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Resource recovery of Cr(VI) from electroplating wastewater: Laboratory and pilot-scale investigation using fibrous weak anion exchanger

机译:从电镀废水中回收六价铬:利用纤维状弱阴离子交换剂进行实验室和中试规模的研究

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The efficient removal of Cr(VI) was investigated using fibrous ion exchange material as the adsorbent. The breakthrough and operating exchange capacities, elution and regeneration, as well as the influence factors toward the recovery of Cr(VI), were systematically evaluated. The results showed that the novel fibrous adsorbent possessed high operating capacity for Cr(VI) (approximately 400 mg/g for chromate solution, and 160230 mg/g for various electroplating wastewater), excellent kinetic behavior (fed flow rate: 10 mL/(g min)), minor capacity losses (approximately 20%) after 80 adsorption-elution cycles. Based on above laboratory results (Q=0.6-1.0 L/h), the resource recovery process of Cr(VI) from electroplating wastewater was developed through the pilot-scale multi-column facility (Q= 600 L/h). By the saturated adsorption and multiple-use of eluent, the chromate could be selectively enriched even from the electroplating wastewater containing SO42- and Cl- species. The concentration and purity of eluent were obviously enhanced, and could be reused in the electroplating industry. (C) 2015 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:使用纤维离子交换材料作为吸附剂,研究了有效去除Cr(VI)的方法。系统地评估了突破和操作交换容量,洗脱和再生以及影响Cr(VI)回收的因素。结果表明,该新型纤维状吸附剂对Cr(VI)具有较高的操作能力(铬酸盐溶液约为400 mg / g,各种电镀废水约为160230 mg / g),动力学性能优异(进料流量:10 mL /( g min)),在80个吸附-洗脱循环后,容量损失较小(约20%)。基于上述实验室结果(Q = 0.6-1.0 L / h),通过中试规模的多柱设备(Q = 600 L / h)开发了电镀废水中六价铬的资源回收工艺。通过饱和吸附和多次使用洗脱液,甚至可以从含有SO42-和Cl-物种的电镀废水中选择性富集铬酸盐。洗脱液的浓度和纯度明显提高,可以在电镀行业中重复使用。 (C)2015台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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