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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Continuous immobilization of cadmium and lead in biochar amended contaminated paddy soil: A five-year field experiment
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Continuous immobilization of cadmium and lead in biochar amended contaminated paddy soil: A five-year field experiment

机译:在生物炭改良的污染水稻土中连续固定镉和铅的五年田间试验

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Analyzing the fractionation of cadmium (Cd) and lead (Pb) could provide key information to identify how-wheat straw biochar (WBC) affects the bioavailability of Cd and Pb in contaminated soils. The fractionations of Cd and Pb were extracted from amended paddy soil according to the approach by European Community Bureau of Reference (BCR). Total Cd and Pb concentrations in contaminated paddy soil were decreased by 7.5-23.3% and 3.7-19.8% with WBC application during five years, respectively. The Cd was distributed primarily in the exchangeable (similar to 50%) and carbonate (>30%) fractions, and Pb was the mainly carbonate-bound fraction (similar to 70%). The exchangeable fractions concentration of Cd and Pb were significantly decreased by 8.0-44.6% and 14.2-50.3% during five years. The residual fractions were increased by 4.0-32.4% (Cd) and 14.9-39.6% (Pb). The percentage of exchangeable Cd fractions decreased by 1.2-6.9%, but the incensements of 1.7-7.2% and 1.3-2.2% were observed in carbonate and residual fractions for Cd. Similarly, the percentage of exchangeable Pb fractions decreased by 0.3-1.6%, though the carbonate and residual fraction were increased by 1.2-2.9% and 1.4-12.2%. The changes of Cd and Pb fractions were mainly due to the abundant functional groups and complex structures in WBC, which could improve soil microstructure and increase soil pH and soil organic matter. (C) 2016 Elsevier B.V. All rights reserved.
机译:分析镉(Cd)和铅(Pb)的分馏可提供关键信息,以识别小麦秸秆生物炭(WBC)如何影响污染土壤中镉和铅的生物利用度。根据欧洲共同体参考局(BCR)的方法,从改良的水稻土中提取Cd和Pb的馏分。施用WBC五年后,受污染的稻田土壤中Cd和Pb的总浓度分别降低了7.5-23.3%和3.7-19.8%。 Cd主要分布在可交换馏分(约占50%)和碳酸盐馏分(> 30%)中,而Pb是主要与碳酸盐结合的馏分(约70%)。五年中,Cd和Pb的交换分数浓度显着下降了8.0-44.6%和14.2-50.3%。残留分数增加了4.0-32.4%(Cd)和14.9-39.6%(Pb)。可交换的Cd馏分百分比降低了1.2-6.9%,但在碳酸盐和Cd的残留馏分中观察到了1.7%-7.2%和1.3-2.2%的香气。同样,可交换的Pb馏分的百分比降低了0.3-1.6%,尽管碳酸盐和残余物的馏分增加了1.2-2.9%和1.4-12.2%。 Cb和Pb含量的变化主要是由于白细胞中丰富的官能团和复杂的结构,可以改善土壤的微观结构,增加土壤的pH值和土壤有机质。 (C)2016 Elsevier B.V.保留所有权利。

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