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Sorption and degradation of carbaryl in soils amended with biochars: influence of biochar type and content

机译:生物炭对土壤中甲萘威的吸附和降解:生物炭类型和含量的影响

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摘要

Biochars that were produced from three different biomass materials were amended to a soil to elucidate their influence on the fate of carbaryl. Sorption and degradation of carbaryl in soils amended with the biochars were investigated. The results showed that the amendment of biochars to soil enhanced the sorption of carbaryl. The nonlinearity of sorption isotherm and sorption affinity of carbaryl increased with the content and pyrolytic temperature of the biochars. Both chemical and biological degradation of carbaryl were influenced by biochars. The biochars enhanced the chemical hydrolysis of carbaryl in soil, with biochars produced at 700 A degrees C (BC700) exhibiting greater impact, due to their strong liming effect. In contrast, BC350 (produced at 350 A degrees C) promoted the biodegradation of carbaryl in soil by different extents, while BC700 obviously reduced the biodegradation of carbaryl. The enhanced activities of natural microorganisms in the soil and the lowered bioavailability of carbaryl acted together to determine the biodegradation.
机译:将由三种不同生物质材料产生的生物炭修改为土壤,以阐明其对西维因的命运的影响。研究了用生物炭改良的土壤中甲萘威的吸收和降解。结果表明,生物炭对土壤的改良提高了西维因的吸附。西维因的吸附等温线和吸附亲和力的非线性随生物炭含量和热解温度的增加而增加。西维因的化学和生物降解都受到生物炭的影响。生物炭增强了土壤中甲萘威的化学水解作用,由于其强大的石灰效应,在700 A(BC700)的温度下产生的生物炭表现出更大的影响。相比之下,BC350(在350 A温度下生产)在不同程度上促进了土壤中甲萘威的生物降解,而BC700则明显降低了甲萘威的生物降解。土壤中天然微生物活性的增强和西芳基化合物生物利用率的降低共同决定了生物降解。

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