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Hydrometallurgical recovery of heavy metals from low grade automobile shredder residue (ASR): An application of advanced Fenton process (AFP)

机译:从低级汽车粉碎残渣(ASR)中进行湿法冶金重金属:先进的Fenton工艺(AFP)的应用

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摘要

To investigate the leaching and recovery of heavy metals from low-grade automobile shredder residue (ASR), the effects of nitric acid (HNO_3) and hydrogen peroxide (H_2O_2) concentrations, liquid/solid (L/S) ratio, leaching temperature and ASR particle size fractions on the heavy metal leaching rate were determined. The heavy metals were recovered by fractional precipitation and advanced Fenton process (AFP) at different pHs. The toxicity characteristic leaching procedure (TCLP) test was also performed in the residue remaining after heavy metal leaching to evaluate the potential toxicity of ASR. The heavy metal leaching efficiency was increased with increasing HNO_3 and H_2O_2 concentrations, L/S ratio and temperature. The heavy metal leaching efficiencies were maximized in the lowest ASR size fraction at 303 K and L/S ratio of 100 mL/g. The kinetic study showed that the metal leaching was best represented by a second-order reaction model, with a value of R~2 > 0.99 for all selected heavy metals. The determined activation energy (kJ/mol) was 21.61, 17.10,12.15, 34.50, 13.07 and 11.45 for Zn, Fe, Ni, Pb, Cd and Cr, respectively. In the final residue, the concentrations of Cd, Cr and Pb were under their threshold limits in all ASR size fractions. Hydrometallurgical metal recovery was greatly increased by AFP up to 99.96% for Zn, 99.97% for Fe, 95.62% for Ni, 99.62% for Pb, 94.11% for Cd and 96.79% for Cr. AFP is highly recommended for the recovery of leached metals from solution even at low concentrations.
机译:研究低级汽车碎渣(ASR)中重金属的浸出和回收,硝酸(HNO_3)和过氧化氢(H_2O_2)浓度,液/固(L / S)比,浸出温度和ASR的影响确定了重金属浸出速率的粒度分数。通过分步沉淀和先进的Fenton工艺(AFP)在不同的pH值下回收重金属。还对重金属浸出后残留的残留物进行了毒性特征浸出程序(TCLP)测试,以评估ASR的潜在毒性。随着HNO_3和H_2O_2浓度,L / S比和温度的升高,重金属浸出效率增加。重金属的浸出效率在303 K和100 mL / g的L / S比的最低ASR粒度级分中达到最大。动力学研究表明,金属浸出最好用二阶反应模型来表示,所有重金属的R〜2> 0.99。所确定的锌,铁,镍,铅,镉和铬的活化能(kJ / mol)分别为21.61、17.10、12.15、34.50、13.07和11.45。在最终残留物中,所有ASR粒度级分中Cd,Cr和Pb的浓度均在其阈值限值以下。 AFP大大提高了湿法冶金金属的回收率,锌达99.96%,铁达99.97%,镍达95.62%,铅达99.62%,镉达94.11%,铬达96.79%。强烈建议使用AFP从溶液中回收低含量的浸出金属。

著录项

  • 来源
    《Journal of Environmental Management》 |2015年第15期|1-10|共10页
  • 作者

    Jiwan Singh; Byeong-Kyu Lee;

  • 作者单位

    Department of Civil and Environmental Engineering, University of Ulsan, Daehkro 93, Namgu, Ulson 680-749, South Korea,Department of Environmental Engineering, Kwangwoon University, Seoul 139-701, South Korea;

    Department of Civil and Environmental Engineering, University of Ulsan, Daehkro 93, Namgu, Ulson 680-749, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ASR; Heavy metals; Leaching; Kinetics; Analysis of variances (ANOVA); AFP;

    机译:ASR;重金属;浸出动力学;方差分析(ANOVA);法新社;

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