Document mm9XV971oG3o60206Y8oyBB30
; Pfi / \/C S+J .
Tuesday September 30, 1986
Part IX
Environmental Protection Agency
40 CFR Part 61 National Emissions Standards for Hazardous Air Pollutants: Vinyl Chloride; Equipment Leaks of Volatile Hazardous Air Pollutants; Final Rule
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-34904 Federal Register / Vol. 51. No. 189 / Tuesday. September 30, 1986 / Rules and Regulation!
ENVIRONMENTAL PROTECTION
EPA in developing of the promulgated
AGENCY
revisions to the standard for VC. is
available for public inspection between
40 CFR Part 61
8W) a.m. and 4:00 p.m., Monday through
[AO-FRL-3044-5]
Friday, at EPA's Central Docket Section (LE-131), West Tower Lobby, Gallery 1,
National Emiaaion Standards for Hazardous Air Pollutants: Vinyl
Chloride; Equipment Leaks of Volatile Hazardous Air Pollutants
401 M Street. SW.. Washington. DC 20460. A reasonable fee may be charged for copying.
FOR FURTHER INFORMATION CONTACT:
For further information concerning the
AOCNCY: Environmental Protection
enforcement aspects of the promulgated
Agency (EPA).
revisions, contact Mr. Richard Biondi,
Final rule. ,
Compliance Monitoring Branch.
k-------------- ~ -- -- -- - . Stationary Source Compliance Division,
t EPA proposed
- 'JEN-341), U.S. Environmental Protection
admin'itrative'3ldclarifying revision#-' Agency, 401 M Street SW., Washington,
to the natiolmLemisstoa^tandajd for
DC 20469, telephone number (202) 382-
vinyl chloride (VCj dll JUJltllHyJL_L985,
2828. For further information concerning
(50 FR 1182). Certain revisions tome
the background technical information
standard are being promulgated in
supporting the promulgated revisions,
Subpart F through this action and. to a contact Mr. Robert E. Rosensteel.
minor extent, in Subpart V of 40 CFR
Chemicals and Petroleum Branch,
Part 81. Finally, through this action tha Emission Standards and Engineering
Agency fa denying the petition of the
Division (MD-13), U.S. Environmental
Natural Resources Defense Council
Protection Agency, Research Triangle
(NRDC) and the Environmental Defense Park. North Carolina 27711, telephone
Fund (EDF) which sought
number (919) 541-5671. For other
reconsideration of the EPA's withdrawal information on the regulation of VC and
of the amendments to the VC standard the promulgated revisions, contact Mr.
which were proposed in 1977.
Fred Dimmick. Standards Development
effective date: September 30,1966. Under section 307(b)(1) of the Clean Air
Act, judicial review of the actions taken by this notice is available only by filing of a petition for review in the. United
Branch, Emission Standards and Engineering Division (MD-13), U.S. Environmental Protection Agency, Research Triangle Park, North Carolina 27711, telephone number (919) 541-5578.
States Court of Appeals fortl*District SUPPLEMENTARY INFORMATION:
of Columbia circuit within 60 days of today's publication, of this rule. Under section 307(b)(2) of the Clean Air Act. the requirements that are the subject for today's notice may not be challenged later in civil or criminal proceeding! brought by BPA to enforce these
requirements.
Summary of Revisions to the Standard
The VC standard was promulgated on October 21,1976 (41 FR 48560) and applies to plants producing ethylene dichloride (EDO) via oxychlorination, plant producing VC. and plants producing polyvinyl chloride (PVC) or other polymers containing VC. These
Incorporation by Refeteoce
plants are subject to a combination of
The incorporation by reference of certain
performance, equipment and work
publication* in these standard* is approved by the Director of the Office of the Federal Register as of September 30.1986.
practice requirements at numerous points in the manufacturing processes.
Based on its review of the technological
adoresscs: Background Information
basis and administrative aspects of the
Document. The background information original standard, EPA proposed several
document (BID) for the promulgated
administrative and clarifying revisions
standards may be obtained from the
to the standard on January 9.1985 (50 FR
U.S. EPA Library (MD-35), Research
1182). The comments received and
Triangle Park, North Carolina 27711.
actions taken on these proposed
telephone number (919) 541-2777. Please revisions are discussed below.
refer to "Vinyl Chloride Standard: Responses to Comments on january 1985 Proposed Revisions," EPA-450/3-08-
Requirements for Leak Detection and Repair Programs
004. The BID contains: (1) A summary of
As proposed in January 1985, VC is
all public comments on the proposed
being added to the list of substances
revision* and the Administrator's
covered by 40 CFR Part 61 Subpart V,
response to the comments, and (2) a
which contains regulations for leaks
summary of the changes made to the
from certain equipment in volatile
revised standard since proposal.
hazardous air pollutant (VHAP) service.
Dockets. A docket, number A-81-Z1. Previously, plant owners subject to the
containing information considered by
VC standard were required to prepare
leak detection and repair puTT'"-
VC and PVC manufacturing
*
to submit these plans to EP*for ' An analysis of the plan,
revealed that these plans vari*d 1.
from plant to plant. Further i0m .
were considered to be inadequ?,, -
ineffective approaches to theTM*.^
VC leaks.
,e control,
The incorporation of Subpart V h* standard for VC emisaions eatabli*?'
standardized procedures for identifi leaks of VC and for taking steps to minimize emissions and repair leak. < Further, the incorporation ol Subpeni
will also accomplish a standardizedof the definition of what constitutes?
leak for routine leak detection. However, to avoid unnecessary t_-
to existing plani which are effective ta detecting and repairing VC leaks, th*v
standard contains provisions wherebj any facility may demonstrate throudtd annual (or more frequent, if requested,
by the Administrator) performance tai that the percentage of leaking valves remains at 2 percent as an alternative
following the Subpart V procedures j owner may continue to follow the
existing leak detection and eliminatl program for that facility for the pu
of achieving the 2 percent perform___
limit. However, existing plans are no longer required, nor do they necesaai
meet the promulgated requirements.
Compliance Test Procedure and S Opening Loss Limit for PVC Reactors
Used as Strippers
The Federal Register notice that
promulgated the current VC standard
stated that VC escaping from PVC resia^
that has been stripped in the reactor is
not intended to be included as part of
the VC emissions measured under the
reactor opening loss requirements. For
nonbulk PVC reactors which are used as<
strippers, however, no method was
specified to determine what part of the
VC in tha vapor space of the reactor had
escaped after the stripping was
completed. Consequently, a method was
proposed for determining the reactor
opening loss that accounts for stripping
in the PVC reactor for use by all
nonbulk resin producers. After
j
considering the comments on this
,
proposed revision. EPA decided to
,
promulgate the revision.
Another proposed change in the
standard affecting PVC reactors used as
strippers applied to the production of
bulk PVC resins. Two separate vessels
are used in bulk resin production, a
"prepolymerization" vessel and a "post-
polymerization" vessel. Under the
standard promulgated in 1976. both of
these vessels were subject to the reactor
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opening low requirement*. However, an jpalysis of the operation of prepolymerization vessels revealed that jhe>e reactors are opened less fluently than other types of reactors,
j,,d that the determination of gross product (required for the calculation of reactor opening loss) is impractical. In ianuary 1985. EPA proposed to apply the equipment opening loss requirements, rather than the reactor opening loss requirements, to these PVC reactors. The equipment opening loss requirements are more appropriate for the operating characteristics of the
prepolymerization reactor vessels and do not change the overall VC emission control stringency applicable prepolymerization reactors. A/ter
considering the comments on this proposed revision. EPA decided to promulgate the revision.
Clarification of Definitions and Standards
Based on the EPA'i experience with administering the VC standard, several provisions of the standard are being revised to reduce any ambiguity in their implementation. For example, specific definitions of "leak." "exhaust gas." and "relief valve discharge" are being added to clarify the applicability of the provisions of the standard to each of these types of emissions. Similarly, to eliminate misunderstandings about the application of the standard to purification equipment following EDO and VC formation, the definitions of "EDC purification" and "VC purification" are being revised to more clearly indicate which equipment ia subject to the standard.
Another revision being incorporated into the standard makes it clear that the 10 ppmv standard is a 3-hour average emission limit, rather than an instantaneous limit. The performance test provision in $ 61.67(g)(1) has also been clarified to specify that test results should reflect as close to a 3-hour average as practicable. Further, the 10 ppmv standard regulation is being revised to specify that all exhaust gas streams are covered by this requirement, including control device bypass streams, in order to implement this clarification, provisions are also being incorporated into the standard for calculating the VC content in bypassed emissions. A final revision to the 10 ppmv requiremenl is intended to
prohibit plants from diluting a VC exhaust gas stream with other exhaust gases in order to meet the 10 ppmv limit. Under the revised standard, combining an exhaust stream containing more than 10 ppmv VC with another gas stream is
only allowed when the combined stream is ducted to a control device.
The inprocess wastewater requirements for gasholder seals are also being revised to exclude the exposed water seal of gasholders.
Experience with the VC standard indicates that water contained in the exposed water seal of a gasholder may exceed the 10 ppmv limit during normal operation and that compliance with the atmospheric exposure limit is not practicable for this source. The inprocess wastewater stripping requirements, however, will continue to apply to wastewater after removal from the gasholder seal.
Other Administrative Revisions
Other administrative revisions to the standard include.- (1) The elimination of the 30-day limit for existing sources to submit requests for the use of equivalent control measures: (2) a change from semiannual to quarterly reporting of VC emissions from resin stripping, reactor openings, and exhaust gases; and (3) allowance of reporting of periods of excess emissions instead of all emission measurements.
Summary of Impacts to the Standard
Revisions to the standard represent administrative and clarifying changes: no major revisions were proposed. Therefore, the environmental, energy and economic impacts of the original standard remain generally unchanged. A summary of the impacts of the original standard can be found in the preamble to the proposed standard revisions (50 FR 1182).
Public Participation
Prior to proposal of revisions to the standard, interested parties were advised by public notice in the Federal Register (49 FR 26807, June 29.1964) of a meeting of the National Air Pollution Control Techniques Advisory Committee (NAPCTAC) to discuss the revisions to the VC standard recommended for proposal. This meeting was held on August 30.1964. The meeting was open to the public and each attendee was given an opportunity to comment on the revised standard recommended for proposal.
The revised standard was proposed in (he Federal Register on January 9. 1985. The public comment period was from January 9.1985 to March 25.1985. A total of 16 comment letters were
received. Industry representatives
submitted most of the comment letters. Also commenting were representativei of the U.S. Congress, a State Legislature, a State air pollution agency and an environmental group. The comments
... ,
7"oe appropriate b
EPA. changes have been made to the
proposed revisions to the standard.
Significant Comments Since Proposal
Most of the comment letters contained multiple comments. In general, the comments supported the proposed
administrative and clarifying revisions. A detailed discussion of the comments and responses can be found in the BID for the promulgated standard, which is referenced in the ADDRESSES section of this preamble. The comments and responses in the BID serve as the basis
for the changes that have been made to the revised standard between proposal and promulgation.
Almost all commenters addressed the proposed revisions to the relief valva discharge standard. Although many of the commenters agreed with the action to reformat the standard, several commenters objected to various aspects of the discharge limits. Based on consideration of these comments. EPA decided not to promulgate the proposed revision to the relief valve discharge standard. The comments on this and other proposed revisions are addressed in detail in the BID for the promulgated standard and in summary in the next section of this preamble.
One commenter requested reconsideration of the withdrawal of the amendments to the VC standard which were proposed in 1977. This petition for reconsideration was based on objections to the Agency's use of data on costs and economic impacts in the decision to withdraw the proposed
amendments, and to the Agency's determination of the technological basis of the standard. The commenters stated that the EPA's actions in withdrawing the proposed amendments were inconsistent with the requirements of section 112 of the Clean Air Act. As discussed further in this preamble, the Agency is denying the petition for reconsiders tion.
Proposed Revisions to Relief Valve Discharge Standard
The EPA has decided not to promulgate revisions to the relief valve discharge standard proposed in the January 9.1985. Federal Register notice. The revisions would have established a different type of numerical limit for relief valve discharges. The decision to retain the original relief valve discharge
standard was made after considering
the revisions in light of public comments and other findings. Although many public comments favored the proposed revisions, others opposed the change. In
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34906 Federal Register / Vol. 51, No. 189 / Tuesday, September 30. 1966 / Rules and Regulations
particular, leveral commenters
expressed concern that preventable relief valve discharges would be allowed under the revised standard and that the performance allowed under the
revised standard could be inconsistent with that allowed under the original standard. Other comments expressed concern that the revised standard included no mechanism for regulating very large relief valve discharges. The basis for the statement that a large Agency resource commitment is required for enforcing the relief valve discharge standard was also questioned.
As a result of these comments, EPA reviewed the basis for the recommendations that led to the decision to propose to reformat the standard. First, as discussed in the Federal Register notice proposing
revisions to the relief valve discharge standard (SO FR1187), the review of the standard conducted between 1980 and 1982 found that the existing standard resulted in a significant commitment of Agency resources to the review and evaluation of discharges of VC from relief valves. Because the existing standard allows only "emergency" discharges of VC from relief valves (Le the relief valve discharge could not be avoided by taking preventative measures), every discharge must be evaluated individually to determine whether the owner or operator of the facility has implemented the measures
necessary to prevent that relief valve discharge. During the 4 to 5 years since the review study was conducted, the enforcement of the relief valve discharge standard has been made more efficient. This is due in large part to experience established in enforcing the standard. As a result, EPA enforcement personnel consider implementation of this standard to be much less resource and labor intensive.
A second conclusion from the 1980 to 1982 study was that industry did not have a clear understanding of what the
relief valve discharge standard required and what measures they needed to implement in order to comply with the standard. During the 4 to 5 years since the review study, a number of enforcement actions have been taken against individual plants for violations of the standards. Those actions have culminated in consent decrees which
incorporate requirements for remedial actions to prevent further relief valve discharges. The provisions of these
consent decrees have not only reduced the number of relief valve discharges at specific plants, but they have also served as guidelines in determining the
types of measures appropriate for
minimizing the discharges. Because oi these two developments. EPA concluded
that the original findings of the review study are no longer valid and should not be the basis of a revision to the format
of the relief valve discharge standard.
The decision to retain the existing relief valve discharge standard as a part
of the standard for VC emissions is further supported by two additional advantages that the existing standard has over the proposed revisions. First, the existing standard provides
that all preventable relief valve discharges are subject to enforcement
action. Under the proposed revisions, which would have allowed a small number of discharges per year whether
preventable or not. it is possible that a plant could experience preventable discharges and still be in compliance with the standard. As pointed out in public comments, it is theoretically possible that discharges resulting from gross negligence could go unpenalized under the revisions to the standard. The EPA did not intend this effect in the
proposed revisions. The retention of the existing relief valve discharge standard allows EPA to continue the current enforcement approach.
Second, the existing relief valve discharge standard provides a better mechanism for regulating large relief valve discharges. The proposed revision
would have allowed a certain number of relief valve discharges per year, without
regard to the size or duration of the discharge. Consequently, as long as the number of releases were within the numerical limits of the proposed
revisions to the standard, there were no mechanisms in the standard to enforce control of the amount of VC discharged to the atmosphere. Under the existing relief valve discharge standard, however, the duration and size of the discharge are factors in determining the severity of a violation of the standard. As a result, a plant owner or operator has a greater incentive under the current
standard for taking action to reduce the quantity of a discharge.
In summary, EPA is not promulgating
the revisions to the relief valve discharge standard which were proposed in the January 9.1985, Federal
Register notice. This decision was reached after consideration of public comments received on the proposal, and after a review of the basis for the decision to reformat the standard. Because this review revealed that the
burden on Agency resources has
diminished as experience with the implementation of the standard increased, and that understanding of the provisions of the existing standard on
the part of industry should be clearer the necessity for revising the format <jf
the relief valve discharge standard i( no longer apparent. The existing standard also has the advantages of penalizing all preventable relief valve discharges, providing better regulation of large volume relief valve discharges, and promoting continuity in the ongoing enforcement of the standard.
In some instances, it may be possible for a plant operator to contain a relief valve discharge and to vent it to a control device. Where this can be done without exceeding the exhaust gas emission limit of 10 ppmv, EPA concluded that this approach should be encouraged and, therefore, the discharge should be exempt from the relief valve discharge standard. Venting the discharge through a control device can result in a 99.9 percent reduction in the VC content of the relief valve discharge without interfering with the control of VC emissions in exhaust gases which are also vented through the control device. Although compliance with the 10 ppmv standard would exempt the discharge from the relief valve discharge standard, exceeding the 10 ppmv standard would be considered both a violation of the 10 ppmv standard and of the relief valve discharge standard.
Denial of Petition For Reconsideration
The NRDC and EDF petitioned EPA to reconsider the decision to withdraw the 1977 proposed revisions to the VC standard. The criteria for granting such a petition are: (1) The petition must be based on information that was not and could not reasonably have been presented during the original rulemaking: and (2) the petition must provide substantial support for the argument that the challenged action should be changed. See Denial of Petition to Revise NSPS for Stationary Gas Turbines, 45 FR 81853 (December 1, 1980). As described below, this petition fails to meet either criterion, and it is
therefore, denied.
Consideration of Petition
The NRDC/EDF petition for reconsideration of the withdrawal was based on four main premises. First NRDC/EDF objected to the EPA's announcement of the withdrawal of the proposed amendments as a final action, without being preceded by a notice which proposed the withdrawal and allowed for public comment on the action. Second. NRDC/EDF objected to the influence of cost considerations in the
decision to withdraw the proposed amendment, stating that the balancing of costs and benefits in the setting of the VC standard is contrary to the
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requirements of Section 112 of the Clean Air Act. Third. NRDC/EDF took issue
with what it took to be the EPA's assumption that Section 112 of the Clean Air Act establishes a requirement that a level of control must have been "consistently achieved'' in the past in
order to form the basis of the standard. Finally, NRDC/EDF slated that the
F.PA's decisions on specific portions of the proposed amendments were in conflict with the evidence on those issues.
In the first objection. NRDC/EDF state that the proposed amendments to the 1977 VC standard should not be withdrawn because no notice of such withdrawal had been published and there had been no opportunity for public comment on the withdrawal. During the 8 years which have elapsed since the proposal of those amendments, there
has been ample opportunity afforded for public comment and input on the
amendments and their withdrawal. The amendments, their protential consequences, and the decisions that the Agency might take with regard to them were all before the public. Specifically. NRDC and EDF received draft documents relating to the rulemaking distributed prior to the NAPCTAC meeting. Finally. NRDC did not give any supporting rationale for believing that further opportunity for comment would yield any relevant new information or arguments. Therefore. EPA does not believe that additional time or provision for receiving further public comments could have been either necessary or helpful for the resolution of the issues involving the proposed amendments to
the VC standard.
The second issue raised by NRDC/ EDF involves the inclusion of cost consideration in the EPA's rulemaking deliberations under Section 112. The NRDC/EDF maintains that the language of Section 112 which requires the standard to be set at a level which provides an "ample margin of safety" to the public precludes consideration of the costs of control. In the EPA's judgment, the VC standard protects the public health with an ample margin of safety within the meaning of Section 112. and EPA may consider cost and feasiblity in setting the standard. The EPA views were explained in the 1975-76 VC rulemaking. The NRDC/EDF provided no new information on this issue.
The NRDC/EDF's third objection was
the EPA was incorrect in stating that a
level of control must be "consistently achieved" in order to form the basis of
the standard. Specifically, NRDC/EDF pointed to the language in the Federal Register notice that "10 ppmv represents
the lowest level of control which has been consistently achieved" as indicating that EFA was applying such requirement in evaluating alternative exhaust gas requirements. However, the
basis for EPA's selection of 10 ppmv as
the VC standard for exhaust gas emissions is that this level of control is
the lowest achievable emission limit attainable on a never-to-be-exceeded basis. Although 5 ppmv may be
achieved by some systems over a limited time period, the existing data indicate the this level of control cannot be maintained over a long-term, neverto-be-exceeded basis, as required by the standards. In addition to being achievable on a consistent, long-term basis, the 10 ppmv standard was also determined by EPA to provide the public with the ample margin of safety required by section 112. Therefore. EPA beleives
that the standard satisfies the requirements of section 112.
The final points raised by NRDC/EDF in support of the petition for reconsideration addressed three specific provisions of the proposed amendments which were withdrawn. The NRDC/EDF stated that the withdrawal of these provisions was in conflict with the evidence before the Agency. The first
specific portion of the standard addressed in the petition is the withdrawal of the proposed 5 ppmv emission limit for exhaust gas emission in favor of the existing 10 ppmv emission limit. The NRDC/EDF stated that the evidence in the record supports a finding that the 5 ppmv limit is achievable by new sources, and by existing sources within 3 years of promulgation. The petition also pointed to the more stringent emission limit not be foregone.
The EPA decided to maintain the 10 ppmv emission limit for exhaust gas emission for three primary reasons. First, as stated above, the 10 ppmv emission limit has been determined to be consistently achievable by industry, whereas the 5 ppmv emission limit
cannot be consistently achieved. Second, even though the limit on maximum emissions of VC is set at 10 ppmv, the average and most short-term emissions will be considerably lower than this level. Third, lowering the emission limit on maximum emission rales to 5 ppmv would not significantly reduce the average emissions, and
therefore, adopting the lower standard
was determined by the Agency not to have a significant impact on emissions
of VC or. accordingly, on public health risks. The petition for reconsideration presented no new evidence relevant to
Ihc Agency's decision to withdraw the proposed 5 ppmv emission limit.
The second decision addressed by the
petition for reconsideration as conflicting with the considered evidence is the withdrawal of the 5 ppmv
emission limit for oxychlormation vents. The petition points to a statement in the 1977 proposal that this emission limit
could be attained based on the use of oxygen as a feed material rather than air. and maintains that no discussion or evidence were presented which would justify withdrawal of this proposal.
In the Federal Register (50 FR 1185). evidence was presented by the Agency supporting the conclusion that more stringent control of emissions from oxychlorination vents was unnecessary. First, no new technological controls have been developed which are applicable to these vents. Second, the costs of incinerating oxychlorination
vent streams were reevaluated and determined, as before, to be unreasonable compared to the small reduction in VC emissions. And finally, with the possible exception of one plant, no new EDC/VC plants with oxychlorination reactors are expected to be constructed, and any that may be constructed will be adequately regulated by the requirements of new source review regulations. No new information was presented in the petition for reconsideration relevant to the decision to retain the existing oxychlorination vent standard.
The third decision which was addressed in the petition for reconsideration as conflicting with the considered evidence is the withdrawal of the proposal to lower the residual VC limit for new dispersion resins from 2.000 ppmv to 500 ppmv. and the limit for other new resins from 400 ppmv to 100 ppmv. The petition states that existing facilities are currently meeting the lower limits, and that both new and existing facilities could be brought into compliance with the more stringent limits by using (he equipment and procedures currently used by the leading
facilities. The EPA withdrew the proposed more
stringent stripping level requirements for two main reasons. The first is that the nature of PVC production makes it difficult to distinguish "new" from "old" resins. Resin compositions are adjusted routinely, and completely "new" resins are rarely, if ever. made. Second. EPA concluded that there is no improved
technology which would provide the basis for more stringent stripping
requirements for all resins. The technologies which are effective for specific resins may nol be effective for
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other resin*. The consequence of establishing a more stringent standard would be that certain hard-to-strip resins could no longer be produced. In the EPA's opinion, such a result would be an unwarranted economic impact which is unnecessary to provide an ample margin of safety for public health. No new relevant information was presented in the petition for reconsideration.
Administrative
The docket is an organized and complete file of all the information considered by EPA in the development
of this rulemaking. The docket is a dynamic file, since material is added throughout the rulemaking development. The docketing system is intended to allow members of the public and industries involved to identify and locate documents so that they can
effectively participate in the rulemaking process. Along with the statement of basis and purpose of the proposed and promulgated standards and EPA responses to significant comments, the contents of the docket, except for interagency review materials, will serve as the record in case of judicial review (section 307(d)(7)(A)).
The effective date of these revisions is September 30.1986. Section 112 of the Clean Air Act provides that national emission standards for hazardous air pollutants become effective upon promulgation and apply to all existing and new sources.
As prescribed by section 112, promulgation of this standard was preceded by the Administrator's listing of VC under section 112 of the Act on December 24.1975 (40 FR 59477). In accordance with section 117 of the Act, publication of these promulgated revisions was preceded by consultation with appropriate advisory committees, independent experts, and Federal departments and agencies.
Information collection requirements associated with this revised regulation
(those included in 40 CFR Part 61. Subpart A and Subpart F) have been approved by the Office of Management and Budget (OMB) under the provisions of the Paperwork Reduction Act of 1980, 44 U.S.C. 3501 el seq.. and have been assigned OMB control number 0186. The revised standard is estimated to result in a paperwork burden of about 36 person-years which is roughly the same as the original standard.
Under Executive Order 12291, EPA is
required to judge whether a regulation is a "major rule" and therefore subject to certain requirements of the Order. The EPA has determined that the revised regulation would result in none of the
adverse economic effects set forth in Section 1 of the Order as grounds For finding a regulation to be a "major rule." The revised regulation is not major because: (1) Nationwide annual compliance costs, including capital charges resulting from the standard total less than $100 million; (2) the standard does not cause a major increase in prices or production costs; and (3) the standards do not cause significant adverse effects on domestic competition, employment, investment, productivity, innovation or competition in foreign markets. The EPA has submitted this rulemaking to OMB under Executive Order 12291.
The Regulatory Flexibility Act of 1980 requires the identification of potentially adverse impacts of Federal regulations upon small business entities. The Act specifically requires the completion of a Regulatory Flexibility Analysis in those instances where small business impacts are possible. Because this revised standard imposes no adverse economic impacts, a Regulatory Flexibility Analysis has not been conducted.
Pursuant to the provisons of 5 U.S.C. 605(b). 1 hereby certify that the proposed rule will not have a significant economic impact on a substantial number of small entities.
List of Subjects in 40 CFR Part 61.
Air pollution control. Asbestos. Benzene, Beryllium, Hazardous materials. Mercury, Vinyl chloride.
Dated: September 24.1960. Lea M. Thomas, Administrator.
PART 61--NATIONAL EMISSION STANDARDS FOR HAZARDOUS AIR POLLUTANTS
For the reasons set forth in the preamble. 40 CFR Part 01 is amended as follows:
1. The authority citation for Part 61 contunues to read as follows:
Authority: Secs. 101.112,114.110.301. Clean Air Act as amended (42 U.S.C. 7401. 7412. 7414, 7416, 7801).
2. Section 61.61 is amended by revising paragraphs (j). (I), (o) and (p) and by adding paragraphs (v), (w). (x), (y), and (z) to read as follows:
i $ 61.61 Definitions. east*
(j) "Inprocess wastewater" means any water which, during manufacturing or processing, comes into direct contact with vinyl chloride or polyvinyl chloride or results from the production or use of any raw material, intermediate product, finished product, by-product, or waste
product containing vinyl chlorid polyvinyl chloride bul which haf f been discharged to a wastewater treatment process or discharged untreated as wastewater. Cashold seal water is not inprocess wastewai until it is removed from the gashold
(1) "In vinyl chloride service"
that a piece of equipment either conuin or contacts a liquid that is a least io "* percent vinyl chloride by weight orla that is at least 10 percent by volume ***
vinyl chloride as determined according to the provisions of S 61.67(h). The * provisions of $ 61.67(h) also specify how to determine that a piece of equipment it not in vinyl chloride service. For the purposes of this subpart, this definition must be used in place of the definition of "in VHAP service" in Subpart V of this part
(o) "Ethylene dichloride purification" includes any part of the process of ethylene dichloride production which follows ethylene dichloride formation, excluding product atorage following the final finishing column.
(p) "Vinyl chloride purification" incudes any part of the process of vinyl chloride production which follows vinyl chloride formation.
6
(v) "Relief valve" means each pressure relief device including pressure relief valves, rupture disks and other pressure relief systems used to protect process components from overpressure conditions. "Relief valve" does not include polymerization shortstop systems, referigerated water systems or control valves or other devices used to control flow to an incinerator or other air pollution control device.
(w) "Leak" means any of several events that indicate interruption of confinement of vinyl chloride within process equipment. Leaks include events regulated under Subpart V of this part such as: (1) An instrument reading of 10.000 ppm or greater measure according to Method 21 (see Appendix A of 40 CFR Part 90); (2) indications of liquid dripping; (3) a sensor detection of failure of a seal system, failure of a barrier fluid system, or both; and (4) detectable emissions as indicated by an instrument reading of greater than 500 ppm above background for equipment designated for no detectable emissions measured according to Test Method 21 (see Appendix A of 40 CFR Part 60). Leaks also include events regulated under j 61.85(b)(8)(i) for detection of ambient concentrations in excess of background
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concentration. A relief valve discharge jS not a leak.
(x) "Exhaust gas" means any offgas (the constituents of which may consist of any fluids, either as a liquid and/or gas) discharged directly or ultimately to the atmosphere that was initially contained in or was in direct contact with the equipment for which exhaust gas limits are prescribed in { 61.62 (a) and (b); { 61.63(a); { 81.64 (a)(1), (a)(2), (b), (c), and (d): i 61.85(b) (l)(ii), (b)(2), (b)(5), (b)(6)(ii) and (b)(9)(ii).
(y) "Relief valve discharge" means any nonleak discharge through a relief valve. "Relief valve discharge" does not include discharges ducted to a control system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm (average for 3-hour period), or equivalent as provided in {61.66.
(z) "3-hour period" means any three consecutive 1-hour periods (each hour commencing on the hour).
3. Section 61.62 is amended by revising paragraphs (a) and (b) to read as follows:
{1.62 Emission standard tor sthytene dlcMorMe plants.
(a) Ethylene dichloride purification. The concentration of vinyl chloride in each exhaust gas stream from any equipment used in ethylene dichloride purification is not to exceed 10 ppm (average for 3-hour period), except as provided in { 61.65(a). This requirement does not preclude combining of exhaust gas streams provided the combined steam is ducted through a control system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm, or equivalent as provided in { 61.66. This requirement does not apply to equipment that has been opened, is out of operation, and met the requirement in { 81.65(b)(6)(i) before being opened.
(b) Oxychlorination reactor. Except as provided in { 61.65(a), emissions of vinyl chloride to the atmosphere from each oxychlorination reactor are not to exceed 0.2 g/kg (0.0002 lb/lb) (average for 3-hour period) of the 100 percent ethylene dichloride product from ihe oxychlorination process.
4. Section 61.63 is revised to read as follows:
{ (1.63 Emission standard for vinyl chloride plants.
An owner or operator of a vinyl chloride plant shall comply with the requirements of this section and { 61.65.
(a) Vinyl chloride formation and purification: The concentration of vinyl chloride in each exhaust gas stream
from any equipment used in vinyl chloride formation and/or purification is not to exceed 10 ppm (average for 3-hour
period), except as provided in { 61.65(a). This requirement does not preclude combining of exhaust gas streams
provided the combined steam is ducted through a control system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm,
or equivalent as provided in { 61.66. This requirement does not apply to equipment that has been opened, is out of operation, and met the requirement in { 61.65(b)(6)(i) before being opened.
5. Section 61.64 is amended by revising paragraphs (a), (b), (c) and (d) to read as follows:
{61.64 E/nlMion standard for polyvinyl chloride plants. *
(a) Reactor. The following requirements apply to reactors:
(1) The concentration of vinyl chloride in each exhaust gas stream from each reactor is not to exceed 10 ppm (average for 3-hour period), except as provided in paragraph (a)(2) of this section and { 61.65(a).
(2) The reactor opening loss from each reactor is not to exceed 0.02 g vinyl chloride/kg (0.00002 lb vinyl chloride/lb) of polyvinyl chloride product except as provided in paragraphs (f)(1) and (f)(2) of this section, with the product determined on a dry solids basis. This requirement does not apply to prepolymerization reactors In the bulk process. This requirement does apply to postpolymerization reactors in the bulk process, where the product means the gross product of prepolymerization and postpolymerization.
(3) Manual vent valve discharge. Except for an emergency manual vent valve discharge, there is to be no discharge to the atmosphere from any manual vent valve on a polyvinyl chloride reactor in vinyl chloride service. An emergency manual vent valve discharge means a discharge to the atmosphere which could not have been avoided by taking measures to prevent the discharge. Within 10 days of any discharge to the atmosphere from any manual vent valve, the owner or operator of the source from which the discharge occurs shall submit to the Administrator a report in writing containing information on the source, nature and cause of the discharge, the date and time of the discharge, the
approximate total vinyl chloride loss during the discharge, the method used for determining the vinyl chloride loss (the calculation of the vinyl chloride loss), the action that was taken to
prevent the discharge, and measures adopted to prevent future discharges.
(b) Stripper. The concentration of
vinly chloride in each exhaust gas stream from each stripper is not to exceed 10 ppm (average for 3-hour
period), except as provided in 61.65(a).
This requirement does not apply to equipment that has been opened, is out of operation, and met the
requiremention {61.65(b)(6)(i) before being opened.
(c) Mixing, weighing, and holding containers. The concentration of vinyl chloride in each exhaust gas stream from each mixing, weighing, or holding container in vinyl chloride service which precedes the stripper (or the reactor if the plant has no stripper) in the plant process flow is not to exceed 10 ppm (average for 3-hour period), except as provided in { 61.65(a). This requirement does not apply to equipment that has been opened, is out of operation, and met the requirement in { 61.65(b)(6)(i) before being opened..
(d) Monomer recovery system. The concentration of vinyl chloride in each exhaust gas stream from each monomer recovery system is not to exceed 10 ppm (average for 3-hour period), except as provided in { 61.65(a). This requirement does not apply to equipment that has been opened, is out of operation, and met the requirement in { 81.65(b)(6)(i) before being opened.
* *
6. By revising paragraph (e) Introductory text, and adding paragraphs (e)(3) and (f) to { 61.64 to read as follows:
{61.64 EmlMion standard for polyvinyl chloride plants.
(e) Sources following the stripper(s). The following requirements apply to emissions of vinyl chloride to the atmosphere from the combination of all sources following the stripper(s) (or the reaclor(s) if the plant has no stripper(s)] in the plant process flow including but not limited to. centrifuges, concentrators, blend tanks, filters, dryers, conveyor air discharges, baggers, storage containers, and inprocess wastewater, except as provided in paragraph (f) of this section:
(1)*** (2) ' * * (3) The provisions of this paragraph apply at all times including when offspecification or other types of resins are
made. (f) Reactor used as stripper. When a
nonbulk resin reactor is used as a stripper this paragraph may be applied in lieu of { 61.64 (a)(2) and (e)(1):
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34310 Federal Register / Vol. 51, No. 189 / Tuesday. September 30, 1986 / Rules and Regulations
(1) Tbe weighted average emission* of vinyl chloride from reactor opening loss and all sources following the reactor used as a stripper from all grades of polyvinyl chloride resin stripped in the reactor on each calendar day may not exceed:
(i) 2.02 g/kg (0.00202 lb/lb) of polyvinyl chloride product for dispersion polyvinyl chloride resins, excluding latex resins, with the product determined on a dry solids basis.
(iij 0.42 g/kg (0.00042 lb/lb) of polyvinyl chloride product for all other polyvinyl chloride resins, including latex resins, with the product determined on a dry solids basis.
7. Section 61.65 is amended by revising paragraphs (a), (b)(l)(ii) and (b)(2) to read as follows: '
J61.65 Emission standard for oitiytono dichlorid*, vinyl chloride, aod polyvinyl chloride plants.
(a) Relief valve discharge. Except for an emergency relief discharge, there is to be no discharge to the atmosphere from any relief valve on any equipment in vinyl chloride service. An emergency relief discharge means a discharge which could not have been avoided by taking measures to prevent the discharge. Within 10 days ofany relief valve discharge, the owner or operator of the source from which the relief valve discharge occurs shall submit to the Administrator a report in writing containing information on the source, nature and cause of the discharge, the date and time of the discharge, the approximate total vinyl chloride loss during the discharge, the method used for determining the vinyl chloride loss (the calculation of the vinyl chloride loss), the action that was taken to prevent the discharge, and measures adopted to prevent future discharges.
(b) * * * (D*"
(1) * * * (ii) Any vinyl chloride removed from a loading or unloading line in accordance with paragraph (b)(1)(f) of this section is to be ducted through a control system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm (average for 3-hour period), or equivalent as provided in J 61.66. (2) Slip gauges. During loading or unloading operations, the vinyl chloride emissions from each slip gauge in vinyl chloride service are to be minimized by
ducting any vinyl chloride discharged from the slip gauge through a control system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm (average for 3-hour
period), or equivalent as provided in 5 61.66.
**e*a
8. By revising paragraphs (b)(3), (b)(4), (b) (5), (b)(6). (b)(7). (b)(8), (b)(9)(h), and (c) to $ 61.65 as follows:
5 61.65 Emission standard for ethylene dichlorid*, vinyl chloride and polyvinyl chloride plants.
An owner or operator of an ethylene dichloride, vinyl chloride, and/or polyvinyl chloride plant shall comply with the requirements of this section.
(a) * * * (b) * -
(1) * * * (2) * * * (3) Leakage from pump, compressor, and agitator seals: (i) Rotating pumps. Vinyl chloride emissions from seals on all rotating pumps in vinyl chloride service are to be minimized by installing sealless pumps, pumps with double mechanical seals or equivalent as provided in { 81.86. If double mechanical seals are used, vinyl chloride emissions from the seals are to be minimized by maintaining the pressure between the two seals so that any leak that occurs is into the pump; by ducting any vinyl chloride between the two seals through a control system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm: or equivalent as provided in } 81.66. Compliance with the provisions of 40 CFR Part 61 Subpart V demonstrates compliance with the provisions of this paragraph. (ii) Reciprocating pumps. Vinyl chloride emissions from seals on all reciprocating pumps in vinyl chloride
service are to be minimized by installing double outboard seals, or equivalent as provided in 561.66. If double outboard seals are used, vinyl chloride emissions from the seals are to be minimized by maintaining the pressure between the two seals so that any leak that occurs is into the pump: by ducting any vinyl chloride between the two seals through a control system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm: or equivalent as provided in $61.66. Compliance with the provisions of 40 CFR Part 61 Subpart V demonstrates compliance with the provisions of this paragraph.
(iii) Rotating compressor. Vinyl chloride emissions from seals on all rotating compressors in vinyl chloride service are to be minimized by installing
compressors with double mechanical seals, or equivalent as provided in $61.66. If double mechanical seals are used, vinyl chloride emissions from the seals are to be minimized by
maintaining the pressure between the two seals so that any leak that occurs is into the compressor: by ducting any
vinyl chloride between the two seals through a control system from which the concentration of vinyl chloride in the
exhaust gases does not exceed 10 ppo,; or equivalent as provided in $61.66. Compliance with the provisions of 40
CFR Part 61 Subpart V demonstrates compliance with the provisions of this paragraph.
(iv) Reciprocating compressors. Vinyl chloride emissions from seals on all reciprocating compressors in vinyl chloride service are to be minimized by installing double outboard seals, or equivalent as provided in $ 61.66. If double outboard seals are used, vinyl
chloride emissions from the seals are to be minimized by maintaining the pressure between the two seals so that any leak that occurs is into the compressor by ducting any vinyl
chloride between the two seals througha control system froth which
concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm; or equivalent as provided in $ 61.66. Compliance with the provisions of 40
CFR Part 61 Subpart V demonstrates compliance with the provisions of this paragraph.
(v) Agitator. Vinyl chloride emissions from seals on all agitators in vinyl chloride service are to be minimized by installing agitators with double mechanical seals, or equivalent as provided in $ 61.66. If double mechanical seals are used, vinyl chloride emissions from the seals are to be minimized by maintaining the
pressure between the two seals so that
any leak that occurs is into the agitated vessel: by ducting any vinyl chloride between the two seals through a control
system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm: or equivalent as provided in $ 61.66.
(4) Leaks from relief valves. Vinyl chloride emissions due to leaks from each relief valve on equipment in vinyl chloride service shall comply with $ 61.242-4 of Subpart V of this part.
(5) Manual venting ofgases. Except as provided in $ 61.64(a)(3). all gases which are manually vented from equipment in vinly chloride service are to be ducted through a control system from which the
concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm (average for 3-hour period); or
equivalent as provided in $ 61.66.
(6) Opening of equipment. Vinyl
chloride emissions from opening of equipment (including prepolymerization reactors used in the manufacture of bulk
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resins and. loading of unloading tinea that are not opened to the atmosphere after each loading or unloading operation) are to be minimised aa follows:
(if Before opening any equipment for
any retaaoa the quantity of vinyl chloride which ia contained therein is to be reduced to an amount which occupies a volume of no more than 2d percent of the equipment's containment volume or 0.0860 cubic meters (.25 gallons),
whichever is larger, at standard temperature and pressure.
(ii) Any vinyl chloride removed from
the equipment ia accordance with paragraph (bJ(effi) of this section is to be ducted through a control system from which the concentratioa of vinyl chloride ia the exhaust puu does not exceed 10 ppm (average for 1-hour
period); sr equivalent as provided m
ittao. (?) Scmnpiee. Unused portions of
sample* eentasnaag si leeet 10 percent by waigite vinyl chloride at* to he reined to the procese or destroyed ia a control device from which concentration of vinyl chloride in the exhaust gps does no* exceed V) ppm leverage for 3-houe period) or equivalent an provided in { 61.66. Sampling techniques are to b
such that sample containers in vinyl chloride service ore purged into a closed process system. Compliance with the provisions of 40 Chit Part 64 Subpart V demonstrates compliance with the provisions of this paragraph.
(6) Leak defection and etiniaatkm. Vinyl chloride emissions dee to leaks front equipment in vinyl chloride service arc to be minimized as follow*:
(i) A reliable end accurate vinyl chloride monitoring system shall be operated for detection of major leaks
and identification of the genual area of the plant where a leak is located. A vinyl chloride monitoring system means
a device which obtains air samples from one or more points on a continuous sequential basis and analyzes the samples with gas chromatography or. if the owner or operator assumes that all hydrocarbons measured are vinyl
chloride, with infrared spectrophotometry, flame ion detection, or an equivalent or alternative method.
The vinyl chloride monitoring system shall be operated according to a program developed by the plant owner
or operator. The owner or operator shall submit a description of the program to the Administrator within 45 days of the
effective date of these regulations,
unless a waiver of compliance is granted under 161.11, or the program has been approved and the Administrator does not request a review of the program.
Approval of a peojpam will be granted by the Administrator provided he find*:
(A) The loca lion and number of points to be monitored and the frequency of monitoring provided foe in the program are acceptable when they are compared
with the number of pieces of equipment in vinyl chloride service and size and physical layout of the plant.
(B) it contains a definition of leak which rs acceptable when compared
with the background concentrations of vinyl chloride in the areas of the plant to be monitored by the vinyl chloride monitoring system. Measurements of
background concentrations of vinyl chloride in the areas of the pfant to be monitored by the vinyl chloride monitoring system are to be included with the description of the program. The definition of leak for a give* plant may vary among the different areas within
the plant and afoo to change over tfene as background concentrations i* th* plant are reduced.
(C) It contains an acceptable plan of action to be taken, whe* a leek rs detected.
(D) It provides for an acceptable
calibration and maintenance schedule for the vinyl chloride monitoring system and portable hydrocarbon detector. Far
the vinyl chloride monitoring system, a daily span check is to be conducted with a concentration of vinyf chloride equal to the concentration defined as a leak according to paragraph (bXBfiiXBJ of this section. The calibration is to be dona with either
(1) A calibration gas mixture prepared from the gases specified in sections 5.2.1. and 5.22. of Test Method 106 and in accordance with section 7.1 of Test Method 106, or
[2) A calibration gaa cylinder standard containing the appropriate concentration of vinyl chloride. The gas composition of the calibration gas cylinder standard is to havs been
certified by the manufacturer. The manufacturer must have recommended a maximum, shelf life for each cylinder so
that the concentration does not change greater than .5 percent from the certified vahie. The date of gas cylinder preparation, certified vinyl chlorids concentration, and recoinmended maximum self life must have been, affixed tn the cylinder before shipment from the manufacturer to the buyer. If a gas chromatograph is used as the vinyl
chloride monitoring system, these gas mixtures may be directly used to
prepare a chromatograph calibration
curve as described in section 7.3 of Test
Method 106. Tbs requirements in section 5 2.3.1. and 5.222. of Test Method 106 for certification of cylinder standards
and for establishment and verification of
calibration standards are to be followed. (ii) For each process unit subject to
this subpart a formal leak detection and
repair program shall be implemented
consistent with Subpart V of this part,
except as provided in paragraph
(b)(8)(iii) of this, section. This program is
to be implemented within 90 days of the
effective date of these regulations,
unless a waiver of compliance is granted
under Soui. Except as provided in
paragraph (b)(a)lii)(E) of this section, an
owner or operator shall be exeatpl from
4 61.242-l(d). 4 61-242-7 (a), (h). and (c).
61.246. and 4 61.247 of Subpart V of
this part for any process unit in which
the percentage of leaking valves is
demonstrated to be leas than 10
percent, as determined is accordance
with the following;
(A) A performance test as specified ia
paragraph (b)(B)(u)(B) of this seelkin.
shall be conducted initially within 90
days ef the effective da te of these
regulations, annually, aqd at times
requested by the Administrator.
(B) For sack performance test, a
minimum of 200 or 90 percent.
j
whichever ia less, of the total valves la
VOC service (as defined in | 60.4U of
Subpart W of Part 80) within the
process unit shall be randomly selected
and monitored within 1 week by the
methods specified in { 61.245(b) of this
pari. If aa iaetrument reading of lQJDCfl
ppm or greater is measured, a leak is
detected. The leak percentage shall be
determined by dividing the number of
valves in VOC service for which leek*
are detected by the number of tested
valves in VOC service.
(C) If leak is detected, it shall be
repaired in aocsrdance with } 012*2-7
(d) and (e) of Subpart V of tbts pert.
(D) The results of the performance test
shall be submitted in writing to the
Administrator in the first quarterly
report following the performance test as
part of the reporting requirements of
4 61.70.
(E) Any process unit m which the
percentage of leaking valves is found to
be greater than 2.0 percent according to
the performance test prescribed in
paragraph (b)(8)(ii)(B) of this seclion
must comply with all provisions of
Subpart V of this part within 90 days
(iii) Open-ended valves or lines
located on multiple service process tines
which operate in vinyl chloride service
less than 10 percent of the time are
exempt from the requirements of
5 81.242-6 of Subpart V, provided the
open-ended valves or lines are
i
addressed In the monitoring system i
required by paragraph (b)(8)(f) of this
section. The Administrator may apply
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34912 Federal Register / Vol. 51, No. 189 / Tuesday. September 30, 1986 / Rules and Regulations
this exemption to other existing openended valves or lines that are demonstrated to require significant retrofit cost to comply with the
requirfet menftt s of f$t 81.2f4t 2-6 of Subpart V.
(9) * * * (ii) Any vinyl chloride removed from the inprocess wastewater in accordance with paragraph (b)(9)(i) of this section is to be ducted through a control system from which the concentration of vinyl chloride in the exhaust gases does not exceed 10 ppm (average for 3-hour period); or equivalent as provided in
} 01.86.
ft ft
(c) The requirements In paragraphs (b)(1), (b)(2), (b)(5), (b)(6). (b)(7) and (b)(8) of this section are to be incorporated into a standard operating procedure, and made available upon request for inspection by the Administrator. The standard operating procedure is to include provisions for measuring the vinyl chloride in equipment 4.75 m' (1,250 gal) in volume for which an emission limit is prescribed in { 61.65(b)(6)(i) after opening the equipment and using Test Method 100, a portable hydrocarbon detector, or an alternative method. The method of measurement is to meet the requirements in { 61,B7(g)(5)(i)(A] or (S)(5)(0(B).
9. Section 81.60 is revised to read as follows;
161.S4 Equivalent equipment and procedures,
Upon written application from an owner or operator, the Administrator may approve use of equipment or procedures which have been demonstrated to his satisfaction to be equivalent in terms of reducing vinyl chloride emissions to the atmosphere to those prescribed for compliance with a specific paragraph of this subpart.
10. By revising paragraphs (f). (g)(l)(i), (g)(2), (g)(3) introductory text, (g)(3)(i). (g)(3)(iii), (g)(5) introductory text, and by (g)(5)(ii) adding paragraphs (g)(8) and (h) in } 61.87 as follows:
J 61.67 Emission taste.
ft ft ft ft
(f) The owner or operator shall retain at the plant and make available, upon request, for inspection by the Administrator, for a minimum of 3 years, records of emission test results and other data needed to determine emissions.
(i) For each run. one sample is to be collected. The sampling site Is to be at least two stack or duct diameters
downstream and one half diameter upstream from any flow disturbance such as a bend, expansion, contraction, or visible flame. For a rectangular cross section an equivalent diameter is to be determined from the following equation:
equivalent diameter=2 (length) (width)/ length + width
The sampling point in the duct is to be at the centroid of the cross section. The sample is to be extracted at a rate proportional to the gas velocity at the sampling point. The sample is to contain a minimum volume of 50 liters corrected to standard conditions and is to be taken over a period as close to 1 hour as practicable.
ft ft ft
(2) Test Method 107 or Method 801 (incorporated by reference as specified in S 61.18) is to be used to determine the concentration of vinyl chloride in each Inprocess wastewater stream for which an emission limit is prescribed in S 81.85(b)(9)(i).
(3) When a stripping operation is used to attain the emission limits in { 61.64 (e) and (f). emissions are to be determined using Test Method 107 as follows:
(i) The number of strippers (or reactors used as strippers) and samples and the types and grades of resin to be sampled are to be determined by the Administrator for each individual plant at the time of the test based on the plant's operation.
(ii) * * * (iii) The corresponding quantity of material processed by each stripper (or reactor used as a stripper) is to be determined on a dry solids basis and by a method submitted to and approved by the Administrator.
(5) The reactor opening loss for which an emission limit is prescribed in $ 61.64(a)(2) is to be determined. The number of reactors for which the determination is to be made is to be specified by the Administrator for each individual plant at the time of the determination based on the plant's operation.
(i)*`* (ii) A calculation based on the number of evacuations, the vacuum involved, and the volume of gas in the reactor is hereby approved by the Administrator as an alternative method for determining reactor opening loss for postpolymerization reactors in the manufacture of bulk resins. Calculation
methods based on techniques other than repeated evacuation of the reactor may be approved by the Administrator for determining reactor opening loss for
postpolymerization reactors in the manufacture of bulk resins.
(6) For a reactor that is used as a
stripper, the emissions of vinyl chloride from reactor opening loss and all sources following the reactor used ai a
stripper for which an emission limit js
prescribed in 61.64(f) are to be determined. The number of reactors for which the determination is to be made ij
to be specified by the Administrator for each individual plant at the time of the determination based on the plant's operation.
(i) For each batch stripped in the reactor, the following measurements are to be made:
(A) The concentration (ppm) of vinyl chloride in resin after stripping, measured according to paragraph (g)(3) of this section;
(B) The reactor vacuum (mm Hg) at end of strip from plant instrument; and
(C) The reactor temperature (*C) at end of strip from plant instrument.
(ii) For each batch'stripped in the reactor, the following information is to
be determined: (A) The vapor pressure (mm Hg) of
water in the reactor at end of strip from the following table:
Rftaciei vapor
luro CQ
HrO
vapor pro* MM (mm
Roclor tomoor*
turo
l*C)
HtO vapor
pr* tur* (mm
*Q>
n4Cior t*mpr>
4tur*
fC)
HtO
pr**
w
|mm
*0)
40 55.3 41 563 42 61 5 42 64.6 44 66.3 4$ 71.9 4 756 47 79 6 41 637 49 660 SO 92 5 51 97 2 52 102 1 52 107 2 54 1125 55 1160 56 1236 57 1296 56 136 1 59 142.6 60 149 4 61 1564
62 1636 63 171.4 64 179 3 65 1675 66 196 1 67 205 0 66 214 2 69 2237 70 2337 71 2439 72 254 6 73 2657 74 277 2 '5 269 1 76 XI 4 77 314 1 78 327 3 79 341 0 60 355.1 61 3697 62 364 9 63 400 6
64 4161 as 4339 66 450* 67 466 7 66 467 1 69 5061 O 5259 91 5460 92 567 0 93 5669 94 6109 95 633 9 96 657 9 97 662 1 96 707 3 99 733 2 IX 760 0
(B) The partial pressure (mm Hg) of vinyi chloride in reactor at end of strip from the following equation:
PPVC- 760-RV-VPW
where: PPVC = partial pressure of vinyl chloride, in
mm Hg 760 = atmospheric pressure at 0 'C. in mm Hg R V = absolute value of reactor vacuum, in
mm Hg VPW = vapor pressure of water, in mm Hg
(C) The reactor vapor space volume (m1) at end of strip from the following equation:
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Federal Register / Vo!. 51. No. 189 / Tuesday. September 30, 1986 / Rales and Regulations 34913
PVCW RVSV-RC-WV----------
1.400
where: RVSVsrectof vapor space volume, in n>* RC* reactor capacity, in mJ WV* volume of water in reactor from recipe,
inm* PVCW=dry weight of polyvinyl chloride in
reactor from recipe, in kg
1.400 -- typical density of polyvinylchloride, in kg/m*
(iii) For each batch stripped in the reactor, the combined reactor opening loss and emissions from all sources following the reactor used as a stripper is to be determined using the following equation:
(PPVC)(RVSV)(i,CXg)* 3 C=(PPMVCKlO-t+
(PVCVV)(273 + RT)
where:
C-g vinyf chtorideAg polyvinyl chloride product
PPMVC concentre thn of vinyf rWanda in rewit after sofpplag. ppm
VT nevoMn bdir lor ppa PPVCspatial pream of riiyt chloride
drt mined accoeding to paragraph (ptfflUiiUgl ot this esetioa. in mm Kg RVSV - reactor vapoe apace volume
determined according to paragraph fgHGlfuXQ of th>a section. in m* 1.002-ideal gat constant ing-- `Kfaun Hg-m*for etrryl chloride PVCW--dry wojht at potyvinjrt chloride la reacta freer recipe, in kg 271---coveiriao factor fat 'C to `K RT-reactor temperature, in "C
(h)(1) Each piece of equipment within a process unit that can reasonably contain equipment in vinyl chloride service is presumed to be in vinyf chloride service unless an owner or operator demonstrates that the piece of equipment is not in vinyl chloride service. For a piece of equipment te be considered not in vinyl chloride service, it must be determined that the percent vinyl chloride content can be reasonably expected not to exceed 10 percent by weight for liquid streams or contained liquid volumes and 10 percent by volume for gas streams or contained gas volumes, which also includes gas volumes above liquid streams or contained liquid volumes. For purposes of determining the percent vinyl chloride content of the process fluid that is contained in or contacts equipment, procedures that conform to the methods described in ASTM Method D-2267 (incorporated by reference as specified in 61.18) shall be used.
(2)(i( An owner or operator may use engineering judgment rather than the procedures in paragraph (h)(1) of this
section to demonstrate that the percent
vinyl chloride content does not exceed 10 percent by weight for liquid streams and 10 percent by volume for gas stream*, provided that the engineering judgment demonstrates that the vinyl
chloride content clearly does not exceed 10 percent. When an owner or operator and the Administrator do not a(?ee on whether a piece of equipment is not in vinyl chloride service, however, the procedure* in paragraph (b)(ll of this section shall be used to resolve the disagreement
(it) If an owner or operator determines that e piece of equipment is in vinyl chloride service, the determination can be revised only after following the procedures in paragraph [h)pj of this section.
(3) Semples used in determining the percent vinyl chloride content shall be representative of the process fluid that is contained in or contacts the equipment
11. By adding paragraphs (d), (e) and (f} to j 61.96 as follows:
3 61.66 Emission monitoring.
t
(d) When exhaust gas(est having emission limits that are subject to the requirement of paragraph (a) of tins section, are emitted to the atmosphere without passing through the control system and required vinyl chloride monitoring system, the vinyl chloride content of the emission shall be calculated (in units of each applicable emission limit) by best practical engineering judgment baaed on the discharge duration and knows VC concentrations in the affected equipment as determined in accordance with 3 61.67(h) or other acceptable method.
(e) For each 3-hour period, the vinyl chloride content of emissions subject to the requirements of paragraphs (a) and (d) of this section shall be averaged (weighted according to the proportion of
time that emissions were continuously
monitored and that emissions bypassed the continuous monitor) tor purpose* of reporting excess emissions under 3 61.70(c)(1).
ff) For each vinyl chloride emission to the atmosphere determined in accordance with paragraph (e) of this section to be in excess of the applicable emission limits, the owner or operator shall record the identity of the source(s), the date. time, and duration of the excess emission, the cause of the excess emission, and the approximate total vinyl chloride loss during the excess emission, and the method used for determining the vinyl chloride loss. This information shall be retained and made available for inspection by the Administrator as required by 3 81.71(a).
12. In 3 61.70 by revising the section title from "Semiannual report" ta "Reporting", and by revising paragraph* (a), (c)(1), (c)(2) introductory text. (c)(2)(iii). (c)(2)(iv), (c)(2)(v), (c)(2)(vi) introductory text, and (e)(3) and also by adding (c)(4) to read as follows:
itt-T* rtaporfhg.
(a)(1) The owner or operator of any source to which this subpart applfea shaR submit to the Administrator on March 15. fun* 15. September 15, and December 15 of each year a repost in writing containing the information required by thi* section. The first report is to be submitted following the first full 3-month repeetieg period after the initial report ia submitted.
(2) fat the cate ef aa existing source, the approved reporting schedule shah be used In addition, quarterly reports shall be submitted exactly 3 month* following the current reporting date*.
(1) The owner or operator shall include in the report a record of the vinyl chloride content of emissions for each 3-hour period during which average emissions are in excess of the emission limits in & 61.62 (a) or (b). 5 81 63(a). or { 61.64 (a)(1). (b), (c). or (d). or during which average emissions are in excess of the emission limits specified for any control system to which reactor emissions are required to be ducted in 3 61.64(a)(2) or to which fugitive emissions are required to be ducted in 5 61.65(b)(i)(ii), (b)(2). (b)(5). (b)(6Uii). or (b)(9)(ii). The number o 3-hour periods for which average emissions were determined during the reporting period shall be reported If emissions in excess of the emission limits are not detected, the report shall contain a statement that no excess emissions have been detected. The emissions are to be determined in accordance with 3 61.66(e).
(2) In polyvinyl chloride plants fur which a stripping operation is used to attain the emission level proscribed in 3 61.64(e), the owner or operator shall
SPI-06147
r
34914 Federal Register / Vol. 51, No. 169 / Tuesday. September 30, 1986 / Rules and Regulation,
include in the report a record of the vinyl chloride content in the polyvinyl
record of any 24-hour average resin vinyl chloride concentration, as
processed in each stripper batch ~ recorded and identified by resin i">Q **
chloride resin.
(!)
(ii) * * (iii) The vinyl chloride content in each sample is to be determined by Test Method 107 as prescribed in S 81.87(g)(3). (iv) [Reserved)
(v) The report to the Administrator by the owner or operator is to include a
determined in this paragraph, in excess of the limits prescribed in 61.84(e). The vinyl chloride content found in each
sample required by paragraphs (c)(2)(i) and (c)(2)(ii) of this section shall be averaged separately for each type of resin, over each calendar day and
weighted according to the quantity of each grade of resin processed by the stripper(s) that calendar day. according
to the following equation:
and grade and the date and tim,
batch is completed.
**
(ii) The vinyl chloride content in
sample is to be determined by Test*^ Method 107 as prescribed in 5 81.87(g)(3).
(iii) The combined emissions (rom reactor opening loss and all sources following the reactor used as a stripne are to be determined for each batch
stripped in a reactor according to the
procedure prescribed in 1 61.67(g)(e),
A,--
n I Pa Mo. 1-1
Q
Pa. Mas+Pas Mas + . . . Pq* Mo* Or
(iv) The report to the Administrator bv the owner or operator is to include e 1
record of any 24-hour average combined reactor opening loss and emissions from all sources following the reactor used is
when: A-24-hour average concentration of type T
resin In ppm (dry weight basis) Q -Total production of type T resin over the
24-hour period, in kg. T-Type of resin. M - Concentration of vinyl chloride in one
sample of grade Ci resin in ppm. P-Production of grade Gi resin represented
by the sample, in kg. Gi-Grade of resin: e.g- Cl. C2, G3. n--Total number of grades of resin produced
during the 24-hour period.
The number of 24-hour average . concentrations for each resin type
{ 61.84(f), the owner or operator shall include in the report a record of the vinyl chloride emissions from reactor opening loss and all sources following the reactor used as a stripper.
(i) One representative sample of polyvinyl chloride resin is to be taken from each batch of each grade of resin immediately following the completion of the stripping operation, and identified by resin type and grade and the date and time the batch is completed. The corresponding quantity of material
a stripper as determined in this paragraph, in excess of the limits prescribed in f 61.84(f). The combined reactor opening loss and emissions from all sources following the reactor used as a stripper associated with each batch are to be averaged separately for each type of resin, over each calendar day and weighted according to the quantity of each grade of resin stripped in reactora that calendar day as follows:
For each type of resin (suspension, dispersion, latex, bulk, other], the following calculation is to be performed:
determined during the reporting period
shall be reported. If no 24-hour average
resin vinyl chloride concentrations In excess of the limits prescribed in 81.84(e) are measured, the report shall state that no excess resin vinyl chloride
n
ZPoiCc. i-1
At* Or
PaiCoi+P<xCo+ +PoCo Or
concentrations were measured.
(vi) The owner or operator shall retain at the source and make available for inspection by (he Administrator for a minimum of 3 years records of all data needed to furnish the information required by paragraph (c)(Z)(v) of this section. The records are to contain the following information:
(A)* * *
(B) * * * (3) The owner or operator shall include in the report a record of any emissions from each reactor opening in excess of the emission limits prescribed in { 81.84(a)(2). Emissions are to be determined in accordance with S 61.87(g)(5). except that emissions for each reactor are to be determined. The number of reactor openings during the reporting period shall be reported. If
emissions in excess of the emission
limits are not detected, the report shall
Include a statement that excess emissions have not been detected.
(4) In polyvinyl chloride plants for which stripping in the reactor is used to
attain the emission level prescribed in
where: A--24-hour average combined reactor
opening loti end emission* from all sources following the reactor used as a stripper, in g vinyl chloride/kg product (dry weight basis). Q--Total production of resin in batches for which stripping is completed during the
24-hour period, in kg. T-Type of resin. C--Average combined reactor opening loea
and emissions from all sources following the reactor used as a stripper of all batches of grade Gi resin for which stripping is completed during the 24-hour
period, in g vinyl chloride/kg product (dry weight basis) (determined according to procedure prescribed in I 61.87(g)(6)). P=Production of grade Ci resin in the batches for which C is determined, in kg. Ci--Grade of resin e.g., Ci. G>. and C. n--Total number of grades of resin in batches for which stripping is completed during
the 24-hour period.
The number of 24-hour average emissions determined during the reporting period shall be reported. If no 24-hour average combined reactor
opening loss and emissions from all
sources following the reactor used a stripper in excess of the limits prescribed in { 61.84(f) are determined, the report shall state that no excess vinyl chloride emissions were determined.
11. By revising paragraph (a) introductory text of } 61.71 as follows:
5 61.71 Recordkeeping.
(a) The owner or operator of any source to which this subpart applies shall retain the following information at the source and make it available for inspection to the Administrator for a minimum of 3 years: e t
14. By revising paragraph (a)(4) Bnd adding paragraph (b)(1) to 5 61.18 as follows:
} 61.11 Incorporation by Reference. *
(a) * * * (4) ASTM 02287-68 (reapproved 1978) Aromatics in Light Naphthas and
SPI-06148
(
IFederal Register / Vol. 51, No. 189 Tuesday, September 30, 1986 / Rules and Regulations
34915
Aviation Gasoline by Gas Chromatography, IBR approved June 0, 1984, for 61.245(d)(1) and IBR approved September 30. I960 for 81.67(h)(1). **e
(b) The following material is available from the U.S. EPA Environmental Monitoring and Support Laboratory, Cincinnati, Ohio 45268.
(1) Method 801. Test Method for Purgeable Halocarbons, July 1982, IBR approved September 30,1986 for
81.67(g)(2). 15. By revising the definition "volatile
hazardous air pollutants" in { 61.241 of Subpart V to read as follows:
} 61.241 Definitions.
"Volatile hazardous air pollutant" or "VHAP" means a substance regulated under this part for which a standard for equipment leaks of the substance has been proposed and promulgated. Benzene is a VHAP. Vinyl chloride is a VHAP.
16. By revising the definition of "connector" in } 61.241 of Subpart V as follows;
{61.241 Definitions.
* e
"Connector" means flanged, screwed, welded, or other joined fittings used to connect two pipe lines or a pipe line and a piece of equipment. For the purpose of reporting and recordkeeping, connector means flanged fittings that are not covered by insulation or other materials that prevent location of the fittings.
*
[FR Doc. 86-22032 Filed 9-29-86: 8:45 am)
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