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Leaching of arsenic, copper and chromium from thermally treated soil

机译:热处理土壤中砷,铜和铬的浸出

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摘要

Thermal treatment, if properly performed, is an effective way of destroying organic compounds in contaminated soil, while impact on co-present inorganic contaminants varies depending on the element. Leaching of trace elements in thermally treated soil can be altered by co-combusting different types of materials. This study aimed at assessing changes in mobility of As, Cr and Cu in thermally treated soil as affected by addition of industrial by-products prior to soil combustion. Contaminated soil was mixed with either waste of gypsum boards, a steel processing residue (Fe_3O_4), fly ash from wood and coal combustion or a steel abrasive (96.5% Fe~0). The mixes and unamended soil were thermally treated at 800 ℃ and divided into a fine fraction <0.125 mm and a coarse fraction >0.125 mm to simulate particle separation occurring in thermal treatment plants. The impact of the treatment on element behaviour was assessed by a batch leaching test, X-ray absorption spectroscopy and dispersive X-ray spectrometry. The results suggest that thermal treatment is highly unfavourable for As contaminated soils as it increased both the As leaching in the fine particle size fraction and the mass of the fines (up to 92%). Soil amendment with Fe-containing compounds prior to the thermal treatment reduced As leaching to the levels acceptable for hazardous waste landfills, but only in the coarse fraction, which does not justify the usefulness of such treatment. Among the amendments used, gypsum most effectively reduced leaching of Cr and Cu in thermally treated soil and could be recommended for soils that do not contain As. Fly ash was the least effective amendment as it increased leaching of both Cr and As in majority of samples.
机译:如果进行适当的热处理,则是破坏受污染土壤中有机化合物的有效方法,而对共存的无机污染物的影响则取决于元素。可以通过共同燃烧不同类型的材料来改变热处理土壤中微量元素的浸出。这项研究旨在评估热处理土壤中砷,铬和铜的迁移率变化,这些变化受土壤燃烧之前添加工业副产物的影响。将污染的土壤与石膏板废料,钢铁加工残渣(Fe_3O_4),木材和煤炭燃烧产生的飞灰或钢铁磨料(96.5%Fe〜0)混合。将混合料和未改良的土壤在800℃下进行热处理,分为细段<0.125 mm和粗段> 0.125 mm,以模拟热处理厂中发生的颗粒分离。通过分批浸出试验,X射线吸收光谱法和色散X射线光谱法评估了处理对元素行为的影响。结果表明,对于砷污染的土壤,热处理非常不利,因为这会增加细粒级分中的砷浸出率和细粉质量(最高92%)。在热处理之前,用含铁化合物对土壤进行改良可将其浸出降低到危险废物掩埋场可接受的水平,但仅限于较粗的部分,这不足以证明这种处理的有效性。在所使用的修正物中,石膏最有效地减少了热处理土壤中Cr和Cu的浸出,建议将其推荐用于不含As的土壤。粉煤灰是最不有效的改良剂,因为它增加了大多数样品中Cr和As的浸出。

著录项

  • 来源
    《Journal of Environmental Management》 |2016年第3期|460-466|共7页
  • 作者单位

    Waste Science and Technology, Lulea University of Technology, 971 87 Lulea, Sweden;

    Waste Science and Technology, Lulea University of Technology, 971 87 Lulea, Sweden;

    Waste Science and Technology, Lulea University of Technology, 971 87 Lulea, Sweden;

    Waste Science and Technology, Lulea University of Technology, 971 87 Lulea, Sweden;

    Department of Mathematical Modelling, Vilnius Cediminas Technical University, Sauletekio av. 11, LT-10223 Vilnius, Lithuania;

    Department of Geodesy and Cadastre, Vilnius Gediminas Technical University, Sauletekio av. 11, LT-10223 Vilnius, Lithuania;

  • 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

    Contaminated soil; Combustion; Leaching; EXAFS;

    机译:受污染的土壤;燃烧;浸出EXAFS;

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