Document DDX87zmMjZDwdZyzKm0LLwG3d
ABDOO139475 Federal Register / Vol. 52, No. 214 / Thursday, November 5, 1987 / Rules and Regulations 42581
concentrations listed above in $ 414.85 for the metal pollutants times the flow from metal-bearing waste streams for metals and times the flow from cyanide* bearing waste streams for total cyanide. The metal-bearing waste streams and cyanide-bearing waste streams are defined as those waste streams listed in Appendix A of this part, plus any additional process wastewater streams identified by the control authority on a case-by-case basis is metal or cyanide bearing based upon a determination--'
(1) That such streams contain significant amounts of the pollutants identified above and that
(2) The combination of such streams, prior to treatment, with the Appendix A waste streams will result in substantial reduction of these pollutants.
This determination must be based upon a review of relevant engineering, production, and sampling and analysis information.
Subpart!--Direct Discharge Point Sources That Use End-of-PIpe Biological Treatment
S 414.90 Applicability; description of the subcategory of direct discharge point sources that use end-of-plpe biological treatment
The provisions of this subpart are applicable to the process wastewater discharges resulting from the manufacture of the OCPSF products and product groups defined by 414.11 from any point source that uses end-of-pipe biological treatment or installs end-ofpipe biological treatment to comply with BPT effluent limitations.
414.91 Toxic pollutant effluent limitations and standards for direct discharge point sources that use end-ofpipe biological treatment
(a) Any point source subject to this subparl must achieve discharges not exceeding the quantity (mass) determined by multiplying the process wastewater flow subject to this subpart times the concentrations in the following table.
(b) In the case of chromium, copper, lead, nickel, zinc, and total cyanide, the discharge quantity (mass) shall be determined by multiplying the concentrations listed in the following table for these pollutants times the flow from metal-bearing waste streams for . the metals and times the flow from cyanide-bearing waste streams for total cyanide. Metal-bearing waste streams end cyanide-bearing waste streams are defined as those waste streams listed in Appendix A of this part, plus any additional process wastewater streams identified by the permitting authority on
a case-by-case basis as metal or cyanide bearing based upon a determination--
Effluent limitations BAT and NSPS 1
(1) That such streams contain significant amounts of the pollutants identified above and that
(2) The combination of such streams,
Effluent characteristics
Maximum for any one day
Maximum
for monthly
average
prior to treatment, with the Appendix A
waste streams will result in substantial reduction of these pollutants.
This determination must be based upon a review of relevant engineering, production, and sampling and analysis information.
3.4Benzofluoranthene...
Benzo(k)fluoranthene..
Chrysene...................... Acenaphthylene.......... Anthracene................. Fluorene...................... Phenanthrene..............
61 59 59 59 59 59 59
23 22 22 22 22 22
22
Effluent limitations BAT and NSPS `
Pyrene......................... Tetrachloroethyfene....
Toluene............_.........
67 56 80
25 22 28
Effluent characteristics
Maximum
for any one day
Maximum
for monthly average
Trichloroethylene........ Vinyl Chloride.............. Total Chromium........... Total Copper.............. Total Cyanide.....-.....
54 268 2,770 3,380 1,200
21 104
1,110 1,450
420
Acenaphthene............. Acrylonitrile....... ......... Benzene......................
59 242
136
22
Total Lead.................. Total Nickel.................
96 37
Total Zinc*..................
690 3,980 2,610
320 1,690 1,050
Carbon Tetrachloride... Chlorobenzene............ 1.2.4-
Trichlorobenzene....
Hexachlorobenzene.... 1.2-Otchloroethane..... 1,1,1 -Trichloroethane..
38 28
140 28
211 54
18 1 All units are micrograms per liter. 15 * Total Zinc for Rayon Fiber Manufacture
that uses the viscose process and Acrylic 68 Fiber Manufacture that uses the zinc chloride/
15 solvent process is 6,796 fig/l and 3,325 pg/l 66 for maximum for any one day and maximum 21 for monthly average, respectively.
Hexachloroetfiane........
54
21
1,2-Dichloroethane.... . 1,1,1-Trichloroethane.. Chloroethane......... -- Chloroform.......... ........
59 54 268 46
22 21
Subpart J--Direct Discharge Point
104 Sources That Do Not Use End-of-Pipe
21 Biofogical Treatment
2-Chlorophenol........... 1,2-Oichlorobenzene.... 1,3-Dichtorobenzene.... 1,4-Dichlorobenzene.... 1,1 -Dichloroethylene....
- 98 163 44 28 25
31 77
S 414.100 Applicability; description of ths
31 15
subcategory of direct discharge point sources that do not use end-of-plpe
16 biological treatment
1,2-trans-
The provisions of this subpart are
Dichloroethylene..... 2,4-Dichlorophenoi___
1,2-Dichloropropane...
1.3Dichloropropylene...
2.4-Dimethylphenol.... 2.4-Dinitrotoluene....... 2,6-Dinitrotoluene.... ... Ethylbenzene..............
54 112 230
44 36 285 641 108 68
21 applicable to the process wastewater 39 discharges resulting from the 153 manufacture of the OCPSF products and
29 18
product groups defined by $ 414.11 from any point source that does not use end-
113 of-pipe biological treatment and does
255 not install end-of-pipe biological
32 treatment to comply with BPT effluent
25 limitations.
Bis(2*
Chloroisopropyl)
(414.101 Toxic pollutant effluent
757 301 limitations and standards for direct
Methylene Chloride.....
89
40 discharge point sources that do not use
190 86 end-of-pipe biological treatment
Hexachlorobutadiene.. Naphthalene............
2-Nitrophenot.........-- 4-Nitrophenol.............. 2,4-Dinitrophenol------
49 59 68 69 124
123
20
22 27 41
(a) Any point source subject to this subpart must achieve discharges not exceeding the quantity (mass)
72 determined by multiplying the process
71 wastewater flow subject to this subpart
4,6-Dinitro-o-cresoi.....
277
78 times the concentrations in the following
Phenol........................ 26 15 table.
; ' *
8ts(2-ethylhexy1)
(b) In the case of chromium, copper,
phthalata--- ----------Di-n-butyl phthalate..... Diethyl phthalate------Dimethyl phthalate.......
279 57
203 47
103 27
81 19
lead, nickel, zinc, and total cyanide, the discharge quantity (mass) shall be determined by multiplying the
Benzo(a)anthracene ....
59 .. 22 concentrations listed in the following
Benzo(a)pyrene..........
61 ' 23 table for these pollutants times the flow
. sw