Equation 1 to Paragraph (c)(1)(iii)(D)
Where:
EContPV = Mass of controlled substance p emitted from process vent v from process i, operating scenario j, during the emission test during test run r (kg/hr).
CPV = Concentration of controlled substance p during test run r of the emission test (ppmv).
MW = Molecular weight of controlled substance p (g/g-mole).
QPV = Flow rate of the process vent stream during test run r of the emission test (m3/min).
SV = Standard molar volume of gas (0.0240 m3 /g-mole at 68 °F and 1 atm).
1/103 = Conversion factor (1 kilogram/1,000 grams).
60/1 = Conversion factor (60 minutes/1 hour).
Equation 2 to Paragraph (c)(1)(iii)(E)
Where:
EFPV = Emission factor for controlled substance p emitted from process vent v during process i, operating scenario j (e.g., kg emitted/kg activity).
EPV = Mass of controlled substance p emitted from process vent v from process i, operating scenario j, during the emission test during test run r, for either continuous or batch (kg emitted/hr for continuous, kg emitted/batch for batch).
ActivityEmissionTest = Process feed, process production, or other process activity rate for process i, operating scenario j, during the emission test during test run r (e.g., kg product/hr).
r = Number of test runs performed during the emission test.
Equation 3 to Paragraph (c)(1)(iii)(F)
EPV = EFPV-U * (Activityu + Activityc * (1- DE))
Where:
EPV = Mass of controlled substance p emitted from process vent v from process i, operating scenario j, for the year, considering destruction efficiency (kg).
EFPV-U = Emission factor (uncontrolled) for controlled substance p emitted from process vent v during process i, operating scenario j (kg emitted/kg product).
ActivityU = Total process feed, process production, or other process activity for process i, operating scenario j, during the year for which the process vent is not vented to the properly functioning destruction unit (e.g., kg product).
ActivityC = Total process feed, process production, or other process activity for process i, operating scenario j, during the year for which the process vent is vented to the properly functioning destruction unit (e.g., kg product).
DE = Demonstrated destruction efficiency of the destruction unit (weight fraction).
Equation 4 to Paragraph (c)(1)(iii)(G)
Where:
EFPVadj = Adjusted process-vent-specific emission factor for an untested operating scenario.
ECFUT = Emission calculation factor for the untested operating scenario developed under paragraph (c)(4) of this section.
ECFT = Emission calculation for the tested operating scenario developed under paragraph (c)(4) of this section.
EFPV = Process vent specific emission factor for the tested operating scenario.
Equation 5 to Paragraph (c)(1)(iii)(H)
Where:
EPpi = Mass of controlled substance p emitted from process vents for process i for the year (kg).
EPV = Mass of controlled substance p emitted from process vent v from process i, operating scenario j, for the year, considering destruction efficiency (kg).
v = Number of process vents in process i, operating scenario j.
o = Number of operating scenarios for process i.
Equation 6 to Paragraph (c)(1)(iv)(B)
Where:
ECFPV = Emission calculation factor for controlled substance p emitted from process vent v during process i, operating scenario j (e.g., kg emitted/kg product).
EPV = Average mass of controlled substance p emitted, based on calculations, from process vent v from process i, operating scenario j, during the period or batch for which emissions were calculated, for either continuous or batch (kg emitted/hr for continuous, kg emitted/batch for batch).
Activity Representative = Process feed, process production, or other process activity rate corresponding to average mass of emissions based on calculations (e.g., kg product/hr for continuous, kg product/batch for batch).
Equation 7 to Paragraph (c)(1)(iv)(C)
EPV = ECFPV * Activity
Where:
EPV = Mass of controlled substance p emitted from process vent v from process i, operating scenario j, for the year (kg).
ECFPV = Emission calculation factor for controlled substance p emitted from process vent v during process i, operating scenario j (kg emitted/activity) (e.g., kg emitted/kg product).
Activity = Process feed, process production, or other process activity for process i, operating scenario j, during the year.
Equation 8 to Paragraph (c)(1)(iv)(D)
EPV = ECFPV * (Activityu + Activityc * (1-DE))
Where:
EPV = Mass of controlled substance p emitted from process vent v from process i, operating scenario j, for the year considering destruction efficiency (kg).
ECFPV = Emission calculation factor for controlled substance p emitted from process vent v during process i, operating scenario j (e.g., kg emitted/kg product).
ActivityU = Total process feed, process production, or other process activity for process i, operating scenario j, during the year for which the process vent is not vented to the properly functioning destruction unit (e.g., kg product).
ActivityC = Total process feed, process production, or other process activity for process i, operating scenario j, during the year for which the process vent is vented to the properly functioning destruction unit (e.g., kg product).
DE = Demonstrated destruction efficiency of the destruction unit (weight fraction).
Equation 9 to Paragraph (c)(1)(iv)(E)
Where:
EPpi = Mass of controlled substance p emitted from process vents for process i for the year (kg).
EPV = Mass of controlled substance p emitted from process vent v from process i, operating scenario j, for the year, considering destruction efficiency (kg).
v = Number of process vents in process i, operating scenario j.
o = Number of operating scenarios in process i.
Equation 10 to Paragraph (c)(3)(i)
Ei = EPpi + EELpi
Where:
Ei = Total mass of each controlled substance p emitted from process i, annual basis (kg/year).
EPpi = Mass of controlled substance p emitted from all process vents and all operating scenarios in process i, annually (kg/year, calculated in equation 5 or 9 to this section, as appropriate).
EELpi = Mass of controlled substance p emitted from equipment leaks for pieces of equipment for process i, annually (kg/year, calculated in paragraph (c)(2)(iii) of this section).
Equation 11 to Paragraph (c)(3)(ii)
Where:
E = Total mass of each controlled substance p emitted from all processes listed in paragraphs (b)(2)(i) through (iv) of this section, as appropriate (kilograms).
Ei = Total mass of each controlled substance p emitted from each process listed in paragraphs (b)(2)(i) through (iv) of this section, annual basis (kg/year, calculated in equation 10 to paragraph (c)(3)(i) of this section).
z = Total number of processes listed in paragraphs (b)(2)(i) through (iv) of this section, as appropriate.
Equation 12 to Paragraph (c)(4)(i)(C)
eSA = [(a * ea )2 + (b * eb )2 + (c * ec )2 ]1/2
Where:
eSA = Absolute error of the sum, expressed as one half of a 95 percent confidence interval.
ea = Relative error of a, expressed as one half of a 95 percent confidence interval.
eb = Relative error of b, expressed as one half of a 95 percent confidence interval.
ec = Relative error of c, expressed as one half of a 95 percent confidence interval.
Equation 13 to Paragraph (c)(4)(i)(D)
Where:
eSR = Relative error of the sum, expressed as one half of a 95 percent confidence interval.
eSA = Absolute error of the sum, expressed as one half of a 95 percent confidence interval.
a+b+c = Sum of the variables measured.
Equation 14 to Paragraph (c)(4)(i)(E)
ePA = (a * b * c)(e2a + e2b + e2c )1/2
Where:
ePA = Absolute error of the product, expressed as one half of a 95 percent confidence interval.
ea = Relative error of a, expressed as one half of a 95 percent confidence interval.
eb = Relative error of b, expressed as one half of a 95 percent confidence interval.
ec = Relative error of c, expressed as one half of a 95 percent confidence interval.
Equation 15 to Paragraph (c)(4)(i)(F)
Where:
ePR = Relative error of the product, expressed as one half of a 95 percent confidence interval.
ePA = Absolute error of the product, expressed as one half of a 95 percent confidence interval.
a*b*c = Product of the variables measured.
Equation 16 to Paragraph (c)(4)(ii)
Where:
EContp = Total mass of each controlled substance p emitted annually from process i (metric tons).
ERp -FContp = Total mass of controlled substance reactant p emitted from production process i over the period t (metric tons, calculated in equation 22 to paragraph (c)(4)(ix) of this section).
EPp -FContp = Total mass of the controlled substance product p emitted from production process i over the period t (metric tons, calculated in equation 23 to paragraph (c)(4)(x) of this section).
EBp -FContp = Total mass of controlled substance byproduct p emitted from production process i over the period t (metric tons, calculated in equation 24 to paragraph (c)(4)(xi) of this section).
n = Number of concentration and flow measurement periods for the year.
Equation 17 to Paragraph (c)(4)(iii)
Where:
EH = Total mass of halogen emitted from process i over the period t (metric tons).
Rd = Total mass of the halogen-containing reactant d that is fed into process i over the period t (metric tons).
P = Total mass of the halogen-containing product produced by process i over the period t (metric tons).
MFHRd = Mass fraction of halogen in reactant d, calculated in equation 25 to paragraph (c)(4)(xii) of this section.
MFHP = Mass fraction of halogen in the product, calculated in equation 26 to paragraph (c)(4)(xiii) of this section.
FD = Total mass of halogen in destroyed or recaptured streams from process i containing halogen-containing reactants, products, and byproducts over the period t, calculated in equation 18 to paragraph (c)(4)(iv) of this section.
v = Number of halogen-containing reactants fed into process i.
Equation 18 to Paragraph (c)(4)(iv)
Where:
FD = Total mass of halogen in destroyed or recaptured streams from process i containing halogen-containing reactants, products, and byproducts over the period t.
Pj = Mass of the halogen-containing product removed from process i in stream j and destroyed over the period t (calculated in equation 19 or 20 to this section).
Bkj = Mass of halogen-containing byproduct k removed from process i in stream j and destroyed over the period t (calculated in equation 19 or 20 to this section).
Bkl = Mass of halogen-containing byproduct k removed from process i in stream l and recaptured over the period t.
Rdj = Mass of halogen-containing reactant d removed from process i in stream j and destroyed over the period t (calculated in equation 19 or 20 to this section).
MFHRd = Mass fraction of halogen in reactant d, calculated in equation 25 to paragraph (c)(4)(xii) of this section.
MFHP = Mass fraction of halogen in the product, calculated in equation 26 to paragraph (c)(4)(xiii) of this section.
MFHBk = Mass fraction of halogen in byproduct k, calculated in equation 27 to paragraph (c)(4)(xiv) of this section.
q = Number of streams destroyed in process i.
x = Number of streams recaptured in process i.
u = Number of halogen-containing byproducts generated in process i.
v = Number of halogen-containing reactants fed into process i.
Equation 19 to Paragraph (c)(4)(v)
MFcontpj = DEContp * Ccontrpj * Sj
Where:
MFContpj = Mass of controlled substance p removed from process i in stream j and destroyed over the period t. (This may be Pj, Bkj, or Rdj, as applicable.)
DEContp = Destruction efficiency of the device that has been demonstrated for controlled substance p in stream j (fraction).
CContpj = Concentration (mass fraction) of controlled substance p in stream j removed from process i and fed into the destruction device over the period t. If this concentration is only a trace concentration, cContrpj is equal to zero.
Sj = Mass removed in stream j from process i and fed into the destruction device over the period t (metric tons).
Equation 20 to Paragraph (c)(4)(vi)
Mhcgj = CHCgj * Sj
Where:
MHCgj = Mass of non-controlled substance halogen-containing compound g removed from process i in stream j and destroyed over the period t. (This may be Pj, Bkj, or Rdj, as applicable.)
cHCgj = Concentration (mass fraction) of non-controlled substance halogen-containing compound g in stream j removed from process i and fed into the destruction device over the period t. If this concentration is only a trace concentration, cHCgj is equal to zero.
Sj = Mass removed in stream j from process i and fed into the destruction device over the period t (metric tons).
Equation 21 to Paragraph (c)(4)(vii)
Bkl = CBkl * Sl
Where:
Bkl = Mass of halogen-containing byproduct k removed from process i in stream l and recaptured over the period t (metric tons).
cBkl = Concentration (mass fraction) of halogen-containing byproduct k in stream l removed from process i and recaptured over the period t. If this concentration is only a trace concentration, cBkl is equal to zero.
Sl = Mass removed in stream l from process i and recaptured over the period t (metric tons).
Equation 22 to Paragraph (c)(4)(ix)
Where:
ER-it = Total mass of halogen-containing reactant d that is emitted from process i over the period t (metric tons).
FERd = The fraction of the mass emitted that consists of the halogen-containing reactant d.
EH = Total mass of halogen emissions from process i over the period t (metric tons), calculated in equation 17 to paragraph (c)(4)(iii) of this section.
FEP = The fraction of the mass emitted that consists of the halogen-containing product.
FEBk = The fraction of the mass emitted that consists of halogen-containing byproduct k.
MFFRd = Mass fraction of halogen in reactant d, calculated in equation 25 to paragraph (c)(4)(xii) of this section.
MFHP = Mass fraction of halogen in the product, calculated in equation 26 to paragraph (c)(4)(xiii) of this section.
MFHBk = Mass fraction of halogen in byproduct k, calculation in equation 27 to paragraph (c)(4)(xiv) of this section.
u = Number of halogen-containing byproducts generated in process i.
v = Number of halogen-containing reactants fed into process i.
Equation 23 to Paragraph (c)(4)(x)
Where:
EP-it = Total mass of halogen-containing product emitted from process i over the period t (metric tons).
FEP = The fraction of the mass emitted that consists of the halogen-containing product.
EH = Total mass of halogen emissions from process i over the period t (metric tons), calculated in equation 17 to paragraph (c)(4)(iii) of this section.
FERd = The fraction of the mass emitted that consists of halogen-containing reactant d.
FEBk = The fraction of the mass emitted that consists of halogen-containing byproduct k.
MFHRd = Mass fraction of halogen in reactant d, calculated in equation 25 to paragraph (c)(4)(xii) of this section.
MFHP = Mass fraction of halogen in the product, calculated in equation 26 to paragraph (c)(4)(xiii) of this section.
MFHBk = Mass fraction of halogen in byproduct k, calculation in equation 27 to paragraph (c)(4)(xiv) of this section.
u = Number of halogen-containing byproducts generated in process i.
v = Number of halogen-containing reactants fed into process i.
Equation 24 to Paragraph (c)(4)(xi)
Where:
EBk-it = Total mass of halogen-containing byproduct k emitted from process i over the period t (metric tons).
FEBk = The fraction of the mass emitted that consists of halogen-containing byproduct k.
FERd = The fraction of the mass emitted that consists of halogen-containing reactant d.
FEP = The fraction of the mass emitted that consists of the halogen-containing product.
EH = Total mass of halogen emissions from process i over the period t (metric tons), calculated in equation 17 to paragraph (c)(4)(iii) of this section.
MFHRd = Mass fraction of halogen in reactant d, calculated in equation 25 to paragraph (c)(4)(xii) of this section.
MFHP = Mass fraction of halogen in the product, calculated in equation 26 to paragraph (c)(4)(xiii) of this section.
MFHBk = Mass fraction of halogen in byproduct k, calculation in equation 27 to paragraph (c)(4)(xiv) of this section.
u = Number of halogen-containing byproducts generated in process i.
v = Number of halogen-containing reactants fed into process i.
Equation 25 to Paragraph (c)(4)(xii)
Where:
MFHRd = Mass fraction of halogen in reactant d (fraction).
MHRd = Moles halogen per mole of reactant d.
AWH = Atomic weight of halogen.
MWRd = Molecular weight of reactant d.
Equation 26 to Paragraph (c)(4)(xiii)
Where:
MFHP = Mass fraction of halogen in the product (fraction).
MHP = Moles halogen per mole of product.
AWH = Atomic weight of halogen.
MWP = Molecular weight of the product produced.
Equation 27 to Paragraph (c)(4)(xiv)
Where:
MFHBk = Mass fraction of halogen in the product (fraction).
MHBk = Moles halogen per mole of byproduct k.
AWH = Atomic weight of halogen.
MWBk = Molecular weight of byproduct k.
Equation 28 to Paragraph (c)(4)(xv)
Where:
FD = Total mass of halogen in destroyed or recaptured streams from process i containing halogen-containing reactants, products, and byproducts over the period t.
DEavgj = Weighted average destruction efficiency of the destruction device for the halogen-containing compounds identified in destroyed stream j under paragraphs (d)(4)(iv)(B) and (d)(4)(v)(B) of this section (calculated in equation 28 to this paragraph (c)(4)(xv)) (fraction).
cTHj = Concentration (mass fraction) of total halogen in stream j removed from process i and fed into the destruction device over the period t. If this concentration is only a trace concentration, cTHj is equal to zero.
Sj = Mass removed in stream j from process i and fed into the destruction device over the period t (metric tons).
cTHl = Concentration (mass fraction) of total halogen in stream l removed from process i and recaptured over the period t. If this concentration is only a trace concentration, cBkl is equal to zero.
Sl = Mass removed in stream l from process i and recaptured over the period t.
q = Number of streams destroyed in process i.
x = Number of streams recaptured in process i.
Equation 29 to Paragraph (c)(4)(xvi)
Where:
DEavgj = Weighted average destruction efficiency of the destruction device for the halogen-containing compounds identified in destroyed stream j under paragraph (d)(4)(iv)(B) or (d)(4)(v)(B) of this section, as appropriate.
DEContp = Destruction efficiency of the device that has been demonstrated for controlled substance p in stream j (fraction).
cContpj = Concentration (mass fraction) of controlled substance p in stream j removed from process i and fed into the destruction device over the period t. If this concentration is only a trace concentration, cContpj is equal to zero.
cHCgj = Concentration (mass fraction) of non-controlled substance halogen-containing compound g in stream j removed from process i and fed into the destruction device over the period t. If this concentration is only a trace concentration, cHCgj is equal to zero.
Sj = Mass removed in stream j from process i and fed into the destruction device over the period t (metric tons).
MFHContp = Mass fraction of halogen in controlled substance p, calculated in equation 25, 26, or 27 to this section, as appropriate.
MFHHCg = Mass fraction of halogen in non-controlled substance halogen-containing compound g, calculated in equation 25, 26, or 27 to this section, as appropriate.
w = Number of controlled substances in destroyed stream j.
y = Number of non-controlled substance halogen-containing compounds in destroyed stream j.
Equation 30 to Paragraph (c)(5)
ED = RED * (1- DE)
Where:
ED = The mass of controlled substances emitted annually from destruction of controlled substances (kilograms).
RED = The mass of controlled substances that are fed annually into the destruction unit (kilograms).
DE = Destruction efficiency of the destruction unit (fraction).
Equation 31 to Paragraph (c)(6)
Where:
DEEffective = Effective destruction efficiency for process i (fraction).
EPVp = Mass of controlled substance p emitted from process vent v from process i, operating scenario j, for the year, calculated in equation 3, 7, or 8 to this section (kg).
ECFPV-Up = Emission calculation factor for controlled substance p emitted from process vent v during process i, operating scenario j, as used in equation 7 or 8 to this section (kg emitted/activity) (e.g., kg emitted/kg product), denoted as "ECFPV " in those equations.
EFPV-Up = Emission factor (uncontrolled) for controlled substance p emitted from process vent v during process i, operating scenario j, as used in equation 3 to paragraph (c)(1)(iii)(F) of this section (kg emitted/activity) (e.g., kg emitted/kg product), denoted as "EFPV-U " in that equation.
ActivityU = Total process feed, process production, or other process activity for process i, operating scenario j during the year, for which the process vent is not vented to the properly functioning destruction unit (i.e., uncontrolled).
ActivityC = Total process feed, process production, or other process activity for process i, operating scenario j during the year, for which emissions are vented to the properly functioning destruction unit (i.e., controlled).
o = Number of operating scenarios for process i.
v = Number of process vents in process i, operating scenario j.
w = Number of controlled substances emitted from the process.
40 C.F.R. §82.25