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首页> 外文期刊>Journal of Hazardous Materials >Heavy metal migration during electroremediation of fly ash from different wastes-Modelling
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Heavy metal migration during electroremediation of fly ash from different wastes-Modelling

机译:电修复不同废物中的飞灰过程中的重金属迁移-模型化

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摘要

Fly ash is an airborne material which is considered hazardous waste due to its enrichment on heavy metals. Depending on the waste from which they are originated, fly ash may be further valorised, e.g. as soil amendment or concrete and ceramics adjuvant, or landfilled, when defined as hazardous material. In any case, heavy metal content has to be decreased either for fly ash valorisation or for complying with landfill criteria. The electrodialytic (EDR) process is a remediation technique based on the principle of electrokinetics and dialysis, having the aim to remove heavy metals from contaminated solid media. EDR was here applied to fly ashes from the combustion of straw (ST), from the incineration of municipal solid waste (DK and PT) and from the co-combustion of wood (CW). A statistical study, using F tests, Bonferroni multiple comparison method and a categorical regression, was carried out to determine which variables ("Ash type", "Duration", "Initial pH", "Final pH", "Acidification" and "Dissolution") were the most significant for EDR efficiency. After establishing these, the selected variables were then used to characterize some kinetic parameters, from metals migration during EDR, using a biregressional design. Cd, Cr, Cu, Ca and Zn migration velocity and acceleration to the electrodes (anode and cathode) were then considered. Cd and Cu migration to the cathode were found to be significantly influenced by "Ash type", "Duration", "Final pH" and "Dissolution".
机译:粉煤灰是一种空气传播的物质,由于其富含重金属,因此被视为危险废物。根据其产生的废物,粉煤灰可能会进一步增值,例如当被定义为有害物质时,作为土壤改良剂或混凝土和陶瓷助剂,或填埋。在任何情况下,都必须降低重金属含量,以实现粉煤灰平衡或符合垃圾填埋标准。电渗析(EDR)工艺是一种基于电动学和渗析原理的修复技术,旨在从污染的固体介质中去除重金属。在这里,EDR用于秸秆燃烧(ST),城市固体废物焚烧(DK和PT)和木材共燃烧(CW)产生的飞灰。使用F检验,Bonferroni多重比较方法和分类回归进行统计研究,以确定哪些变量(“灰分类型”,“持续时间”,“初始pH”,“最终pH”,“酸化”和“溶出度”)。 ”)对于EDR效率最为重要。建立这些参数后,然后使用双回归设计将所选变量用于表征一些动力学参数,这些动力学参数来自EDR期间的金属迁移。然后考虑了Cd,Cr,Cu,Ca和Zn迁移速度和向电极(阳极和阴极)的加速。发现镉和铜向阴极的迁移受“灰型”,“持续时间”,“最终pH”和“溶解度”的显着影响。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2010年第3期|366-371|共6页
  • 作者单位

    Department of Earth Sciences, Geochemistry, Faculty of Geosciences, Utrecht University, PO Box 80,021,3508 TA Utrecht, The Netherlands;

    Center of Mathematic Applications, Faculty of Science and Technology, New University of Lisbon, 2829-516 Caparica, Portugal;

    Center of Mathematic Applications, Faculty of Science and Technology, New University of Lisbon, 2829-516 Caparica, Portugal;

  • 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
  • 中图分类
  • 关键词

    electrodialytic process; fly ash; nonlinear biregressional design; kinetic parameters;

    机译:电渗析工艺粉煤灰非线性双向回归设计;动力学参数;

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