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Development of a chlorine-resistant polyamide reverse osmosis membrane

机译:耐氯聚酰胺反渗透膜的开发

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The chlorine resistance of polyamides synthesized using various diamines and acid chlorides was investigated.The retention ratio of molecular weight and the polymer weight loss after the immersion in chlorine solution were used as the evaluation for chlorine resistance.The influence of the diamine chemical structures on the chlorine resistance is discussed.After screening 17 diamines,N,N'-dimethyl-m-phenylenediamine (N,N'-DMMPD) was selected in the preparation of the reverse osmosis polyamide membrane.The membrane prepared from N,N'-DMMPD and 1,3,5-benzenetricarbonyl trichloride (TMC) showed much higher chlorine resistance than commercial polyamide and cellulose acetate RO membranes.The use of mixture of TMC and isophthaloyl dichloride (IPC) in the preparation of the polyamide membrane brought about further improvement in the chlorine resistance.The solute rejection hardly changed after the immersion in aqueous sodium hypochlorite solution (200 ppm) at 40°C for 96 h.
机译:研究了由各种二胺和酰氯合成的聚酰胺的耐氯性,将分子量的保留率和浸渍在氯溶液中后的聚合物失重作为耐氯性的评价指标。在筛选了17种二胺后,选择了N,N'-二甲基间苯二胺(N,N'-DMMPD)制备反渗透聚酰胺膜。 1,3,5-苯三羰基三氯化物(TMC)的耐氯性比市售聚酰胺和醋酸纤维素RO膜高得多.TMC和间苯二甲酰二氯(IPC)的混合物用于制备聚酰胺膜带来了进一步的改进。将其浸入40°C的次氯酸钠水溶液(200 ppm)中96小时后,溶质排斥几乎不变。

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