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Comparison of ion exchange process configurations for arsenic removal from natural waters

机译:用于从天然水中去除砷的离子交换工艺配置的比较

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摘要

Influence of process configuration on ion exchange of As(V) was studied using numerical simulations. A new explicit competitive ion exchange model was introduced to facilitate fast computation. Model parameters were determined using published data on arsenic removal from contaminated waters by hydrous ferric oxide (HFO) hybrid materials and strong anion exchangers (SBA). Performance of batch and continuous processes was assessed in terms productivity and resin utilization. It was shown that the HFO resin with very high As(V) selectivity is best utilized in batch operation and counter-current simulated moving bed (SMB) configuration does not give any advantage. The SBA resin has low selectivity for As(V) anions and counter-current operation was found to be essential. A steady state SMB system with continuous removal of the concentrated As(V) fraction was proposed. It was also shown that productivity of both systems can be substantially increased using shallow beds and short loading cycles.
机译:使用数值模拟研究了工艺配置对As(V)离子交换的影响。引入了一种新的显式竞争离子交换模型,以促进快速计算。使用公开的数据确定模型参数,这些数据是通过含水三氧化二铁(HFO)杂化材料和强阴离子交换剂(SBA)从污染水中去除砷的。分批和连续过程的性能根据生产率和树脂利用率进行评估。结果表明,具有非常高的As(V)选择性的HFO树脂最适合用于间歇操作,而逆流模拟移动床(SMB)的配置没有任何优势。 SBA树脂对As(V)阴离子的选择性低,发现逆流操作至关重要。提出了一种稳定状态的SMB系统,可连续去除浓缩的As(V)级分。还表明,使用浅床和较短的装载周期可以大大提高两个系统的生产率。

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