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首页> 外文期刊>Journal of soil & sediments >Biochar reduced soil extractable Cd but increased its accumulation in rice (Oryza sativa L.) cultivated on contaminated soils
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Biochar reduced soil extractable Cd but increased its accumulation in rice (Oryza sativa L.) cultivated on contaminated soils

机译:生物炭减少了土壤中可提取的镉,但增加了其在污染土壤上种植的水稻(Oryza sativa L.)中的积累

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PurposeThis study focused on the effects and mechanisms of biochar amendment to Cd-contaminated soil on the uptake and translocation of Cd by rice under flooding conditions.Materials and methodsPot and batch experiments were conducted using Cd-contaminated soil collected from a field near an ore mining area and a cultivar of Oryza sativa ssp. indica. Biochar derived from rice straw under anaerobic conditions at 500 degrees C for 2h was mixed with the soil at the rate of 0, 2.5, and 5%.Results and discussionThe application of 5% biochar reduced CaCl2-extractable soil Cd by 34% but increased Cd concentration in brown rice by 451%. Biochar amendment decreased water-soluble Fe2+ in soils and formation of Fe plaques on roots and weakened the Fe2+-Cd2+ competition at adsorption sites on the root surface. Biochar increased water-soluble Cd in the soil and consequently Cd uptake by rice roots by releasing water-soluble Cl-. Biochar application also reduced the proportion of cell wall-bound Cd in the root, which caused easier Cd translocation from the cortex to the stele in the root and up to the shoot.ConclusionsRice straw biochar (with high concentration of water-soluble Cl-) reduced CaCl2-extractable soil Cd but increased Cd concentration in rice under flooding condition.
机译:目的本研究着眼于淹水条件下生物炭改良Cd污染土壤对水稻吸收和转运Cd的影响及其机理。材料和方法使用从矿石开采附近的田地中采集的Cd污染土壤进行罐和批处理实验。地区和水稻栽培品种。 。将稻草在厌氧条件下于500摄氏度下2h的生物炭以0、2.5和5%的比例与土壤混合。结果与讨论5%生物炭的施用使CaCl2萃取性土壤Cd减少了34%,但增加了糙米中的镉含量降低了451%。生物炭改良剂减少了土壤中的水溶性Fe2 +和在根部形成铁斑,并削弱了根表面吸附位点上的Fe2 + -Cd2 +竞争。生物炭增加了土壤中水溶性Cd的含量,因此通过释放水溶性Cl-,水稻根部吸收Cd。生物炭的施用还减少了根部细胞壁结合的Cd的比例,从而使Cd易于从皮层到根部以及直到枝条的Cd易位。结论稻草生物炭(高浓度的水溶性Cl-)在淹水条件下,可减少CaCl2提取的土壤中Cd的含量,但可提高水稻中Cd的含量。

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