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In Situ Immobilization of Heavy Metals in Severely Weathered Tailings Amended with Food Waste-Based Compost and Zeolite

机译:在重度风化的尾矿中用食物垃圾基堆肥和沸石对重金属进行原位固定

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摘要

Biowastes and inorganic additives are acknowledged efficient but site-dependent alternatives for in situ metal immobilization. The present study evaluates food waste-based compost, a particularly abundant type of biowaste in South Korea, and zeolite as amendments for increasing pH and reducing metal leaching potential in weathered tailings from an abandoned mine site. Two types of biowaste were used: food waste compost (60 % food waste and 40 % sawdust) and market compost (50 % food waste, 10 % agricultural waste, 10 % manure, and 30 % lime). Materials were thoroughly characterized. Leaching tests were then performed in reactors rilled with various mixtures of organic-inorganic amended tailings, over a 4-week period. The in situ metal immobilization efficiency of compost was evaluated based on collected leachate quality. Results indicated that both organic and inorganic materials were successful for increasing pH (from 3.0 to up to 8.1) and metal immobilization, except for Pb and As, with which leaching potential increased in most amended reactors relative to un-amended tailings (up to 43 and 158 %, respectively). Over the duration of the experiment, the cumulative reduction of metal leaching potential ranked as follows: Zn (44-91 %)>Mn (4-76 %)>Cr (20-53 %)>Fe (34-44 %)>Cd (17-43 %)> Al (0.5-24 %). Among mixtures, combined biowaste and zeolite-amended tailings showed the best perfor- . mance for increasing pH (7.5-8.1) and for metal immobilization. Chemical and biological processes, such as sorption and precipitation processes, were predominant. Overall, the study provides useful data on the efficient use of food waste compost for acid mine drainage prevention in South Korea.
机译:人们公认,生物废料和无机添加剂是有效的但依赖于现场的金属固定方法。本研究评估了以食物垃圾为基础的堆肥(一种在韩国尤为丰富的生物废物),以及沸石作为提高pH值和减少废弃矿山风化尾矿中金属浸出潜力的改良剂。使用了两种类型的生物废物:食物垃圾堆肥(60%的食物垃圾和40%的木屑)和市场堆肥(50%的食物垃圾,10%的农业垃圾,10%的肥料和30%的石灰)。材料被彻底表征。然后在用有机-无机改性尾矿的各种混合物钻孔的反应器中进行浸出测试,历时4周。根据收集的渗滤液质量评估堆肥的原位金属固定效率。结果表明,有机材料和无机材料均可成功地将pH值(从3.0升高至8.1)和金属固定化,但Pb和As除外,相对于未修正的尾矿,Pb和As在大多数修正的反应器中的浸出潜力均增加(高达43和158%)。在实验过程中,金属浸出电位的累积降低排名如下:锌(44-91%)>锰(4-76%)>铬(20-53%)>​​铁(34-44%)> Cd(17-43%)> Al(0.5-24%)。在混合物中,生物废料和沸石改良尾矿的组合表现出最好的性能。可以提高pH(7.5-8.1)和固定金属。化学和生物过程(例如吸附和沉淀过程)占主导地位。总体而言,该研究提供了有关有效利用食物垃圾堆肥预防韩国酸性矿山排水的有用数据。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2013年第1期|1388.1-1388.9|共9页
  • 作者单位

    Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology (KAIST), 335 Gwahangno,Yuseong-gu, Daejeon 305-701, South Korea;

    Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology (KAIST), 335 Gwahangno,Yuseong-gu, Daejeon 305-701, South Korea,Research Institute, Mines and Environment, University of Quebec in Abitibi-Temiscamingue (UQAT), 445 Boul. de l'Universite, Rouyn-Noranda, Quebec, Canada J9X 5E4;

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

    tailings; metal leaching potential; food waste compost; zeolite; acid mine drainage prevention;

    机译:尾矿;金属浸出电位;食物垃圾堆肥;沸石酸性矿山排水预防;

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