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NSF/ANSI/CAN 60
Drinking Water Treatment Chemicals - Health Effects
Drinking Water Treatment Chemicals - Health Effects
| Solvay Chemicals, Inc. | |
| 1130 Independence Parkway S. | |
| La Porte, TX 77571 | |
| United States | |
| 713-525-6500 |
Facility : Distribution Center - South Gate, CA
|
Hydrogen Peroxide |
||
| Trade Designation | Product Function | Max Use |
| Hydrogen Peroxide 18% - Interox® Technical/18D Grade[1] [8] | Dechlorination Disinfection & Oxidation |
44mg/L |
| Hydrogen Peroxide 27% - Interox® Technical/27D Grade[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide 32% - Interox® Technical/32D Grade[3] [10] | Dechlorination Disinfection & Oxidation |
25mg/L |
| Hydrogen Peroxide 34% - Interox® Technical/34D Grade[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Technical/35D Grade[5] [12] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 50% - Interox® Technical/50D Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 70% - Interox® Dilution Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
[1] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 166 mg/L when followed by chlorination of
treated water.
[2] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 111 mg/L when followed by chlorination of
treated water.
[3] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 93 mg/L when followed by chlorination of treated
water.
[4] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 88 mg/L when followed by chlorination of treated
water.
[5] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 85 mg/L when followed by chlorination of treated
water.
[6] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 60 mg/L when followed by chlorination of treated
water.
[7] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 43 mg/L when followed by chlorination of treated
water.
[8] This product may be used at a maximum use level of 156 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[9] This product may be used at a maximum use level of 103 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[10] This product may be used at a maximum use level of 87 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[11] This product may be used at a maximum use level of 82 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[12] This product may be used at a maximum use level of 80 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[13] This product may be used at a maximum use level of 56 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[14] This product may be used at a maximum use level of 40 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
|
||
Facility : Joliet, IL
|
Hydrogen Peroxide |
||
| Trade Designation | Product Function | Max Use |
| Hydrogen Peroxide 18% - Interox® Technical/18D Grade[1] [8] | Dechlorination Disinfection & Oxidation |
5.8mg/L |
| Hydrogen Peroxide 27% - Interox® Technical/27D Grade[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide 32% - Interox® Technical/32D Grade[3] [10] | Dechlorination Disinfection & Oxidation |
25mg/L |
| Hydrogen Peroxide 34% - Interox® Technical/34D Grade[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Technical/35D Grade[5] [12] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 50% - Interox® Technical/50D Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 70% - Interox® Dilution Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
[1] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 166 mg/L when followed by chlorination of
treated water.
[2] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 111 mg/L when followed by chlorination of
treated water.
[3] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 93 mg/L when followed by chlorination of treated
water.
[4] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 88 mg/L when followed by chlorination of treated
water.
[5] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 85 mg/L when followed by chlorination of treated
water.
[6] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 60 mg/L when followed by chlorination of treated
water.
[7] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 43 mg/L when followed by chlorination of treated
water.
[8] This product may be used at a maximum use level of 156 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[9] This product may be used at a maximum use level of 103 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[10] This product may be used at a maximum use level of 87 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[11] This product may be used at a maximum use level of 82 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[12] This product may be used at a maximum use level of 80 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[13] This product may be used at a maximum use level of 56 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[14] This product may be used at a maximum use level of 40 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
|
||
Facility : Distribution Center - Philadelphia, PA
|
Hydrogen Peroxide [HP] |
||
| Trade Designation | Product Function | Max Use |
| Hydrogen Peroxide Tech 27%- INTEROX® Hydrogen Peroxide Technical Grade[1] [2] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide Tech 34%- INTEROX® Hydrogen Peroxide Technical Grade[3] [4] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide Tech 35%- INTEROX® Hydrogen Peroxide Technical Grade[5] [6] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide Tech 50%- INTEROX® Hydrogen Peroxide Technical Grade[7] [8] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide Tech 70%- INTEROX® Hydrogen Peroxide Technical Grade[9] [10] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
| INTEROX® TECHNICAL GRADE 27/D HYDROGEN PEROXIDE BULK[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| INTEROX® TECHNICAL GRADE 34/D HYDROGEN PEROXIDE BULK[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| INTEROX® TECHNICAL GRADE 35/D HYDROGEN PEROXIDE BULK[5] [12] | Dechlorination Disinfection & Oxidation |
23mg/L |
| INTEROX® TECHNICAL GRADE 50/D HYDROGEN PEROXIDE BULK[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
[1] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 111 mg/L when followed by chlorination of
treated water.
[2] This product may be used at a maximum use level of 103 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as Fe(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[3] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 88 mg/L when followed by chlorination of treated
water.
[4] This product may be used at a maximum use level of 82 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as Fe(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[5] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 85 mg/L when followed by chlorination of the
treated water.
[6] This product may be used at a maximum use level of 80 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as Fe(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[7] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 60 mg/L when followed by chlorination of the
treated water.
[8] This product may be used at a maximum use level of 56 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as Fe(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[9] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 43 mg/L when followed by chlorination of the
treated water.
[10] This product may be used at a maximum use level of 40 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as Fe(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[11] This product may be used at a maximum use level of 82 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as Fe(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[12] This product may be used at a maximum use level of 80 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as Fe(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[13] This product may be used at a maximum use level of 56 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as Fe(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[HP] Use of this product shall be followed by chlorination to remove levels of hydrogen
peroxide. Chlorine residuals shall not exceed 4 mg/L, the EPA's proposed maximum
residual level.
|
||
Facility : La Porte, TX
|
Hydrogen Peroxide |
||
| Trade Designation | Product Function | Max Use |
| Hydrogen Peroxide 18% - Interox® Chemical Grade[1] [8] | Dechlorination Disinfection & Oxidation |
44mg/L |
| Hydrogen Peroxide 18% - Interox® Technical Grade[1] [8] | Dechlorination Disinfection & Oxidation |
44mg/L |
| Hydrogen Peroxide 18% - Interox® Technical/18D Grade[1] [8] | Dechlorination Disinfection & Oxidation |
44mg/L |
| Hydrogen Peroxide 27% - Interox® Chemical Grade[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide 27% - Interox® Technical Grade[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide 27% - Interox® Technical/27D Grade[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide 32% - Interox® Chemical Grade[3] [10] | Dechlorination Disinfection & Oxidation |
25mg/L |
| Hydrogen Peroxide 32% - Interox® Technical Grade[3] [10] | Dechlorination Disinfection & Oxidation |
25mg/L |
| Hydrogen Peroxide 32% - Interox® Technical/32D Grade[3] [10] | Dechlorination Disinfection & Oxidation |
25mg/L |
| Hydrogen Peroxide 34% - Interox® Chemical Grade[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 34% - Interox® Technical Grade[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 34% - Interox® Technical/34D Grade[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Chemical Grade[5] [12] | Disinfection & Oxidation Dechlorination |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Food Grade[5] [12] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Technical Grade[2] [6] | Disinfection & Oxidation Dechlorination |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Technical/35D Grade[5] [12] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 50% - Interox® Chemical Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 50% - Interox® Food Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 50% - Interox® Technical Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 50% - Interox® Technical/50D Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 70% - Interox® Chemical Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
| Hydrogen Peroxide 70% - Interox® Dilution Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
| Hydrogen Peroxide 70% - Interox® Food Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
| Hydrogen Peroxide 70% - Interox® Technical Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
[1] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 166 mg/L when followed by chlorination of the
treated water.
[2] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 111 mg/L when followed by chlorination of the
treated water.
[3] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 93 mg/L when followed by chlorination of the
treated water.
[4] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 88 mg/L when followed by chlorination of the
treated water.
[5] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 85 mg/L when followed by chlorination of the
treated water.
[6] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 60 mg/L when followed by chlorination of the
treated water.
[7] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 43 mg/L when followed by chlorination of the
treated water.
[8] This product may be used at a maximum use level of 156 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[9] This product may be used at a maximum use level of 103 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[10] This product may be used at a maximum use level of 87 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[11] This product may be used at a maximum use level of 82 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[12] This product may be used at a maximum use level of 80 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[13] This product may be used at a maximum use level of 56 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[14] This product may be used at a maximum use level of 40 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
|
||
Facility : Longview, WA
|
Hydrogen Peroxide |
||
| Trade Designation | Product Function | Max Use |
| Hydrogen Peroxide 18% - Interox® Chemical Grade[1] [8] | Dechlorination Disinfection & Oxidation |
44mg/L |
| Hydrogen Peroxide 18% - Interox® Technical Grade[1] [8] | Dechlorination Disinfection & Oxidation |
44mg/L |
| Hydrogen Peroxide 18% - Interox® Technical/18D Grade[1] [8] | Dechlorination Disinfection & Oxidation |
44mg/L |
| Hydrogen Peroxide 27% - Interox® Chemical Grade[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide 27% - Interox® Technical Grade[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide 27% - Interox® Technical/27D Grade[2] [9] | Dechlorination Disinfection & Oxidation |
29mg/L |
| Hydrogen Peroxide 32% - Interox® Chemical Grade[3] [10] | Dechlorination Disinfection & Oxidation |
25mg/L |
| Hydrogen Peroxide 32% - Interox® Technical Grade[3] [10] | Dechlorination Disinfection & Oxidation |
25mg/L |
| Hydrogen Peroxide 32% - Interox® Technical/32D Grade[3] [10] | Dechlorination Disinfection & Oxidation |
25mg/L |
| Hydrogen Peroxide 34% - Interox® Chemical Grade[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 34% - Interox® Technical Grade[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 34% - Interox® Technical/34D Grade[4] [11] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Chemical Grade[5] [12] | Disinfection & Oxidation Dechlorination |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Food Grade[5] [12] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Technical Grade[2] [6] | Disinfection & Oxidation Dechlorination |
23mg/L |
| Hydrogen Peroxide 35% - Interox® Technical/35D Grade[5] [12] | Dechlorination Disinfection & Oxidation |
23mg/L |
| Hydrogen Peroxide 50% - Interox® Chemical Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 50% - Interox® Food Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 50% - Interox® Technical Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 50% - Interox® Technical/50D Grade[6] [13] | Dechlorination Disinfection & Oxidation |
16mg/L |
| Hydrogen Peroxide 70% - Interox® Chemical Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
| Hydrogen Peroxide 70% - Interox® Dilution Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
| Hydrogen Peroxide 70% - Interox® Food Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
| Hydrogen Peroxide 70% - Interox® Technical Grade[7] [14] | Dechlorination Disinfection & Oxidation |
11.5mg/L |
[1] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 166 mg/L when followed by chlorination of the
treated water.
[2] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 111 mg/L when followed by chlorination of the
treated water.
[3] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 93 mg/L when followed by chlorination of the
treated water.
[4] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 88 mg/L when followed by chlorination of the
treated water.
[5] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 85 mg/L when followed by chlorination of the
treated water.
[6] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 60 mg/L when followed by chlorination of the
treated water.
[7] This product may be used for sulfide control and in conjunction with ozone for organic
control at a concentration use level of 43 mg/L when followed by chlorination of the
treated water.
[8] This product may be used at a maximum use level of 156 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[9] This product may be used at a maximum use level of 103 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[10] This product may be used at a maximum use level of 87 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[11] This product may be used at a maximum use level of 82 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[12] This product may be used at a maximum use level of 80 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[13] This product may be used at a maximum use level of 56 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
[14] This product may be used at a maximum use level of 40 mg/L for the following functions:
- reoxygenation of treated water
- oxidation of organic residuals
- oxidation of any reduced products, such as FE(II) and sulfides
Treatment must be followed by chlorination to a chlorine residual not to exceed 4 mg/L,
the EPA's proposed maximum residual level.
|
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Number of matching Manufacturers is 1
Number of matching Products is 71
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