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首页> 外文期刊>Journal of the air & waste management association >Immobilization of Cd in landfill-leachate-contaminated soil with cow manure compost as soil conditioners: A laboratory study
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Immobilization of Cd in landfill-leachate-contaminated soil with cow manure compost as soil conditioners: A laboratory study

机译:牛粪堆肥作为土壤改良剂将Cd固定在垃圾渗滤液污染土壤中的实验室研究

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摘要

Introducing cow manure compost as an amendment in landfill-leachate-contaminated soils is proved to be an effective technique for the immobilization of Cd in this study. Landfill-leachate-contaminated soil was collected from an unlined landfill in China and amended with a different blending quantity of cow manure compost (0, 12, 24, 36, and 48 g per 200 g soil), which was made by mixing cow manure and chaff at a ratio of 1/1 and maturing for 6 months. pH values of five different blending quantity mixtures increased by 0.2-0.4, and the organic matter levels increased by 2.5-7%, during a remediation period of 5 weeks. Four fractions of Cd named exchangeable Cd, reducible Cd, oxidizable Cd, and residual Cd in soil were respectively analyzed by a sequential extraction procedure. Introducing the cow manure compost application resulted in more than 40% lower exchangeable Cd but a higher concentration of oxidizable Cd in soils, and mass balance results showed nearly no Cd absorption by applied material, indicating that transformation of exchangeable Cd into oxidization forms was the main mechanism of Cd immobilization when cow manure compost was used as an amendment. The Pearson correlation showed that increasing of pH values significantly improved the efficiency of Cd immobilization, with a correlation coefficiency of 0.940 (p < 0.05). This is the first attempt at heavy metal immobilization in landfill-leachate-contaminated soil by cow manure compost, and findings of this work can be integrated to guide the application. Implications: Addition of cow manure compost (CMC) was effective in reducing exchangeable Cd in landfill-leachate-contaminated soils (LLCS). The immobilization effect of Cd was mainly assigned to the redistribution of labile soil Cd. Organic matter (OM) and pH value increased with CMC application. The pH values were more sensitive to Cd immobilization efficiency. It was proved that CMC can be safely and effectively used for the restoration of LLCS.
机译:在本研究中,引入牛粪堆肥作为垃圾渗滤液污染土壤的改良剂是一种有效的固定镉的技术。从中国一个未衬砌的垃圾填埋场收集被垃圾渗滤液污染的土壤,并用不同数量的混合牛粪堆肥(每200克土壤分别添加0、12、24、36和48克)进行修正,这是通过混合牛粪制成的谷壳以1/1的比例熟化6个月。在5周的修复期间,五种不同掺混量混合物的pH值增加了0.2-0.4,有机物含量增加了2.5-7%。采用顺序萃取法分别分析了土壤中可交换镉,可还原镉,可氧化镉和残留镉的四部分。引入牛粪堆肥后,土壤中可交换的Cd含量降低了40%以上,但可氧化的Cd含量却较高,而且质量平衡结果表明,施用的材料几乎不吸收Cd,这表明主要是可交换的Cd转化为氧化形式改良牛粪堆肥固定镉的机理皮尔森相关性表明,pH值的增加显着提高了Cd固定的效率,相关系数为0.940(p <0.05)。这是牛粪堆肥将重金属固定在垃圾渗滤液污染的土壤中的首次尝试,这项工作的发现可以综合起来指导应用。启示:添加牛粪堆肥(CMC)可有效减少垃圾渗滤液污染土壤(LLCS)中的可交换镉。 Cd的固定作用主要归因于不稳定土壤Cd的重新分布。有机物(OM)和pH值随CMC施用而增加。 pH值对Cd固定效率更为敏感。事实证明,CMC可以安全有效地用于LLCS的修复。

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  • 来源
    《Journal of the air & waste management association》 |2016年第12期|1276-1283|共8页
  • 作者单位

    School of Environmental Science & Engineering, Huazhong University of Science and Technology, Wuhan, PR China;

    School of Environmental Science & Engineering, Huazhong University of Science and Technology, Wuhan, PR China;

    Central and Southern China Municipal Engineering Design & Research Institute Co. Ltd, Wuhan, PR China;

    Central and Southern China Municipal Engineering Design & Research Institute Co. Ltd, Wuhan, PR China;

    School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, #1037 Luoyu Road, Hongshan District, Wuhan, PR China;

    School of Environmental Science & Engineering, Huazhong University of Science and Technology, #1037 Luoyu Road, Hongshan District, Wuhan 430074, PR China;

    School of Environmental Science & Engineering, Huazhong University of Science and Technology, Wuhan, PR China;

    School of Environmental Science & Engineering, Huazhong University of Science and Technology, Wuhan, PR China;

    School of Environmental Science & Engineering, Huazhong University of Science and Technology, Wuhan, PR China;

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