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Minimizing the environmental impact of the regeneration process of an ion exchange bed charged with transition metals

机译:尽量减少充有过渡金属的离子交换床再生过程对环境的影响

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A transport mathematical model to describe the performance of ion exchange processes in fixed beds,to use the regeneration curves as a tool to optimize the regeneration process was developed.The model is based on both the Nemst-PIanck equation and the mass action law.This model allowed to obtain the optimum amount of regenerant agent to be used,regardless the system considered.Therefore,it would be possible to minimize the final waste volume and maximize the recovered bed capacity without any additional consumption of regenerant agent.The results obtained allowed to conclude that the sodium chloride is better regenerant agent than chlorhydric acid for strong acid resins,because it requires a lower amount of equivalents to reach the same regeneration level and is cheaper.Finally,the concentration of regenerant agent required for copper elution is less than that required for the other ions(Cd~(2+)and Zn~(2+)).These results were found to agree with the affinity of the resin.
机译:建立了描述固定床离子交换过程性能的运输数学模型,以再生曲线作为优化再生过程的工具。该模型基于Nemst-PIanck方程和质量作用定律。不管考虑的系统如何,该模型都可以使使用的再生剂达到最佳量。因此,有可能在不增加任何再生剂消耗的情况下,将最终废物量降至最低并最大化回收床容量。结论是氯化钠是强酸树脂的再生剂,优于氯酸,因为它需要较少的当量才能达到相同的再生水平,并且价格便宜。最后,铜洗脱所需的再生剂浓度低于氯化钠。其他离子(Cd〜(2+)和Zn〜(2+))所需的这些结果与树脂的亲和力相吻合。

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