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Kinetics and extraction of heavy metals resources from automobile shredder residue

机译:从汽车碎渣机中提取重金属资源的动力学

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Automobile shredder residue (ASR) has been considered as risky waste due to presence of high concentration of toxic metals, which can pose an environmental threat of being leached out under acidic conditions in the landfill. The present study investigated the extraction of Zn, Cu, Pb and Cd from ASR using water over a range of pH (2-8), temperature (25-55 degrees C), liquid/solid (L/S) ratio (10-100 mL g(-1)) and particle size (0.0-4.75 mm). The extraction kinetics of Zn, Cu, Pb and Cd from ASR using water were also analyzed by the shrinking core model (SCM) and second-order reaction model. The extraction rates of metals from ASR were improved by increasing different temperatures and liquid to solid ratios. A maximum extraction of metals was achieved at pH-2, temperature -25 degrees C and liquid to solid ratio-100 mL g(-1). Metal extractions were not efficient at alkaline pH of water. The smallest size fraction of ASR was highly recommended for extraction of heavy metals rather than the larger fractions. The extraction data were best fitted (R-2 > 0.95) by the second order reaction model, but not by the SCM (R-2 < 0.95). (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:由于存在高浓度的有毒金属,汽车碎纸机残留物(ASR)被认为是有风险的废物,这可能会对在酸性条件下在垃圾填埋场中浸出造成环境威胁。本研究研究了在一定pH值(2-8),温度(25-55摄氏度),液/固(L / S)比(10-10)范围内用水从ASR中提取Zn,Cu,Pb和Cd的方法。 100 mL g(-1))和粒径(0.0-4.75 mm)。还通过收缩核模型(SCM)和二阶反应模型分析了用水萃取ASR中的Zn,Cu,Pb和Cd的动力学。通过增加不同的温度和液固比,可以提高ASR中金属的提取率。在pH-2,温度-25摄氏度和液固比为100 mL g(-1)时,金属的最大萃取量得以实现。金属提取在水的碱性pH下效率不高。强烈建议使用最小尺寸的ASR提取重金属,而不是较大的部分。提取数据最适合二阶反应模型拟合(R-2> 0.95),而不是SCM(R-2 <0.95)。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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