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Evaluation of biochars from different stock materials as carriers of bacterial strain for remediation of heavy metal-contaminated soil

机译:评价来自不同原料的生物炭作为细菌菌株的载体以修复重金属污染的土壤

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摘要

Two kinds of biochars, one derived from corn straw and one from pig manure, were studied as carriers of a mutant genotype from Bacillus subtilis (B38) for heavy metal contaminated soil remediation. After amendment with biochar, the heavy metal bioavailability decreased. Moreover, the heavy metal immobilization ability of the biochar was enhanced by combining it with B38. The simultaneous application of B38 and pig manure-derived biochar exhibited a superior effect on the promotion of plant growth and the immobilization of heavy metals in soil. The plant biomass increased by 37.9% and heavy metal concentrations in the edible part of lettuce decreased by 69.9–96.1%. The polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) profiles revealed that pig manure-derived biochar could enhance the proliferation of both exotic B38 and native microbes. These results suggest that B38 carried by pig manure-derived biochar may be a promising candidate for the remediation of soils contaminated by multiple heavy metals.
机译:研究了两种生物炭,一种来自玉米秸秆,一种来自猪粪,作为枯草芽孢杆菌(B38)突变型基因型的载体,用于土壤重金属污染的修复。用生物炭改性后,重金属的生物利用度下降。此外,通过与B38结合,生物炭的重金属固定能力得以增强。 B38和猪粪衍生的生物炭的同时施用对促进植物生长和土壤中重金属的固定具有优异的效果。植物生物量增加了37.9%,生菜的可食部分中的重金属浓度降低了69.9-96.1%。聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)谱图表明,猪粪来源的生物炭可以增强外源B38和天然微生物的增殖。这些结果表明,猪粪衍生的生物炭携带的B38可能是修复被多种重金属污染的土壤的有前途的候选者。

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