Removal of nickel through sulfide precipitation and characterization of electroplating wastewater sludge

IF 2.4 4区 环境科学与生态学 Q2 WATER RESOURCES Water Quality Research Journal Pub Date : 2020-07-28 DOI:10.2166/wqrj.2020.116
Sarah Jerroumi, Mohammed Amarine, H. Nour, B. Lekhlif, J. Jamal
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引用次数: 11

Abstract

This work consists of the removal of nickel by sulfide precipitation from industrial electroplating wastewater and characterization of the produced sludge. Tests are carried out in a perfectly stirred batch reactor on electroplating industrial solution and synthetic solution prepared in the laboratory. The aim is to evaluate the impact of complexing agents formed during precipitation of metal ions in the industrial effluent. The concentration of nickel in both solutions is 100 mg/L. The operating conditions for the sulfide precipitation process are optimized: pH, molar ratio [S=]/[Ni2+] and dosage of S= ions. For an initial pH of 5 and an equimolar ratio of [S=]/[Ni2+]:1/1, the results show that the removal efficiency of Ni2+ ions is approaching 91 and 94% for industrial and synthetic solutions, respectively. Otherwise, for the same pH value in supersaturation conditions ([S=]/[Ni2+]:1.5/1), the removal efficiency is approaching 62 and 92% for industrial and synthetic solutions, respectively. For an effective metal removal, the optimal dosage of sulfide ions was evaluated. For 33 mg/L of S=, the removal efficiency of Ni2+ is approximately 90%. The resulting sludge has been characterized by X-ray diffractometry, scanning electron microscopy, infrared spectroscopy and thermal analysis. It consists essentially of millerite and nickel oxide.
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硫化物沉淀除镍及电镀废水污泥的特性研究
本工作包括硫化沉淀法去除工业电镀废水中的镍,并对产生的污泥进行表征。在完全搅拌间歇式反应器中对实验室制备的电镀工业溶液和合成溶液进行了试验。目的是评价在工业废水中金属离子沉淀过程中形成的络合剂的影响。两种溶液中镍的浓度均为100mg /L。优化了硫化物沉淀过程的操作条件:pH、[S=]/[Ni2+]摩尔比和S=离子用量。当初始pH为5,等摩尔比为[S=]/[Ni2+]:1/1时,工业溶液和合成溶液对Ni2+离子的去除率分别接近91%和94%。而在相同pH值的过饱和条件下([S=]/[Ni2+]:1.5/1),工业溶液和合成溶液的去除率分别接近62%和92%。为了有效去除金属,对硫化物离子的最佳用量进行了评价。当S=浓度为33 mg/L时,Ni2+的去除率约为90%。所得污泥已通过x射线衍射、扫描电子显微镜、红外光谱和热分析进行了表征。它主要由千镍石和氧化镍组成。
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CiteScore
4.50
自引率
8.70%
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0
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