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Degradation Of Amine-based Water Treatment Polymers During Chloramination As N-nitrosodimethylamine (ndma) Precursors

机译:N-亚硝基二甲胺(ndma)前体在氯化过程中降解基于胺的水处理聚合物

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摘要

Recent studies indicated that water treatment polymers such as poly(epichlorohydrin dimethylamine) (polyamine) and poly(diallyldimethylammonium chloride) (polyDADMAC) may form N-nitrosodimethylamine (NDMA) when in contact with chloramine water disinfectants. To minimize such potential risk and improve the polymer products, the mechanisms of how the polymers behave as NDMA precursors need to be elucidated. Direct chloramination of polymers and intermediate monomers in reagent water was conducted to probe the predominant mechanisms. The impact of polymer properties including polymer purity, polymer molecular weight and structure, residual dimethylamine (DMA), and other intermediate compounds involved in polymer synthesis, and reaction conditions such as pH, oxidant dose, and contact time on the NDMA formation potential (NDMA-FP) was investigated. Polymer degradation after reaction with chloramines was monitored at the molecular level using FT-IR and Raman spectroscopy. Overall, polyamines have greater NDMA-FP than polyDADMAC, and the NDMA formation from both polymers is strongly related to polymer degradation and DMA release during chloramination. Polyamines' tertiary amine chain ends play a major role in their NDMA-FP, while polyDADMACs' NDMA-FP is related to degradation of the quaternary ammonium ring group.
机译:最近的研究表明,与氯胺水消毒剂接触时,水处理聚合物,例如聚(表氯醇二甲基胺)(聚胺)和聚(二烯丙基二甲基氯化铵)(polyDADMAC)可能形成N-亚硝基二甲基胺(NDMA)。为了最小化这种潜在风险并改善聚合物产品,需要阐明聚合物作为NDMA前体的行为机理。进行了试剂水中的聚合物和中间单体的直接氯化,以探究其主要机理。聚合物性质,包括聚合物纯度,聚合物分子量和结构,残留的二甲基胺(DMA)以及参与聚合物合成的其他中间化合物以及反应条件(例如pH,氧化剂剂量和接触时间)对NDMA形成电位(NDMA)的影响-FP)。使用FT-IR和拉曼光谱在分子水平上监测与氯胺反应后的聚合物降解。总体而言,聚胺比聚DADMAC具有更大的NDMA-FP,由两种聚合物形成的NDMA与氯化过程中聚合物的降解和DMA的释放密切相关。聚胺的叔胺链末端在其NDMA-FP中起主要作用,而聚DADMAC的NDMA-FP与季铵环基团的降解有关。

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