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Arsenic immobilization and removal in contaminated soil using zero-valent iron or magnetic biochar amendment followed by dry magnetic separation

机译:使用零价铁或磁性生物炭修正案的砷固定和除去污染土壤中的去除,然后用干磁分离

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摘要

The potential of using zero-valent iron (ZVI) or a Fe_3O_4-loaded magnetic biochar to stabilize arsenic (As) in contaminated soil was investigated in the processes of incubation trial, chemical extraction, pot experiments with ryegrass growth. Additionally, a dry magnetic separation technique was applied to verify the possible permanent removal of As from the bulk soil. Results showed the ZVI amendment greatly reduced the As leaching, and the leached concentration became much lower than the Japanese environment standard (10μg/L) after 180 days of incubation. Contrarily, the magnetic biochar amendment readily increased the As leachability due to the changes in pH, dissolved organic carbon, and soluble P and Si. The ZVI had a greater effect over the magnetic biochar, supported by the significantly reduced As leachability in the combined amendments. Furthermore, results from sequential extraction analysis indicate that both amendments significantly decreased the available As in (NH_4)_2SO_4 and NH_4H_2PO_4 extraction and increased the As bound to amorphous Fe oxides. But ZVI amendment alone performed better than magnetic biochar amendment alone. Plant growth experiment showed that the ZVI amendment enhanced ryegrass growth and significantly increased the ryegrass biomass. However, the magnetic biochar amendment resulted in an adverse effect on the ryegrass root growth, probably due to a marked enhancement of salinity. Meanwhile, the As uptake by ryegrass was significantly reduced in both ZVI and magnetic biochar-amended soils. Results of dry magnetic separation showed that averaged 20% and 25% of total As could be retrieved from ZVI and magnetic biochar amended soil, respectively; and the As bound to amorphous Fe oxides was the main retrieved fraction. This study indicated that ZVI or magnetic biochar could be applied as a promising amendment for reducing (phyto)availability of As in soil, and dry magnetic separation could be served as an alternative option for permanently removing As.
机译:在培养试验,化学提取,盆栽试验的过程中,研究了使用零价铁(ZVI)或Fe_3O_4负载磁性生物BioChar的潜力在Ryegrass生长的过程中,研究了培养试验,化学提取,盆栽试验中的污染土壤中的砷(AS)。另外,施加干磁分离技术以验证从散装土壤中可能的永久性去除。结果表明,ZVI修正案大大降低了浸出,浸出浓度远低于日本环境标准(10μg/ L)孵育后的浸出量远低于日本环境标准(10μg/ L)。相反,由于pH,溶解的有机碳和可溶性P和Si的变化,磁性生物炭修正案容易增加作为可浸出性。 ZVI对磁性生物炭具有更大的效果,在组合修正案中的可渗透性显着减少。此外,序贯提取分析结果表明,两种修正案都显着降低了(NH_4)_2SO_4和NH_4H_2PO_4提取的可用,并增加了与无定形Fe氧化物的结合。但单独的ZVI修正案仅仅比磁性生物炭修正更好。植物生长实验表明,ZVI修正案增强了黑麦草生长,显着增加了黑麦草生物量。然而,磁性生物炭修正案导致对黑麦草的生长产生不利影响,可能是由于盐度的显着增强。与此同时,ZVI和磁性生物炭修正的土壤中,黑麦草的摄取显着降低。干磁性分离的结果显示,分别从ZVI和磁性生物炭修正的土壤中取得的平均20%和25%的总量;与无定形铁氧化物结合的是主要检索的级分。该研究表明,ZVI或磁性生物炭可以作为减少(Phyto)在土壤中的可用性的有望修正案中,干磁分离可以作为永久除去的替代选择。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|144521.1-144521.9|共9页
  • 作者单位

    School of Environment Nanjing Normal University Nanjing Jiangsu 210023 China;

    School of Environment Nanjing Normal University Nanjing Jiangsu 210023 China;

    School of Environment Nanjing Normal University Nanjing Jiangsu 210023 China;

    Institute of Construction Materials Technische Universitaet Dresden 01062 Dresden Germany;

    Environment Research Institute Shandong University Qingdao Shandong 266237 China;

    Department of Bioapplications and Systems Engineering (BASE) Tokyo University of Agriculture and Technology Koganei Tokyo 184-8588 japan;

    Department of Chemical Engineering Tokyo University of Agriculture and Technology Koganei Tokyo 184-8588 japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil remediation; Arsenic; ZVI; Magnetic biochar; Ryegrass planting; Magnetic separation;

    机译:土壤修复;砷;ZVI;磁性生物炭;Ryegrass种植;磁选;
  • 入库时间 2022-08-19 02:11:27

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