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Study of the mechanism of remediation of Cd-contaminated soil by novel biochars

机译:新型生物脉内镉污染土壤修复机制研究

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摘要

This article used novel non-magnetized and magnetized biochars prepared under a CO2 atmosphere returned to Cd-contaminated soil and compared these to the effects of conventional biochars prepared under a N-2 atmosphere with regard to Cd-contaminated soil remediation. A pot experiment with lettuce (Lactuca sativa) was conducted to investigate the relative soil remediation effects of these biochars. The soil used for the pot experiment was spiked with 20 mg kg(-1) Cd and amended with 5% of a biochar before sowing. Through these research works, some important results were obtained as follows: (1) applying biochar treated by pyrolysis under a CO2 atmosphere can obtain the best remediation effect of Cd-contaminated soil that the content of cadmium in the lettuce roots, stems, and leaves was reduced 67, 62, and 63%, respectively; (2) the magnetic biochar aggregation for the soil is weak, so the heavy metal cadmium in the soil could not be immobilized well by the magnetic biochar; (3) The remediation mechanism of novel biochars is that biochar includes a large number of organic functional groups (-C-OH, -C=O, COO-) that can act in a complexing reaction with heavy metal Cd(II) and the inorganic salt ions (Si, S, Cl, etc.) that can combine with cadmium and generate a stable combination.
机译:本文在二氧化碳气氛中使用的新型非磁化和磁化生物脉冲返回CD污染的土壤,并将这些与在N-2气氛中制备的常规生物谱的影响与CD污染的土壤修复相比。进行了莴苣(Lactuca Sativa)的盆栽试验,以研究这些生物触发的相对土壤修复效果。用于罐实验的土壤掺入20mg kg(-1)Cd,并在播种前用5%的生物炭修正。通过这些研究作品,如下取得了一些重要成果:(1)在二氧化碳气氛下通过热解处理的生物炭,可以获得CD污染土壤中的莴苣,茎和叶中镉含量的最佳修复作用分别减少了67,62和63%; (2)土壤的磁性生物炭聚集弱,因此土壤中的重金属镉不能通过磁性生物炭固定很好; (3)新型生物脉的修复机制是Biochar包括大量有机官能团(-C-OH,-C = O,COO-),其可以用重金属CD(II)和络合反应作用可以与镉结合并产生稳定的组合的无机盐离子(Si,S,Cl等)。

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