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Removal of quaternary ammonium compounds in ion exchange process

机译:离子交换过程中季铵化合物去除

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摘要

The study attempted to evaluate the effectiveness of ion exchange process in cationic surfactant (benzalkonium chloride, BAC) removal from model solutions. Four commercial cation-exchange resins were chosen for the batch tests in four doses (2.5–20 mL L-1). The experiments included evaluation of the following parameters on ion exchange efficiency: resin characteristics and dose, presence of inorganic salt and pH of treated solution. The ion exchange process was found to be very effective in cationic surfactant removal – two of tested resins allowed to remove up to 80% of contaminant after contact time of 40 minutes, the last two – after 60 minutes of mixing in all range of doses. The presence of electrolyte neither pH change has no essential effect on surfactant removal efficiency. The analysis of the ion exchange isotherms showed that the strongly-acidic macroporous resin C150 H was characterized by the highest BAC ion exchange capacity (153.8 mg mL-1), while the weakly-acidic gel resin C104 showed the best affinity of the exchanged ions to the resin matrix.
机译:该研究试图评价离子交换过程中的阳离子表面活性剂(苯并氯化铵,BAC)从模型溶液中的效果。选择四种剂量的四个剂量(2.5-20mL L-1)选择四种商业阳离子交换树脂。实验包括对离子交换效率的以下参数的评估:树脂特性和剂量,无机盐的存在和处理的溶液的pH。发现离子交换过程在阳离子表面活性剂中非常有效 - 两种测试树脂在40分钟后允许高达80%的污染物,最后两次 - 在各种剂量中混合60分钟后。电解质的存在均不对表面活性剂去除效率没有必要的作用。离子交换等温线的分析表明,强酸性大孔树脂C150H的特征在于最高的BAC离子交换能力(153.8mg mL-1),而弱酸性凝胶树脂C104显示了交换离子的最佳亲和力到树脂基质。

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