CSR 45-18-16
CSR 45-18-16. Inconsistency between rules
Cite as W. Va. Code R. § 45-18-16
§45-18-16. Inconsistency between rules.
16.1. In the event of any inconsistency between this rule and any other rule of the Division of Air Quality, the inconsistency shall be resolved by the determination of the Secretary, and the determination shall be based upon the application of the more stringent provision, term, condition, method or rule.
TABLE 45-18A
Emissions limits for small, medium, and large HMIWI at designated facilities as set forth in 45CSR§ 18-7.2.1.a.
1Except as allowed under 40 CFR § 60.56c(c) for HMIWI equipped with CEMS.
2Does not include CEMS and approved alternative non-EPA test methods allowed under 40 CFR § 60.56c(b).
TABLE 45-18B
Emissions limits for small, medium, and large HMIWI at designated facilities as set forth in 45CSR§§ 18-7.2.1.a and 7.2.1.b.
1Except as allowed under 40 CFR § 60.56c(c) for HMIWI equipped with CEMS.
2Does not include CEMS and approved alternative non-EPA test methods allowed under 40 CFR § 60.56c(b).
TABLE 45-18C
Emissions limits for small HMIWI which meet the criteria under 45CSR§ 18-7.3.2.a.
1Except as allowed under 40 CFR § 60.56c(c) for HMIWI equipped with CEMS.
2Does not include CEMS and approved alternative non-EPA test methods allowed under 40 CFR § 60.56c(b).
TABLE 45-18D
Emissions limits for small HMIWI which meet the criteria under 45CSR§ 18-7.3.2.b.
1Except as allowed under 40 CFR § 60.56c(c) for HMIWI equipped with CEMS.
2Does not include CEMS and approved alternative non-EPA test methods allowed under 40 CFR § 60.56c(b).
TABLE 45-18E
Increments of progress and compliance schedules for existing CISWI units
a Site-specific schedules can be used at the discretion of the Secretary.
b The date can be no later than 3 years after the effective date of state plan approval or December 1, 2005 for CISWI units that commenced construction on or before November 30, 1999. The date can be no later than 3 years after the effective date of approval of a revised state plan or February 7, 2018 for CISWI units that commenced construction on or before June 4, 2010.
TABLE 45-18F
Emission limits for existing commercial and industrial solid waste incinerators that apply before February 7, 2018b
aAll emission limitations (except for opacity) are measured at 7 percent oxygen, dry basis at standard conditions.
bApplies only to incinerators subject to the CISWI standards through a state plan prior to June 4, 2010. The date specified in the state plan can be no later than 3 years after the effective date of approval of a revised state plan or February 7, 2018.
TABLE 45-18G
Operating limits for wet scrubbers
a Calculated each hour as the average of the previous 3 operating hours.
TABLE 45-18H
Toxic equivalency factors
TABLE 45-18I
Summary of reporting requirements for existing CISWI unitsa
a This table is only a summary, see the referenced subdivisions and paragraphs for the complete requirements.
TABLE 45-18J
Emission limits for existing commercial and industrial solid waste incinerators that apply on and after February 7, 2018a
a The date specified in the state plan can be no later than 3 years after the effective date of approval of a revised state plan or February 7, 2018.
b All emission limitations are measured at 7 percent oxygen, dry basis at standard conditions. For dioxins/furans, the owner or operator shall meet either the total mass basis limit or the toxic equivalency basis limit.
c In lieu of performance testing, the owner or operator may use a CEMS or, for mercury, an integrated sorbent trap monitoring system, to demonstrate initial and continuing compliance with an emissions limit, as long as the owner or operator complies with the CEMS or integrated sorbent trap monitoring system requirements applicable to the specific pollutant in 9.9.1 through 9.9.27 and 9.10.1 through 9.10.20. As prescribed in 9.9.21, if the owner or operator uses a CEMS or integrated sorbent trap monitoring system to demonstrate compliance with an emissions limit, the averaging time is a 30-day rolling average of 1-hour arithmetic average emission concentrations.
TABLE 45-18K
Emission limits that apply to energy recovery units after February 7, 2018 a
a The date specified in the state plan can be no later than 3 years after the effective date of approval of a revised state plan or February 7, 2018.
b All emission limitations (except for opacity) are measured at 7 percent oxygen, dry basis at standard conditions. For dioxins/furans, the owner or operator shall meet either the total mass basis limit or the toxic equivalency basis limit.
c In lieu of performance testing, the owner or operator may use a CEMS or, for mercury, an integrated sorbent trap monitoring system, to demonstrate initial and continuing compliance with an emissions limit, as long as the owner or operator complies with the CEMS or integrated sorbent trap monitoring system requirements applicable to the specific pollutant in 9.9.1 through 9.9.26 and 9.10.1 through 9.10.20. As prescribed in 9.9.21, if the owner or operator uses a CEMS or integrated sorbent trap monitoring system to demonstrate compliance with an emissions limit, the averaging time is a 30-day rolling average of 1-hour arithmetic average emission concentrations.
TABLE 45-18L
Emission limits that apply to waste-burning kilns after February 7, 2018a
a The date specified in the Sate Plan can be no later than 3 years after the effective date of approval of a revised state plan or February 7, 2018.
b All emission limitations are measured at 7 percent oxygen (except for CEMS and integrated sorbent trap monitoring system data during startup and shutdown), dry basis at standard conditions. For dioxins/furans, the owner or operator shall meet either the total mass basis limit or the toxic equivalency basis limit.
c In lieu of performance testing, the owner or operator may use a CEMS or, for mercury, an integrated sorbent trap monitoring system, to demonstrate initial and continuing compliance with an emissions limit, as long as the owner or operator complies with the CEMS or integrated sorbent trap monitoring system requirements applicable to the specific pollutant in 9.9.1 through 9.9.25 and 9.10.1 through 9.10.20. As prescribed in 9.9.21, if the owner or operator uses a CEMS or integrated sorbent trap monitoring system to demonstrate compliance with an emissions limit, the averaging time is a 30-day rolling average of 1-hour arithmetic average emission concentrations.
d Alkali bypass and in-line coal mill stacks are subject to performance testing only, as specified in paragraph 9.9.25.c. They are not subject to the CEMS, integrated sorbent trap monitoring system, or CPMS requirements that otherwise may apply to the main kiln exhaust.
TABLE 45-18M
Emission limits that apply to small, remote incinerators after February 7, 2018a
a The date specified in the state plan can be no later than 3 years after the effective date of approval of a revised state plan or February 7, 2018.
b All emission limitations (except for opacity) are measured at 7 percent oxygen, dry basis at standard conditions. For dioxins/furans, the owner or operator shall meet either the total mass basis limit or the toxic equivalency basis limit.
c In lieu of performance testing, the owner or operator may use a CEMS or, for mercury, an integrated sorbent trap monitoring system, to demonstrate initial and continuing compliance with an emissions limit, as long as the owner or operator complies with the CEMS or integrated sorbent trap monitoring system requirements applicable to the specific pollutant in 9.9.1 through 9.9.26 and 9.10.1 through 9.10.20. As prescribed in 9.9.21, if the owner or operator uses a CEMS or integrated sorbent trap monitoring system to demonstrate compliance with an emissions limit, the averaging time is a 30-day rolling average of 1-hour arithmetic average emission concentrations.
Pollutant Units
(7 percent oxygen, dry basis) Emissions Limits Emissions Limits Emissions Limits Averaging Time1 Compliance Method2
Pollutant Units
(7 percent oxygen, dry basis) HMIWI Size HMIWI Size HMIWI Size Averaging Time1 Compliance Method2
Pollutant Units
(7 percent oxygen, dry basis) Small Medium Large Averaging Time1 Compliance Method2
Particulate matter Milligrams per dry standard cubic meter (mg/dscm) (grains per dry standard cubic foot (gr/dscf)) 115 (0.05) 69
(0.03) 34 (0.015) 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 5 of
appendix A-3 of 40CFR60, or
EPA Reference Method 26A or 29 of
appendix A-8 of 40CFR60.
Carbon monoxide Parts per million by volume (ppmv) 40 40 40 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 10 or 10B of appendix A-4 of 40CFR60.
Dioxins/furans Nanograms per dry standard cubic meter total dioxins/furans (ng/dscm) (grains per billion dry standard cubic feet (gr/109dscf)) or ng/dscm TEQ (gr/109dscf) 125 (55)
or
2.3 (1.0) 125 (55)
or
2.3 (1.0) 125 (55)
or
2.3 (1.0) 3-run average
(4-hour minimum
sample time per run) EPA Reference Method 23 of
appendix A-7 of 40CFR60.
Hydrogen chloride ppmv or percent reduction 100
or 93% 100
or 93% 100
or 93% 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 26 or 26A of appendix A-8 of 40CFR60.
Sulfur dioxide ppmv 55 55 55 3-run average
(1-hour minimum sample time per run) EPA Reference Method 6 or 6C of appendix A-4 of 40CFR60.
Nitrogen oxides ppmv 250 250 250 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 7 or 7E of appendix A-4 of 40CFR60.
Lead mg/dscm (grains per thousand dry standard cubic feet (gr/103dscf)) or percent reduction 1.2 (0.52)
or 70% 1.2 (0.52)
or 70% 1.2 (0.52)
or 70% 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Cadmium mg/dscm (gr/103dscf) or percent reduction 0.16 (0.07)
or 65% 0.16 (0.07)
or 65% 0.16 (0.07)
or 65% 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Mercury mg/dscm (gr/103dscf) or percent reduction 0.55 (0.24)
or 85% 0.55 (0.24)
or 85% 0.55 (0.24)
or 85% 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Pollutant Units
(7 percent oxygen, dry basis) Emissions Limits Emissions Limits Emissions Limits Averaging Time1 Compliance Method2
Pollutant Units
(7 percent oxygen, dry basis) HMIWI Size HMIWI Size HMIWI Size Averaging Time1 Compliance Method2
Pollutant Units
(7 percent oxygen, dry basis) Small Medium Large Averaging Time1 Compliance Method2
Particulate matter Milligrams per dry standard cubic meter (mg/dscm) (grains per dry standard cubic foot (gr/dscf)) 66 (0.029) 46 (0.020) 25 (0.011) 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 5 of
appendix A-3 of 40CFR60, or EPA Reference Method 26A or 29 of appendix A-8 of 40CFR60.
Carbon monoxide Parts per million by volume (ppmv) 20 5.5 11 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 10 or 10B of appendix A-4 of 40CFR60.
Dioxins/furans Nanograms per dry standard cubic meter total dioxins/furans (ng/dscm) (grains per billion dry standard cubic feet (gr/109dscf)) or ng/dscm TEQ (gr/109dscf) 16 (7.0)
or 0.013 (0.0057) 0.85 (0.37)
or 0.020 (0.0087) 9.3 (4.1)
or 0.054
(0.024) 3-run average
(4-hour minimum
sample time per run) EPA Reference Method 23 of appendix A-7 of 40CFR60.
Hydrogen chloride ppmv 44 7.7 6.6 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 26 or 26A of appendix A-8 of 40CFR60.
Sulfur dioxide ppmv 4.2 4.2 9.0 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 6 or 6C of appendix A-4 of 40CFR60.
Nitrogen oxides ppmv 190 190 140 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 7 or 7E of appendix A-4 of 40CFR60.
Lead mg/dscm (grains per thousand dry standard cubic feet (gr/103dscf)) 0.31 (0.14) 0.018 (0.0079) 0.036
(0.016) 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 29 of appendix A-8 of 40CFR60.
Cadmium mg/dscm (gr/103dscf) 0.017 (0.0074) 0.013 (0.0057) 0.0092 (0.0040) 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 29 of appendix A-8 of 40CFR60.
Mercury mg/dscm (gr/103dscf) 0.014 (0.0061) 0.025
(0.011) 0.018 (0.0079) 3-run average
(1-hour minimum
sample time per run) EPA Reference Method 29 of appendix A-8 of 40CFR60.
Pollutant Units
(7 percent oxygen, dry basis) HMIWI
Emissions Limits Averaging Time1 Compliance Method2
Particulate matter mg/dscm (gr/dscf) 197 (0.086) 3-run average
(1-hour minimum sample time per run) EPA Reference Method 5 of appendix A-3 of
40CFR60, or EPA Reference Method 26A or 29 of appendix A-8 of 40CFR60.
Carbon monoxide ppmv 40 3-run average
(1-hour minimum sample time per run) EPA Reference Method 10 or 10B of
appendix A-4 of 40CFR60.
Dioxins/furans ng/dscm total dioxins/furans (gr/109dscf) or ng/dscm TEQ (gr/109dscf) 800 (350) or
15 (6.6) 3-run average
(4-hour minimum sample time per run) EPA Reference Method 23 of
appendix A-7 of 40CFR60.
Hydrogen chloride ppmv 3,100 3-run average
(1-hour minimum sample time per run) EPA Reference Method 26 or 26A of
appendix A-8 of 40CFR60.
Sulfur dioxide ppmv 55 3-run average
(1-hour minimum sample time per run) EPA Reference Method 6 or 6C of
appendix A-4 of 40CFR60.
Nitrogen oxides ppmv 250 3-run average
(1-hour minimum sample time per run) EPA Reference Method 7 or 7E of
appendix A-4 of 40CFR60.
Lead mg/dscm (gr/103dscf) 10 (4.4) 3-run average
(1-hour minimum sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Cadmium mg/dscm (gr/103dscf) 4 (1.7) 3-run average
(1-hour minimum sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Mercury mg/dscm (gr/103dscf) 7.5 (3.3) 3-run average
(1-hour minimum sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Pollutant Units
(7 percent oxygen, dry basis) HMIWI
Emissions Limits Averaging Time1 Compliance Method2
Particulate matter mg/dscm (gr/dscf) 87 (0.038) 3-run average
(1-hour minimum sample time per run) EPA Reference Method 5 of appendix A-3 of
40CFR60, or EPA Reference Method 26A or 29 of appendix A-8 of 40CFR60.
Carbon monoxide ppmv 20 3-run average
(1-hour minimum sample time per run) EPA Reference Method 10 or 10B of
appendix A-4 of 40CFR60.
Dioxins/furans ng/dscm total dioxins/furans (gr/109dscf) or ng/dscm TEQ (gr/109dscf) 240 (100)
or 5.1 (2.2) 3-run average
(4-hour minimum sample time per run) EPA Reference Method 23 of
appendix A-7 of 40CFR60.
Hydrogen chloride ppmv 810 3-run average
(1-hour minimum sample time per run) EPA Reference Method 26 or 26A of
appendix A-8 of 40CFR60.
Sulfur dioxide ppmv 55 3-run average
(1-hour minimum sample time per run) EPA Reference Method 6 or 6C of
appendix A-4 of 40CFR60.
Nitrogen oxides ppmv 130 3-run average
(1-hour minimum sample time per run) EPA Reference Method 7 or 7E of
appendix A-4 of 40CFR60.
Lead mg/dscm (gr/103dscf) 0.50 (0.22) 3-run average
(1-hour minimum sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Cadmium mg/dscm (gr/103dscf) 0.11 (0.048) 3-run average
(1-hour minimum sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Mercury mg/dscm (gr/103dscf) 0.0051 (0.0022) 3-run average
(1-hour minimum sample time per run) EPA Reference Method 29 of
appendix A-8 of 40CFR60.
Comply with these increments of progress By no later thana
Increment 1. -- The owner or operator of an existing CISWI unit shall submit a final control plan to the Secretary as expeditiously as practicable after approval of the West Virginia § 111(d)/129 plan. February 7, 2016
Increment 2. -- The owner or operator of an existing CISWI unit shall achieve final compliance as expeditiously as practicable after approval of the West Virginia § 111(d)/129 plan. February 7, 2018; or 3 years after the effective date of West Virginia § 111(d)/129 plan approval.b
Air pollutant Emission limit a Averaging time Performance test methods
Cadmium 0.004 milligrams per dry standard cubic meter. 3-run average (1-hour minimum sample time per run). Performance test (Method 29 of 40CFR60, appendix A)
Carbon monoxide 157 parts per million by dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 10, 10A, or 10B, of 40CFR60, appendix A)
Dioxins/furans (toxic equivalency basis) 0.41 nanograms per dry standard cubic meter. 3-run average (1-hour minimum sample time per run). Performance test (Method 23 of 40CFR60, appendix A)
Hydrogen chloride 62 parts per million by dry volume. 3-run average (For Method 26, collect a minimum volume of 120 liters per run. For Method 26A, collect a minimum volume of 1 dry standard cubic meter per run). Performance test (Method 26 or 26A of 40CFR60, appendix A-8)
Lead 0.04 milligrams per dry standard cubic meter. 3-run average (1-hour minimum sample time per run). Performance test (Method 29 of 40CFR60, appendix A)
Mercury 0.47 milligrams per dry standard cubic meter. 3-run average (1-hour minimum sample time per run). Performance test (Method 29 or 30B of 40CFR60, appendix A-8) or ASTM D6784–02 (reapproved 2008)
Nitrogen oxides 388 parts per million by dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 7 or 7E of 40CFR60, appendix A-4)
Opacity 10 percent 3 1-hour blocks consisting of 10 6-minute average opacity values. Performance test (Method 9 of 40CFR60, appendix A-4)
Particulate matter 70 milligrams per dry standard
cubic meter. 3-run average (1-hour minimum sample time per run). Performance test (Method 5 or 29 of 40CFR60, appendix A)
Sulfur dioxide 20 parts per million by dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 6 or 6C of 40CFR60, appendix A)
For these operating parameters You shall establish these operating limits And monitor using these minimum frequencies And monitor using these minimum frequencies And monitor using these minimum frequencies
For these operating parameters You shall establish these operating limits Data measurement Data recording Averaging time
Charge rate Maximum charge rate Continuous Every hour Daily (batch units).
3-hour rolling (continuous and intermittent units)a
Pressure drop across the wet scrubber or amperage to wet scrubber Minimum pressure drop or amperage Continuous Every 15 minutes 3-hour rollinga
Scrubber liquor flow rate Minimum flow rate Continuous Every 15 minutes 3-hour rollinga
Scrubber liquor pH Minimum pH Continuous Every 15 minutes 3-hour rollinga
Dioxin/Furan isomer Toxic equivalency factor
2,3,7,8-tetrachlorinated dibenzo-p-dioxin 1
1,2,3,7,8-pentachlorinated dibenzo-p-dioxin 0.5
1,2,3,4,7,8-hexachlorinated dibenzo-p-dioxin 0.1
1,2,3,7,8,9-hexachlorinated dibenzo-p-dioxin 0.1
1,2,3,6,7,8-hexachlorinated dibenzo-p-dioxin 0.1
1,2,3,4,6,7,8-heptachlorinated dibenzo-p-dioxin 0.01
octachlorinated dibenzo-p-dioxin 0.001
2,3,7,8-tetrachlorinated dibenzofuran 0.1
2,3,4,7,8-pentachlorinated dibenzofuran 0.5
1,2,3,7,8-pentachlorinated dibenzofuran 0.05
1,2,3,4,7,8-hexachlorinated dibenzofuran 0.1
1,2,3,6,7,8-hexachlorinated dibenzofuran 0.1
1,2,3,7,8,9-hexachlorinated dibenzofuran 0.1
2,3,4,6,7,8-hexachlorinated dibenzofuran 0.1
1,2,3,4,6,7,8-heptachlorinated dibenzofuran 0.01
1,2,3,4,7,8,9-heptachlorinated dibenzofuran 0.01
octachlorinated dibenzofuran 0.001
Report Due date Contents Reference
Waste Management Plan No later than the date specified in Table 45-18E for submittal of the final control plan Waste management plan. subdivision 9.12.2
Initial Test Report No later than 60 days following the initial performance test Complete test report for the initial performance test.
The values for the site-specific operating limits.
Installation of bag leak detection systems for fabric filters. subdivision 9.12.3
Annual Report No later than 12 months following the submission of the initial test report. Subsequent reports are to be submitted no more than 12 months following the previous report. Name and address.
Statement and signature by responsible official.
Date of report.
Values for the operating limits.
Highest recorded 3-hour average and the lowest 3-hour average, as applicable (or 30-day average, if applicable), for each operating parameter recorded for the calendar year being reported.
If a performance test was conducted during the reporting period, the results of the test.
If a performance test was not conducted during the reporting period, a statement that the requirements of paragraph 9.9.27.c were met.
Documentation of periods when all qualified CISWI unit operators were unavailable for more than 8 hours but less than 2 weeks.
If you are conducting performance tests once every 3 years consistent with paragraph 9.9.27.c, the date of the last 2 performance tests, a comparison of the emission level you achieved in the last 2 performance tests to the 75 percent emission limit threshold required in paragraph 9.9.27.c and a statement as to whether there have been any operational changes since the last performance test that could increase emissions.
Any malfunction, deviation, or continuous monitoring system out of control periods information as specified in 9.12.5.k through 9.12.5.o.
Fuel input information for energy recovery unit subcategory verification as specified in 9.12.5.p. subdivisions 9.12.4 and 9.12.5
Emission Limitation or
Operating Limit Deviation Report. By August 1 of that year for data collected during the first half of the calendar year. By February 1 of the following year for data collected during the second half of the calendar year. Dates and times of deviation.
Averaged and recorded data for those dates.
Duration and causes of each deviation and the corrective actions taken.
Copy of operating limit monitoring data and any test reports.
Dates, times and causes for monitor downtime incidents. subdivisions 9.12.6 and 9.12.7
Qualified Operator Deviation Notification Within 10 days of deviation Statement of cause of deviation.
Description of efforts to have an accessible qualified operator.
The date a qualified operator will be accessible. paragraph 9.12.8.a
Qualified Operator Deviation Status Report Every 4 weeks following deviation Description of efforts to have an accessible qualified operator.
The date a qualified operator will be accessible.
Request for approval to continue operation. paragraph 9.12.8.b
Qualified Operator Deviation Notification of Resumed Operation Prior to resuming operation Notification that you are resuming operation. paragraph 9.12.8.c
Air pollutant Emission limitb Averaging timec Performance test methodsc
Cadmium 0.0026 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 2 dry standard cubic meters). Performance test (Method 29 of 40CFR60, appendix A-8). Use ICPMS for the analytical finish.
Carbon monoxide 17 parts per million by dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 10 at 40CFR60, appendix A-4).
Dioxins/furans (total mass basis) 4.6 nanograms per dry standard cubic meter. 3-run average (collect a minimum volume of 2 dry standard cubic meters). Performance test (Method 23 at 40CFR60, appendix A-7).
Dioxins/furans (toxic equivalency basis) 0.13 nanograms per dry standard cubic meter. 3-run average (collect a minimum volume of 2 dry standard cubic meters). Performance test (Method 23 of 40CFR60, appendix A-7).
Hydrogen chloride 29 parts per million by dry volume. 3-run average (For Method 26, collect a minimum volume of 60 liters per run. For Method 26A, collect a minimum volume of 1 dry standard cubic meter per run). Performance test (Method 26 or 26A of 40CFR60, appendix A-8).
Lead 0.015 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 2 dry standard cubic meters). Performance test (Method 29 of 40CFR60, appendix A-8). Use ICPMS for the analytical finish.
Mercury 0.0048 milligrams per dry standard cubic meter. 3-run average (For Method 29 and ASTM D6784–02 (Reapproved 2008), collect a minimum volume of 2 dry standard cubic meters per run. For Method 30B, collect a minimum sample as specified in Method 30B at 40CFR60, appendix A). Performance test (Method 29 or 30B of 40CFR60, appendix A-8) or ASTM D6784–02 (Reapproved 2008).
Nitrogen oxides 53 parts per million by dry volume. 3-run average (for Method 7E, 1-hour minimum sample time per run). Performance test (Method 7 or 7E of 40CFR60, appendix A-4).
Particulate matter filterable 34 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 1 dry standard cubic meter). Performance test (Method 5 or 29 of 40CFR60, appendix A-3 or appendix A-8).
Sulfur dioxide 11 parts per million by dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 6 or 6C of 40CFR60, appendix A-4).
Fugitive ash Visible emissions for no more than 5% of the hourly observation period. 3 1-hour observation periods. Visible emission test (Method 22 at 40CFR60, appendix A-7).
Air pollutant Emission limitation b Emission limitation b Averaging timec Performance test methodsc
Air pollutant Liquid/Gas Solids Averaging timec Performance test methodsc
Cadmium 0.023 milligrams per dry standard cubic meter. Biomass - 0.0014 milligrams per dry standard cubic meter.
Coal - 0.0017 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 2 dry standard cubic meters). Performance test (Method 29 of 40CFR60, appendix A-8). Use ICPMS for the analytical finish.
Carbon monoxide 35 parts per million by dry volume. Biomass - 260 parts per
million dry volume.
Coal - 95 parts per million dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 10 at 40CFR60, appendix A-4).
Dioxins/furans (total mass basis) 2.9 nanograms per dry standard cubic meter. Biomasss - 0.52 nanograms per dry standard cubic meter.
Coal - 5.1 nanograms per dry standard cubic meter. 3-run average (collect a minimum volume of 4 dry standard cubic meters). Performance test (Method 23 at 40CFR60, appendix A-7).
Dioxins/furans (toxic equivalency basis) 0.32 nanograms per dry standard cubic meter. Biomass - 0.12 nanograms per dry standard cubic meter.
Coal - 0.075 nanograms per dry standard cubic meter. 3-run average (collect a minimum volume of 4 dry standard cubic meters). Performance test (Method 23 of 40CFR60, appendix A-7).
Hydrogen chloride 14 parts per million by dry volume. Biomass- 0.20 parts per million dry volume.
Coal - 58 parts per million dry volume. 3-run average (for Method 26, collect a minimum of 120 liters; for Method 26A, collect a minimum volume of 1 dry standard cubic meter). Performance test (Method 26 or 26A of 40CFR60, appendix A-8).
Lead 0.096 milligrams per dry standard cubic meter. Biomass - 0.014 milligrams per dry standard cubic meter.
Coal - 0.057 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 2 dry standard cubic meters). Performance test (Method 29 of 40CFR60, appendix A-8). Use ICPMS for the analytical finish.
Mercury 0.0024 milligrams per dry standard cubic meter. Biomass- 0.0022 milligrams per dry standard cubic meter.
Coal - 0.013 milligrams per dry standard cubic meter. 3-run average (For Method 29 and ASTM D6784–02 (Reapproved 2008), collect a minimum volume of 2 dry standard cubic meters per run. For Method 30B, collect a minimum sample as specified in Method 30B at 40CFR60, appendix A. Performance test (Method 29 or 30B of 40CFR60, appendix A-8) or ASTM D6784–02 (Reapproved 2008).
Nitrogen oxides 76 parts per million by dry volume. Biomass - 290 parts per
million dry volume.
Coal - 460 parts per million dry volume. 3-run average (for Method 7E, 1-hour minimum sample time per run). Performance test (Method 7 or 7E of 40CFR60, appendix A-4).
Particulate matter filterable 110 milligrams per dry standard cubic meter. Biomass - 11 milligrams per dry standard cubic meter. Coal - 130 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 1 dry standard cubic meter). Performance test (Method 5 or 29 of 40CFR60, appendix A-3 or appendix A-8).
Sulfur dioxide 720 parts per million by dry volume. Biomass - 7.3 parts per
million dry volume.
Coal - 850 parts per million dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 6 or 6C of 40CFR60, appendix A-4).
Fugitive ash Visible emissions for no more than 5% of the hourly observation period. Visible emissions for no more than 5% of the hourly observation period. 3 1-hour observation periods. Visible emission test (Method 22 at 40CFR60, appendix A-7).
Air pollutant Emission limitb Averaging timec Performance test methodsc, d
Cadmium 0.0014 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 2 dry standard cubic meters). Performance test (Method 29 of 40CFR60, appendix A-8).
Carbon monoxide 110 (long kilns)/790 (preheater-precalciner) parts per million dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 10 at 40CFR60, appendix A-4).
Dioxins/furans (total mass basis) 1.3 nanograms per dry standard cubic meter. 3-run average (collect a minimum volume of 4 dry standard cubic meters). Performance test (Method 23 at 40CFR60, appendix A-7).
Dioxins/furans (toxic equivalency basis) 0.075 nanograms per dry standard cubic meter. 3-run average (collect a minimum volume of 4 dry standard cubic meters). Performance test (Method 23 of 40CFR60, appendix A-7).
Hydrogen chloride 3.0 parts per million dry volume. 3-run average (collect a minimum volume of 1 dry standard cubic meter) or 30-day rolling average if HCL CEMS is being used. If a wet or dry scrubber is used, performance test (Method 321 at 40CFR63, appendix A) or HCL CEMS if a wet scrubber or dry scrubber is not used, as specified in subdivision 9.9.j.
Lead 0.014 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 2 dry standard cubic meters). Performance test (Method 29 of 40CFR60, appendix A-8).
Mercury 0.011 milligrams per dry standard cubic meter
or
58 pounds/million tons of clinker. 30-day rolling average. Mercury CEMS or integrated sorbent trap monitoring system (performance specification 12A or 12B, respectively, of appendix B and procedure 5 of appendix F of 40CFR60), as specified in subdivision 9.9.j.
Nitrogen oxides 630 parts per million by dry volume. 3-run average (for Method 7E, 1-hour minimum sample time per run). Performance test (Method 7 or 7E of 40CFR60, appendix A-4).
Particulate matter filterable 13.5 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 1 dry standard cubic meter). Performance test (Method 5 or 29 at 40CFR60, appendix A-3 or appendix -8.
Sulfur dioxide 600 parts per million by dry volume. 3-run average (for Method 6, collect a minimum of 20 liters; for Method 6C, 1-hour minimum sample time per run). Performance test (Method 6 or 6C of 40CFR60, appendix A-4).
Air pollutant Emission limitb Averaging timec Performance test methodsc
Cadmium 0.95 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 1 dry standard cubic meters per run). Performance test (Method 29 of 40CFR60, appendix A-8).
Carbon monoxide 64 parts per million dry volume. 3-run average (1-hour minimum sample time per run). Performance test (Method 10 at 40CFR60, appendix A-4).
Dioxins/furans (total mass basis) 4400 nanograms per dry standard cubic meter. 3-run average (collect a minimum volume of 1 dry standard cubic meters per run). Performance test (Method 23 at 40CFR60, appendix A-7).
Dioxins/furans (toxic equivalency basis) 180 nanograms per dry standard cubic meter. 3-run average (collect a minimum volume of 1 dry standard cubic meter). Performance test (Method 23 of 40CFR60, appendix A-7).
Fugitive ash Visible emissions for no more than 5% of the hourly observation period. 3 1-hour observation periods. Visible emission test (Method 22 at 40CFR60, appendix A-7).
Hydrogen chloride 300 parts per million dry volume. 3-run average (For Method 26, collect a minimum volume of 120 liters per run. For Method 26A, collect a minimum volume of 1 dry standard cubic meter per run). Performance test (Method 26 or 26A at 40CFR60, appendix A-8).
Lead 2.1 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 1 dry standard cubic meter). Performance test (Method 29 of 40CFR60, appendix A-8). Use ICPMS for the analytical finish.
Mercury 0.0053 milligrams per dry standard cubic meter. 3-run average (For Method 29 and ASTM D6784–02 (Reapproved 2008), collect a minimum volume of 2 dry standard cubic meters per run. For Method 30B, collect a minimum sample as specified in Method 30B at 40CFR60, appendix A). Performance test (Method 29 or 30B at 40CFR60, appendix A–8) or ASTM D6784-02 (Reapproved 2008).
Nitrogen oxides 190 parts per million by dry volume. 3-run average (for Method 7E, 1-hour minimum sample time per run). Performance test (Method 7 or 7E of 40CFR60, appendix A-4).
Particulate matter (filterable) 270 milligrams per dry standard cubic meter. 3-run average (collect a minimum volume of 1 dry standard cubic meter). Performance test (Method 5 or 29 at 40CFR60, appendix A-3 or appendix A-8).
Sulfur dioxide 150 parts per million dry volume. 3-run average (for Method 6, collect a minimum of 20 liters per run; for Method 6C, 1-hour minimum sample time per run). Performance test (Method 6 or 6C of 40CFR60, appendix A-4).