULTS, DOCUMENT THE READING ON YOUR FIELD LOG.
CONTINUE TO FLUSH THE SITE UNTIL YOU ARE OUT OF THE RED
TRIGGER LEVEL IF SYSTEM CONDITIONS PREVENT YOU FROM
REACHING THE
AND/OR YOU ARE ON A
WEEKEND/HOLIDAY ROTATION. YOU MUST DOCUMENT THE
REASON/SON YOUR FIELD LOG AND ISSUE A WORK ORDER TO
FLUSH THE AFFECTED AREA DURING NORMAL OPERATING
CONDITIONS ANDLOR HOURS.
RED TRIGGER
FREE 0.20 - 0.70 TOTA L 0.50 - 1.00
YELLOW TRIGGER
FREE 0.70 - 1.00 TOTAL 1.00 - 1.50
TARGET GOAL FREE 1.00 - 1.25
TOTAL 1.50 - 2.00
DOCUMENT THE CL2 READING
AND MOVE ONTO THE NEXT SITE
ATTACHMENT 3
NAP DISINFECTANT RESIDUALS
City of Sherman Water Quality Monitoring Disinfectant Residual Flow Chart
FLUSH THE SITE FOR A MINIMUM
OF 3 TO S MINUTES AND MEASURE CL2
IS CL2 = TO OR> STATE
MINIMUM/< MCL
TOTAL > a.so < 4.00
IS CL2 = TO OR > RED
YES TRIGGER LEVEL / < MCL
TOTAL a.so - 1.00 < 4.00
~ YES
IS CL2 =TOOR > YELLI0 TRIGGER LEVEL / < TOTAL > 1.00 - 1.S0 < 4 00
5Me~~
IS THE CL2 = TO THE TARGET GOAL
TOTAL
ruw.1 > 1.50 < 4.00
DOCUMENT YOUR READING AND MOVE ON TO THE NEXT SITE
VERIFY RESULTS, DOCUMENT TH E READING ON YOUR FIELD LOG. IF
BELOW THE STATE MINMUM CONTINUE TO FLUSH THE SITE AND CONSIDER OPENI NG A FIRE HYDRANT, YOU MUST FLUSH THE AREA UNTIL
THE CLZ RESIDUAL IS ABOVE THE STATE MINIMUM. IF THE RESIDUAL IS
ABOVE THE MCL CONTACT PRODUCTION TO NOTIFY/VERIFY
SYSTEM ISSUES.
11-29-2023 Dept. 7725
' VERIFY RESULTS, DOCUMENT THE READING ON YOUR FIELD LOG.
CONTINUE TO FLUSH THE SITE UNTIL YOU ARE OUT OF THE RED TRIGGER LEVEL. IF SYSTEM CONDITIONS PREVENT YOU FROM
REACHING THE
YOU MUST DOCUMENT
THE REASON/SON YOUR FIELD LOG AND ISSUE A WORK ORDER TO
FLUSH THE AFFECTED AREA DURING NORMAL OPERATING
CQNDITIO_fiS.
RED TRIGGER TOTAL
0.50 - 1.00
YELLOW TRIGGER TOTA L
1.00 - 1.50
TARGET GOAL TOTAL
1.50 - 2.00
DOCUMENT THE CL2 READING
AND MOVE ONTO THE NEXT SITE
ATTACHMENT 4 ::__ J
-
EPA Inspection February I3-14, 2024
Raw Water Vault: EarthTEC ( Copper Sulphate)
Before: See EPA Inspection Report Appendix 1 Photo Log - Photo 1
After
tr f-\. 111svet;uu11 .February 13-14, 2024 Chemical Room: Copper Day Tank Mis-Labeling
Before
ATTACHMENT 5
-1 CAUTION -
, f'
' Jl
\ .
1 ,
I
After
- . --- ---=.=- :: --- -- ::::.-
- - - - --
- ~-~-
1-
-
------..-.... .
_ :_ ~- ~ OA't~ ; : : - ~ ~ - =-
EPA Inspection February l J-14, 2024
ATTACHMENT 6
RO MEMBRANE: Injection points not clearly labeled
Before: See EPA Inspection Report Appendix 1 Photo Log Photos 17-18
After
EPA Inspection February 13-14, 2024
ATTACHMENT 7
MEMBRANE EFFLUENT VAULT: Chemical injection lines appear to not be labeled
Before
Chemical injection lines had tags labeling the chemical injection during inspection but difficu lt to see from the hatch.
North - Fluoride Inj ection Tag
After:
South- Caustic Injection Tag
South - Phosphate Injection Tag
EPA Inspection February 13-14, 2024 HIGH SERVICE PUMPS: Grout deterioration and paint flaking
Before
ATTACHMENT 8
HSP 4-5
After
HSP 3-4-5
t
z
LU ~
I
u
~
1--
<(
1-
z
w
~
I
u
i::
I
<(
EPA Inspection February 13-14, 2024 Fairview Site - Gap between the base of the well pedestal and well pad
Before: See EPA Inspection Report Appendix I Photo Log- Photo 45
After
City of Sherman
ATTACHMENT 14
Stephens Pump Station - Ground Storage Tank L,
Ground Storage Tank
Mud Valve Stem
Overflow Pipe
February 14, 2024:
Stephens Pump Station GST experienced a structural failure and water was leaking at the base of t he tank.
February 19, 2024:
The GST was drained for inspection. The leak was determi ned to be at the base of t he mud valve and steel floor plate. It appea rs that the steel plate has deteriorated at and around the threaded holes used to fasten the mud valve. The deterioration allowed the mud valve seal to leak as well as water to pass through t he floor of the tank.
A contractor has been scheduled to inspect the tank the week of 3/4/24 and provide recommendations for the repair.
Mud Valve
Steel Floor Plate/ Mud Valve Mount
Drain/ Overflow Discharge Pipe
City of Sherman - Stephens Pump Station OST - Mud Valve Floor Plate 2/19/24
Floor Plate
ATTACHMENT 15
Th readed ho les for mounting the mud valve
- --! .,;
. :i,.
\-.: "
Deterioration: cracks/flaking
EPA Inspection February 13-14, 2024
ATTACHMENT 16
Stephens GW Pump Station Security Improvement - Fence Relocation
Action: The security fence ended at the building allowing access without entering the fence. Additional fencing was added to extend the fenced area and prevent access to the building without entering the fenced area
Before
After
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EPA Inspection February 13-14, 2024
. ATTACHMENT 17
Stephens GW Pump Station Security Improvement - Vegetation in/on the fence
Action: The vegetation growing through and on the security fence has been removed.
Before: See Inspection Report Appendix 1- Photo 49
After