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Recycling of spent nitric acid solution from electrodialysis by diffusion dialysis

机译:通过扩散渗析从电渗析中回收废硝酸溶液

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摘要

Laboratory study of recovering HNO3 solution from acidic effluents discharged by an electrodialysis plant for extracting lithium from concentrated brine at East Taijinar Salt Lake, China, was conducted using diffusion dialysis (DD) with homogenous anion exchange membrane (DF120). The effects of concentrations of nitric acid and metal ions (including Li, Na, K, Mg, Ca) and water to spent acid flow rate (W/A) ratio on the performance of diffusion dialysis were investigated. Results indicated that acid recovery increased with the concentration of the feed. The membrane showed moderate monovalent permselectivity: divalent cations were more effectively retained as opposed to monovalent cations. The selectivity between metal and hydrogen ions were impaired by increasing W/A ratio. The acid recovery reached its maximum at 3.0 mol/L H~+, demonstrating that the efficiency at feeding concentrations above 3.0 mol/L would be low for the DF120 membrane. The increase of salt content in the spent acid to 3.0 mol/L and above conceivably impaired the selectivity of the membrane. As such, acid recovery should be best performed with acid effluents with lower-to-medium salt content and hydrogen concentration. Also, a suitably lower W/A ratio should be adopted for effective acid recovery with low water cost.
机译:使用带有均匀阴离子交换膜(DF120)的扩散渗析(DD)技术,对电渗析厂排出的酸性废水中的HNO3溶液进行回收利用,以从浓太湖盐湖中提取锂,进行了实验室研究。研究了硝酸和金属离子(包括Li,Na,K,Mg,Ca)的浓度以及水与废酸流速(W / A)之比对扩散渗析性能的影响。结果表明酸回收率随进料浓度的增加而增加。膜表现出中等的单价渗透选择性:与单价阳离子相反,二价阳离子被更有效地保留。金属离子和氢离子之间的选择性会因增加W / A比而受到损害。酸回收率在3.0 mol / L H〜+时达到最大值,表明DF120膜在进料浓度高于3.0 mol / L时效率较低。废酸中的盐含量增加至3.0 mol / L及以上可能会损害膜的选择性。因此,最好使用中低盐含量和氢气浓度的酸废水进行酸回收。另外,为了降低水的成本有效地回收酸,应采用适当较低的W / A比。

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