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Extraction and recovery of chromium from electroplating sludge

机译:电镀污泥中铬的提取与回收

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This work reports a study of the extraction and recovery of chromium from the wastes (class I dangerous) generated by a galvanic manufacturer. Commercial HCl at room temperature was employed, and the conditions of the extraction process were optimized according to a sequential experimental design, which also included the acid concentration and contact time as variables. The best extraction conditions (80% v/v; 30 min; 97.6% Cr) for the chromic sludge were chosen in order to make the recovery process economically feasible. After each extraction, the residue was submitted to leaching essays, to assess environmental risks. It was found that sludge could be characterized as no longer dangerous. In the recovery study, a simple and low-cost technique was evaluated for selectivity based on an oxidation step with hydrogen peroxide. A 2~3 factorial design to assess the influence of oxidation time (min), temperature (℃) and peroxide amount (mol/L) was employed. The best conditions, yielding a chromium recovery of about 92%, were a time of 60 min, a temperature of 60℃ and 2.1 mol/L peroxide. Additional essays revealed that the same result could be obtained with more economic conditions (40 min, 1.4 mol/L peroxide and 60℃). This technique proved not only effective in comparison with existing alternatives, but also low costing.
机译:这项工作报告了从电镀生产商产生的废物(危险为I类)中提取和回收铬的研究。使用室温下的商业HCl,并根据顺序实验设计优化了萃取过程的条件,该实验设计还包括酸浓度和接触时间作为变量。选择最佳的萃取条件(80%v / v; 30分钟; 97.6%Cr),以使回收过程在经济上可行。每次提取后,将残留物提交淋滤论文,以评估环境风险。人们发现污泥不再具有危险性。在回收研究中,基于过氧化氢的氧化步骤,评估了一种简单且低成本的选择性。采用2〜3阶因子设计评估氧化时间(min),温度(℃)和过氧化物量(mol / L)的影响。最佳的条件是60分钟的时间,60℃的温度和2.1 mol / L的过氧化物,铬的回收率约为92%。其他文章表明,在更经济的条件下(40分钟,1.4 mol / L过氧化物和60℃)可以获得相同的结果。与现有的替代方法相比,该技术不仅有效,而且成本低廉。

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