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用交联阴离子交换膜通过电电渗析去除磷酸中的金属离子

Removal of Metal Ions in Phosphoric Acid by Electro-Electrodialysis with Cross-Linked Anion-Exchange Membranes.

作者信息

Duan Xiaoling, Wang Cun-Wen, Wang Tielin, Xie Xiaolin, Zhou Xingping, Ye Yunsheng

机构信息

Hubei Key Laboratory of Purification and Application of Plant Anti-Cancer Active Ingredients, School of Chemistry and Life Sciences, Hubei University of Education, Wuhan 430205, China.

Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

ACS Omega. 2021 Nov 24;6(48):32417-32430. doi: 10.1021/acsomega.1c03720. eCollection 2021 Dec 7.

Abstract

There are numerous metallic impurities in wet phosphoric acid, which causes striking negative effects on industrial phosphoric acid production. In this study, the purification behavior of metallic impurities (Fe, Mg, Ca) from a wet phosphoric acid solution employing the electro-electrodialysis (EED) technology was investigated. The cross-linked polysulfone anion-exchange membranes (AEMs) for EED were prepared using ,,','-tetramethyl-1,6-hexanediamine (TMHDA) to achieve simultaneous cross-linking and quaternization without any cross-linkers or catalysts. The performance of the resulting membranes can be determined using quaternization reagents. When the molar ratio of trimethylamine/TMHDA/chloromethylated polysulfone is 3:1:1, the cross-linked membrane CQAPSU-3-1 exhibits lower water swelling and membrane area resistance than the non-cross-linked membrane. The low membrane area resistance of CQAPSU-3-1 with long alkyl chains is obtained due to the hydrophilic-hydrophobic microphase separation structure formed by TMHDA. EED experiments with different initial phosphoric acid concentrations of 0.52 and 1.07 M were conducted to evaluate the phosphoric acid purification of different AEMs. The results show that the EED experiments were more suitable for the purification of wet phosphoric acid solution at low concentrations. It was found that the phosphoric acid concentration in the anode compartment could be increased from 0.52 to 1.04 M. Through optimization, with an initial acid concentration of 0.52 M, CQAPSU-3-1 exhibits an enhanced metallic impurity removal ratio of higher than 72.0%, the current efficiency of more than 90%, and energy consumption of 0.48 kWh/kg. Therefore, CQAPSU-3-1 exhibits much higher purification efficiency than other membranes at a low initial phosphoric acid concentration, suggesting its potential in phosphoric acid purification application.

摘要

湿法磷酸中存在大量金属杂质,这对工业磷酸生产产生了显著的负面影响。在本研究中,采用电渗析(EED)技术研究了从湿法磷酸溶液中去除金属杂质(铁、镁、钙)的净化行为。使用1,6-己二胺四甲基氯化铵(TMHDA)制备用于EED的交联聚砜阴离子交换膜(AEMs),无需任何交联剂或催化剂即可实现同时交联和季铵化。所得膜的性能可用季铵化试剂测定。当三甲胺/TMHDA/氯甲基化聚砜的摩尔比为3:1:1时,交联膜CQAPSU-3-1比非交联膜表现出更低的水溶胀率和膜面电阻。由于TMHDA形成的亲水-疏水微相分离结构,具有长烷基链的CQAPSU-3-1具有较低的膜面电阻。进行了不同初始磷酸浓度(0.52和1.07 M)的EED实验,以评估不同AEMs对磷酸的净化效果。结果表明,EED实验更适合于低浓度湿法磷酸溶液的净化。发现阳极室中的磷酸浓度可从0.52 M提高到1.04 M。通过优化,当初始酸浓度为0.52 M时,CQAPSU-3-1表现出更高的金属杂质去除率,高于72.0%,电流效率超过90%,能耗为0.48 kWh/kg。因此,在低初始磷酸浓度下,CQAPSU-3-1比其他膜表现出更高的净化效率,表明其在磷酸净化应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3d7/8655774/a78059200f74/ao1c03720_0010.jpg

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