Marine Agriculture Research Center, Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao, 266101, China.
Institute of Coastal Environmental Pollution Control, Key Laboratory of Marine Environment and Ecology, Ministry of Education, Institute for Advanced Ocean Study, Ocean University of China, Qingdao, 266100, China.
J Hazard Mater. 2020 May 15;390:121749. doi: 10.1016/j.jhazmat.2019.121749. Epub 2019 Nov 29.
Information about the effect of biochar on the environmental fate of pesticide thiamethoxam (THI) in soil-vegetable ecosystems is limited. Therefore, the influence of a wood-derived biochar produced at 450 °C (BC450) on the uptake of THI by Chinese chive (Allium tuberosum) and its dissipation in soil was investigated using a 42-day pot experiment. BC450 addition decreased THI uptake and its metabolite clothianidin (CLO) by 22.8 % and 37.6 %, respectively. However, the half-life of THI in soil rose from 89.4-120 days, indicating that BC450 increased soil THI's persistence. The decreased bioavailability and increased persistence of THI resulted mainly from the higher sorption capacity of BC450 to THI and CLO, which, in turn, enhanced the soil sorption capacity. Consequently, the application of BC450 increased the soil microbial diversity and altered the structure of the microbial community. Although the abundance of Actinobacteria associated with the biodegradation of THI, increased the persistence of THI in the BC450-amended soil, mainly due to the decrease in bioavailable THI. Our findings provide valuable information about the effect of biochar on the fate of THI and its metabolites in agricultural soil and will help to guide the practical application of biochar to remediate soils contaminated with neonicotinoid pesticides.
生物炭对土壤-蔬菜生态系统中农药噻虫嗪(THI)环境归宿影响的相关信息有限。因此,采用 42 天盆栽试验,研究了 450°C 下制备的木源生物炭(BC450)对蕌头(Allium tuberosum)吸收 THI 及其在土壤中消解的影响。BC450 的添加降低了 THI 及其代谢物噻虫胺(CLO)的吸收量,分别为 22.8%和 37.6%。然而,THI 在土壤中的半衰期从 89.4-120 天延长,表明 BC450 增加了土壤中 THI 的持久性。THI 生物利用度降低和持久性增加主要归因于 BC450 对 THI 和 CLO 的吸附能力更高,从而增强了土壤的吸附能力。因此,BC450 的应用增加了土壤微生物多样性并改变了微生物群落的结构。尽管与 THI 生物降解相关的放线菌丰度增加,但由于可利用 THI 的减少,BC450 处理土壤中 THI 的持久性增加。本研究结果为生物炭对农业土壤中 THI 及其代谢物归宿的影响提供了有价值的信息,并有助于指导生物炭在修复新烟碱类农药污染土壤中的实际应用。