Ozone in combination with hydrogen peroxide has been shown to effectly oxidize 1,4-dioxane in synthetic solutions representing groundwater or industrial wastewater to more readily biodegradable oxidation products that could be treated using conventional. biological treatment. Bicarbonate alkalinity and competition by 1,3-dioxolane and 2-methyl-1,3-dioxolane were found to increase the oxidant dosages required for 1,4-dioxane oxidation. The results of this study suggest that anaerobic pretreatment prior to advanced oxidation may be a viable means of reducing the ozone and hydrogen peroxide dosages required for biodegradability enhancement.
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SWISS FED INST WATER RESOURCES & WATER POLLUT CONTROL,EAWAG,CH-8600 DUBENDORF,SWITZERLANDSWISS FED INST WATER RESOURCES & WATER POLLUT CONTROL,EAWAG,CH-8600 DUBENDORF,SWITZERLAND
STAEHELIN, J
HOIGNE, J
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SWISS FED INST WATER RESOURCES & WATER POLLUT CONTROL,EAWAG,CH-8600 DUBENDORF,SWITZERLANDSWISS FED INST WATER RESOURCES & WATER POLLUT CONTROL,EAWAG,CH-8600 DUBENDORF,SWITZERLAND
机构:
SWISS FED INST WATER RESOURCES & WATER POLLUT CONTROL,EAWAG,CH-8600 DUBENDORF,SWITZERLANDSWISS FED INST WATER RESOURCES & WATER POLLUT CONTROL,EAWAG,CH-8600 DUBENDORF,SWITZERLAND
STAEHELIN, J
HOIGNE, J
论文数: 0引用数: 0
h-index: 0
机构:
SWISS FED INST WATER RESOURCES & WATER POLLUT CONTROL,EAWAG,CH-8600 DUBENDORF,SWITZERLANDSWISS FED INST WATER RESOURCES & WATER POLLUT CONTROL,EAWAG,CH-8600 DUBENDORF,SWITZERLAND