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添加或不添加生物炭改良剂时土壤中二甲基二硫的降解情况。

Degradation of dimethyl disulphide in soil with or without biochar amendment.

作者信息

Han Dawei, Yan Dongdong, Cao Aocheng, Fang Wensheng, Liu Pengfei, Li Yuan, Ouyang Canbin, Wang Qiuxia

机构信息

State Key Laboratory for Biology of Plant Disease and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Pest Manag Sci. 2017 Sep;73(9):1830-1836. doi: 10.1002/ps.4545. Epub 2017 Mar 9.

Abstract

BACKGROUND

Dimethyl disulphide (DMDS) is a new and effective alternative to methyl bromide for soil fumigation. The effect of biochar on the fate of DMDS in soil is not fully understood. The objective of this study was to determine the degradation kinetics of DMDS in different soils and evaluate the effect of biochar amendment on DMDS degradation using incubation experiments.

RESULTS

The degradation half-life of DMDS was between 1.05 and 6.66 days under non-sterile conditions, and 12.63 to 22.67 days under sterile conditions in five types of soil. Seven out of the eight tested biochar amendments (BC-2 to BC-8) delayed the degradation of DMDS in soil, increasing the half-life of DMDS in Fangshan soil from 1.05 to 1.16-5.87 days following amendment with 1% (w/w) biochar. The degradation rate of DMDS in Fangshan soil accelerated as the amendment rate of BC-1 increased, and decreased as the amendment rate of BC-7 increased.

CONCLUSION

Biodegradation is an important degradation route for DMDS in soil, and DMDS degraded faster in alkaline soil. The effects of biochar amendments on DMDS degradation in soil are determined by complex multiple factors (such as surface area, pH and physicochemical composition), rather than by any single property of biochar. © 2017 Society of Chemical Industry.

摘要

背景

二甲基二硫醚(DMDS)是一种用于土壤熏蒸的新型有效替代溴甲烷的物质。生物炭对土壤中DMDS归宿的影响尚未完全明确。本研究的目的是通过培养实验确定DMDS在不同土壤中的降解动力学,并评估生物炭添加对DMDS降解的影响。

结果

在五种类型的土壤中,非无菌条件下DMDS的降解半衰期为1.05至6.66天,无菌条件下为12.63至22.67天。在八种测试的生物炭添加物(BC-2至BC-8)中,有七种延迟了土壤中DMDS的降解,在添加1%(w/w)生物炭后,房山区土壤中DMDS的半衰期从1.05天增加到1.16至5.87天。房山区土壤中DMDS的降解速率随着BC-1添加率的增加而加快,随着BC-7添加率的增加而降低。

结论

生物降解是土壤中DMDS的重要降解途径,DMDS在碱性土壤中降解更快。生物炭添加对土壤中DMDS降解的影响由复杂的多种因素(如表面积、pH值和物理化学组成)决定,而非生物炭的任何单一性质。© 2017化学工业协会。

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