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TiO 对农用土壤中已配制 chiral-metalaxyl 的化学和生物转化的影响。

Impact of TiO on the chemical and biological transformation of formulated chiral-metalaxyl in agricultural soils.

机构信息

School of Resources and Environmental Science, Wuhan University, Wuhan, 430079, PR China.

School of Resources and Environmental Science, Wuhan University, Wuhan, 430079, PR China.

出版信息

J Hazard Mater. 2018 Apr 15;348:67-74. doi: 10.1016/j.jhazmat.2018.01.035. Epub 2018 Jan 31.

DOI:10.1016/j.jhazmat.2018.01.035
PMID:29367134
Abstract

The impacts of TiO on the chemical and biological transformation of racemic metalaxyl wettable powder (rac-metalaxyl WP) in agricultural soils, and soil microorganisms were investigated. Under simulated solar irradiation, TiO highly promoted the transformation of rac-metalaxyl WP without changing the enantiomer fraction, with the promotion amplitude (60-1280%) being dependent on TiO characteristics. TiO characteristics showed different influence on the transformation of rac-metalaxyl WP in soils and aqueous solutions because their characteristics changed differently in soils. The impact of the mancozeb and other co-constituents on the transformation of rac-metalaxyl WP was smaller in soil media than in aqueous solution. Autoclave sterilization changed soil properties and subsequently weakened the promotion effects of TiO on the chemical transformations of rac-metalaxyl WP to 0-233%. Microorganism biomass and bacterial community were not statistically significant changed by TiO exposure regardless of rac-metalaxyl WP, suggesting that the promotional effects occurred mainly through chemical processes. The results also showed TiO-soil interactions may be strengthened with TiO (Degussa P25) aging time in soils, which decreased its promotion amplitude from 1060% (without aging) to 880% (aging for 20 days). Intermediate formed in soil biological transformation process was different from that in TiO photocatalysis process.

摘要

研究了 TiO 对农业土壤中(±)金属哒 WP 可湿性粉剂(rac-metalaxyl WP)的化学和生物转化以及土壤微生物的影响。在模拟太阳辐射下,TiO 可显著促进 rac-metalaxyl WP 的转化,而不改变对映体分数,其促进幅度(60-1280%)取决于 TiO 的特性。由于 TiO 在土壤中的特性变化不同,因此其特性对 rac-metalaxyl WP 在土壤和水溶液中的转化有不同的影响。在土壤介质中,代森锰锌和其他共存成分对 rac-metalaxyl WP 转化的影响小于水溶液。高压灭菌改变了土壤性质,随后将 TiO 对 rac-metalaxyl WP 化学转化的促进作用削弱至 0-233%。无论 rac-metalaxyl WP 是否存在,TiO 的暴露都不会使微生物生物量和细菌群落发生统计学上的显著变化,这表明促进作用主要通过化学过程发生。结果还表明,TiO-土壤相互作用可能随着 TiO(Degussa P25)在土壤中的老化时间而增强,这使其促进幅度从 1060%(未老化)降低到 880%(老化 20 天)。在土壤生物转化过程中形成的中间体与 TiO 光催化过程中形成的中间体不同。

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