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Achieving the safe use of Cd- and As-contaminated agricultural land with an Fe-based biochar: A field study

机译:通过铁基生物炭实现安全使用受镉和砷污染的农田

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摘要

A field study was conducted to investigate the effect of Fe-based biochar application on the extractability and availability of Cd and As, as well as its impact on crop growth and yield under a two-years wheat-rice rotation system. The Fe-based biochar was applied to the soil at 1.5 and 3.01 ha~(-1), manure compost was also applied as a comparison, as well as a non-treated control. The application of the Fe-based biochar significantly (p < 0.05) increased the crop yields for the rice season in the first year, but the both treatments had no significant effect on the crop yields in the others cultivation seasons, compared to the control. The concentrations of available Cd and As significantly (p < 0.05) decreased after either higher or lower dose of Fe-based biochar addition, especially with lower rate in the second year. In the second year, the soil extractable Cd and As reduced by 57% and 18%, respectively, in the wheat season and 63% and 14%, respectively, in the rice season, after the lower dose of Fe-based biochar was applied. The lower dose of the Fe-based biochar treatment showed higher efficiency for decreasing Cd and As availability in soil than the higher one, the control and manure compost treatment. Additionally, both the higher and lower doses of the Fe-based biochar treatments significantly decreased Cd and As uptake by wheat and rice plants. Overall, the Fe-based biochar showed effective immobilization at an application of 1.5 t ha~(-1), making the use of the Fe-based biochar feasible as an amendment for the safe use of agricultural land contaminated by Cd and As.
机译:在两年的稻米轮作制度下,进行了田间研究,调查了铁基生物炭的施用对Cd和As的可萃取性和有效性的影响,以及其对作物生长和产量的影响。将铁基生物炭在1.5和3.01 ha〜(-1)的条件下施用到土壤,还使用肥料堆肥作为比较,以及未处理的对照。在第一年,铁基生物炭的施用显着(p <0.05)提高了水稻季节的作物产量,但与对照相比,两种处理对其他栽培季节的作物产量均无显着影响。较高或较低剂量的铁基生物炭添加后,可利用的镉和砷的浓度显着降低(p <0.05),尤其是在第二年较低的情况下。在第二年,施用较低剂量的铁基生物炭后,土壤可提取的镉和砷在小麦季节分别减少了57%和18%,在水稻季节分别减少了63%和14%。 。较低剂量的铁基生物炭处理显示出比较高的对照和肥料堆肥处理更高的降低土壤中Cd和As利用率的效率。此外,高剂量和低剂量的铁基生物炭处理均显着降低了小麦和水稻植物对镉和砷的吸收。总体而言,铁基生物炭在1.5 t ha〜(-1)的施用量下显示出有效的固定性,这使铁基生物炭的使用成为可行的修正方案,用于安全使用受到Cd和As污染的农田。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|135898.1-135898.8|共8页
  • 作者单位

    Institute of Soil and Water Resources and Environmental Science Zhejiang Provincial Key Laboratory of Agricultural Resources and Environment Zhejiang University 866 Yuhangtang Road Hangzhou 310058 China;

    School of Earth and Environment Anhui University of Science and Technology Huainan 232001 China;

    University of Wuppertal School of Architecture and Civil Engineering Institute of Foundation Engineering Water- and Waste Management Laboratory o/Soil- and Groundwater-Management Pauluskirchstraβe 7 42285 Wuppertal Germany Biochar Engineering Technology Research Center of Guangdong Province School of Environmental and Chemical Engineering Foshan University Foshan Guangdong 528000 China;

    College of Life & Environmental Sciences Hangzhou Normal University Hangzhou 310036 China;

    Biochar Engineering Technology Research Center of Guangdong Province School of Environmental and Chemical Engineering Foshan University Foshan Guangdong 528000 China Key Laboratory of Soil Contamination Bioremediation of Zhejiang Province Zhejiang AErF University Hangzhou Zhejiang 311300 China;

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

    Cd and As contamination; Fe-based biochar; Phytoavailability; Plant growth; Wheat-rice rotation;

    机译:镉和砷污染;铁基生物炭;植物利用率;植物生长;稻米轮作;

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