Uncontrolled emission rate, megagram of product per
Production Process | Process Section | year (Mg/yr) |
1. High density polyethylene, liquid-phase slurry process. | material recovery section | 7 |
2. High density polyethylene, liquid-phase slurry process | product finishing section | 19 |
3. Polypropylene, liquid-phase process | polymerization reaction section | 7 |
4. Polypropylene, liquid-phase process | material recovery section | 8 |
5. Polypropylene, liquid-phase process | product finishing section | 36 |
6. Polystyrene, continuous process | material recovery section | 7 |
where:
P = Percent emission reduction, by weight.
Einlet = Mass rate of total VOC entering the control device, kg VOC/hr.
Eoutlet = Mass rate of total VOC discharged to the atmosphere, kg VOC/hr.
where:
Cij , Coj = Concentration of sample component "j" of the gas stream at the inlet and outlet of the control device, respectively, dry basis, ppmv.
Mij , Moj = Molecular weight of sample component "j" of the gas stream at the inlet and outlet of the control device respectively, g/gmole (lb/lb-mole).
Qi , Qo = Flow rate of the gas stream at the inlet and outlet of the control device, respectively, dscm/hr (dscf/hr).
K = 4.157 x 10-8 [(kg)/(g-mole)]/[(g)(ppm)(dscm)] or {2.595 x 10-9 [(lb)(/(lb-1 mole)]/[(lb)(ppm)(dscf)]}.
where:
Cvoc = Concentration of total VOC, dry basis, ppmv;
Cj = Concentration of sample component j, ppm; and
n = Number of components in the sample.
CCORR = Concentration of total VOC corrected to 3 percent oxygen, dry basis, ppmv;
CMEAS = Concentration of total VOC, dry basis, ppmv, as calculated in Part (5)(b)1 above; and
%O2d = Concentration of O2 , dry basis, percent by volume.
where:
Vmax = Maximum permitted velocity, m/s;
28.8 = Constant;
31.7 = Constant; and
HT = The net heating value as determined in Part 7 of this subparagraph.
Vmax = 8.706 + 0.7084 (HT) where:
Vmax = Maximum permitted velocity, m/s;
8.706 = Constant;
0.7084 = Constant; and
HT = The net heating value as determined in Part 7 of this subparagraph.
HT = K SUM CinHi i = 1
where:
HT = Net heating value of the sample, MJ/scm, where the net enthalpy per mole of offgas is based on combustion at 250C and 760 millimeters of Mercury (mm Hg) (770F and 29.92 inches of Mercury [in Hg]), but the standard temperature for determining the volume corresponding to one mole is 200C (680F);
K = Constant:
where standard temperature for (g mole)/scm is 200C.
Ci = Concentration of sample components i in ppm on a wet basis, as measured for organics by Reference Method 18 and measured for hydrogen and carbon monoxide by ASTM D1946-82; and
Hi = Net heat of combustion of sample component i, kcal/g-mole at 25°C (77°F) and 760 mm Hg (29.92 in Hg). The heats of combustion of process vent stream components may be determined using ASTM D2382-76 (reapproved 1977) if published values are not available or cannot be calculated;8.The emission rate of VOC in the process vent stream shall be calculated using the following equation:
where:
Evoc= Emission rate of total organic compounds in the sample, kilogram per hour (kg/h);
K = Constant, 2.494 x 10-6 (1/ppm)(g-mole/scm)(kg/g)(min/h), where standard temperature for (g-mole/scm) is 20°C (68°F);
Ci = Concentration of sample component i, ppm;
Mi = Molecular weight of sample component i, g/g-mole; and
Q = Vent stream flow rate (scm/min), at a standard temperature of 20°C s (68°F) .
where:
ER = Emission rate of VOC, kg VOC/Mg product; voc
E = Emission rate of VOC in the sample, kg/h; and voc
P = The rate of polymer produced, kg/h. p
Tenn. Comp. R. & Regs. 1200-03-18-.39
Authority: T.C.A. §§ 4-5-202 et seq. and 68-201-105.