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The effects of combined ozonation and fitration on disinfection by-product formation

机译:臭氧混合和配合对消毒副产物形成的影响

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The effects of combined ozonation and membrane filtration on the removal of the natural organic matter (NOM) and the formation of disinfection by-products (DBPs) were investigated. Ozonation/filtration resulted in a reduction of up to 50% in the dissolved organic carbon (DOC) concentration. Furthermore, humic substances were converted to non-humic substances, with changes in the humic and non-humic substance concentrations of up to -50% and +20%, respectively. Ozonation/filtration resulted in the formation of partially oxidized compounds from NOM that were less reactive with chlorine, decreasing the concentration of simulated distribution system total trihalomethanes (SDS TTHMs) and simulated distribution system halo acetic acids (SDS HAAs) by up to 80% and 65%, respectively. Reducing the molecular weight cut-off (MWCO) of the membranes resulted in reductions in the concentrations of SDS TTHMs and SDS HAAs. Using a membrane with a 5 kD MWCO, the minimum gaseous ozone concentration required to bring about effective NOM degradation and meet regulatory requirements for chlorinated DBPs was 2.5 g/m~3.
机译:研究了臭氧氧化和膜过滤相结合对去除天然有机物(NOM)和形成消毒副产物(DBPs)的影响。臭氧化/过滤导致溶解有机碳(DOC)浓度降低多达50%。此外,腐殖质转化为非腐殖质,腐殖质和非腐殖质浓度的变化分别高达-50%和+ 20%。臭氧/过滤作用导致NOM与氯的反应性降低,形成部分氧化的化合物,从而使模拟分配系统总三卤甲烷(SDS TTHMs)和模拟分配系统卤代乙酸(SDS HAAs)的浓度降低了80%,并且分别为65%。降低膜的分子量截留值(MWCO)导致SDS TTHMs和SDS HAAs浓度降低。使用具有5 kD MWCO的膜,实现有效NOM降解并满足氯化DBP法规要求所需的最小气态臭氧浓度为2.5 g / m〜3。

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