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Adsorption of gold from waste mobile phones by biochar and activated carbon in gold iodized solution

机译:通过生物炭和活性炭从废手机吸附金碘化溶液中的活性炭

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摘要

The application of laboratory-generated biochar and activated carbon adsorbents in gold iodized solution for the recycling of waste mobile phone printed circuit boards (WMPCBs) is investigated. This research aims to solve problems associated with the existing gold recovery technologies of WMPCBs. Currently, the disposal of WMPCBs is expensive, involves complex processes, and contributes to secondary pollution. In this study, laboratory-generated biochar is produced from corn straw, wheat straw, and wood chips by pyrolysis. The effects of factors on the adsorption efficiency are investigated, and the optimal operating conditions for biochar and activated carbon adsorption are determined. The following optimal parameters were found for activated carbon: temperature = 25 °C, particle size = 40-60 mesh, dosage = 0.05 g/10 mL, pH = 7, reaction time = 2 h, and oscillation frequency = 200 r/min. The adsorption efficiency reached 98.6%. For biochar, optimization involved: raw material from corn straw at a pyrolysis temperature = 700 °C, reaction time = 5 h, oscillation frequency = 200 r/min, pH = 3, dosage = 0.15 g/10 mL, and temperature = 50 °C. An adsorption efficiency of 98% was achieved. The two adsorbents were compared, and results demonstrated that the adsorption properties of the laboratory-generated biochar were slightly inferior to those of the activated carbon; however, they were similar. Biochar adsorption can reuse waste, which may not only solve the current problems related to WMPCB recycling, but can help to achieve a "win-win" situation of increased environmental protection and sustainable utilization of resources.
机译:研究了实验室生物炭和活性炭吸附剂在金碘化溶液中的应用,用于回收废物手机印刷电路板(WMPCB)。本研究旨在解决与WMPCBS现有的金回收技术相关的问题。目前,WMPCBS的处置昂贵,涉及复杂的过程,有助于二次污染。在这项研究中,通过热解产生了实验室生物的生物炭,通过热解产生了玉米秸秆,小麦稻草和木屑。研究了因素对吸附效率的影响,并确定了生物炭和活性炭吸附的最佳操作条件。发现以下最佳参数用于活性炭:温度= 25℃,粒径= 40-60目,剂量= 0.05g / 10ml,pH = 7,反应时间= 2小时,振荡频率= 200 r / min 。吸附效率达到98.6%。对于生物炭,涉及优化:来自玉米秸秆的原料在热解温度= 700℃,反应时间= 5h,振荡频率= 200 r / min,pH = 3,剂量= 0.15g / 10 ml,温度= 50 °C。达到了98%的吸附效率。比较了两种吸附剂,结果表明,实验室产生的生物炭的吸附性能略逊于活性炭;但是,它们是相似的。生物炭吸附可以重用废物,这可能不仅可以解决与WMPCB回收相关的当前问题,但可以帮助实现环境保护增加和资源可持续利用的“双赢”形势。

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  • 来源
    《Waste Management》 |2021年第2期|530-537|共8页
  • 作者单位

    College of Environmental Science and Engineering Nankai University Tianjin 300350 People's Republic of China;

    College of Environmental Science and Engineering Nankai University Tianjin 300350 People's Republic of China;

    College of Environmental Science and Engineering Nankai University Tianjin 300350 People's Republic of China;

    College of Environmental Science and Engineering Nankai University Tianjin 300350 People's Republic of China;

    College of Environmental Science and Engineering Nankai University Tianjin 300350 People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Printed circuit boards; Gold recovery; Activated carbon; Biochar; Adsorption;

    机译:印刷电路板;黄金恢复;活性炭;生物炭;吸附;

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