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Zinc Leaching from Tire Crumb Rubber

机译:轮胎废胶中的锌浸出

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摘要

Because tires contain approximately 1-2% zinc by weight, zinc leaching is an environmental concern associated with civil engineering applications of tire crumb rubber. An assessment of zinc leaching data from 14 studies in the published literature indicates that increasing zinc leaching is associated with lower pH and longer leaching times, but the data display a wide range of zinc concentrations, and do not address the effect of crumb rubber size or the dynamics of zinc leaching during flow through porous crumb rubber. The present study was undertaken to investigate the effect of crumb rubber size using the synthetic precipitation leaching procedure (SPLP), the effect of exposure time using quiescent batch leaching tests, and the dynamics of zinc leaching using column tests. Results indicate that zinc leaching from tire crumb rubber increases with smaller crumb rubber and longer exposure time. Results from SPLP and quiescent batch leaching tests are interpreted with a single-parameter leaching model that predicts a constant rate of zinc leaching up to 96 h. Breakthrough curves from column tests displayed an initial pulse of elevated zinc concentration (~3 mg/L) before settling down to a steady-state value (~0.2 mg/L), and were modeled with the software package HYDRUS-1D. Washing crumb rubber reduces this initial pulse but does not change the steady-state value. No leaching experiment significantly reduced the reservoir of zinc in the crumb rubber.
机译:由于轮胎按重量计含有约1-2%的锌,因此锌浸出是与轮胎屑橡胶的土木工程应用相关的环境问题。对已发表文献中14项研究中锌浸出数据的评估表明,锌浸出增加与pH值降低和浸出时间延长有关,但该数据显示锌浓度范围很广,并且没有解决碎胶的影响。流过多孔碎屑橡胶期间锌浸出的动力学。进行本研究以研究使用合成沉淀浸出程序(SPLP)的胶粒尺寸的影响,使用静态间歇浸出测试的暴露时间的影响以及使用柱测试的锌浸出的动力学。结果表明,随着胎体橡胶的减少和暴露时间的延长,从胎体橡胶中浸出的锌也会增加。 SPLP和静态间歇浸出测试的结果用单参数浸出模型解释,该模型可预测锌浸出直至96小时的恒定速率。柱测试的突破曲线显示出锌浓度升高的初始脉冲(〜3 mg / L),然后降至稳定值(〜0.2 mg / L),并使用软件包HYDRUS-1D进行了建模。清洗橡胶屑可减少该初始脉冲,但不会改变稳态值。没有浸出实验能显着减少碎屑橡胶中锌的储量。

著录项

  • 来源
    《Environmental Science & Technology》 |2012年第23期|12856-12863|共8页
  • 作者单位

    Department of Civil Engineering, University of Colorado Denver, Campus Box 113, PO Box 173364, Denver, Colorado, United States;

    Department of Civil Engineering, University of Colorado Denver, Campus Box 113, PO Box 173364, Denver, Colorado, United States;

    Department of Civil Engineering, University of Colorado Denver, Campus Box 113, PO Box 173364, Denver, Colorado, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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