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新型生物净化系统在重复施药条件下对农药混合物的消解作用。

Novel insights in biopurification system for dissipation of a pesticide mixture in repeated applications.

机构信息

Chemical Engineering Department, La Frontera University, Temuco, Chile.

Biotechnological Research Center Applied to the Environment - Scientific and Technological Bioresource Nucleus (CIBAMA-BIOREN), Temuco, Chile.

出版信息

Environ Sci Pollut Res Int. 2018 Aug;25(22):21440-21450. doi: 10.1007/s11356-017-0130-z. Epub 2017 Sep 15.

Abstract

A biopurification system based on the adsorption and degradation capacity of a biomixture to degrade a mixture of pesticides (atrazine, chlorpyrifos, iprodione; 50 mg kg each) in repeated applications (0, 30, and 60 days) was evaluated. Tanks of 1 m packed with a biomixture (ρ 0.29 g mL) with and without vegetal cover were used. The biomixture contained soil, peat, and wheat straw in a proportion 1:1:2 by volume, respectively. Pesticide concentrations, biological activities (urease, phenoloxidase, and dehydrogenase), and microbial community changes (DGGE and qPCR) were evaluated periodically. Pesticide dissipation was higher in tanks with vegetal cover (> 95%) and no variation was observed after the three applications; contrarily, pesticide dissipation decreased in the tank without vegetal cover after each application. The presence of vegetal cover decreased the half-life of pesticides by at least twice. Biological activities were in general not affected by the application and reapplication of pesticides in the same treatment; however, they exhibited some differences between tanks containing and lacking the vegetal cover. High similarity between microbial groups (actinobacteria, bacteria, and fungi) was observed, suggesting no influence ascribable to the successive pesticide applications. The number of copies of bacteria and actinobacteria remained almost constant during the assay. However, the number of copies of fungi was significantly higher in the uncontaminated tank without vegetal cover.

摘要

基于生物混合物的吸附和降解能力,构建了一个生物净化系统,用于在重复应用(0、30 和 60 天)中降解农药混合物(莠去津、毒死蜱、丙环唑,每种浓度为 50mg/kg)。使用填充有生物混合物(ρ0.29g/mL)的 1m 罐,生物混合物中含有土壤、泥炭和小麦秸秆,体积比分别为 1:1:2。定期评估农药浓度、生物活性(脲酶、酚氧化酶和脱氢酶)和微生物群落变化(DGGE 和 qPCR)。有植被覆盖的罐中农药的消解率较高(>95%),并且在三次应用后没有观察到变化;相反,在没有植被覆盖的罐中,每次应用后农药的消解率都降低了。植被覆盖的存在至少将农药的半衰期缩短了两倍。在相同处理中,生物活性通常不受农药的应用和重复应用的影响;然而,它们在含有和缺乏植被覆盖的罐之间表现出一些差异。观察到微生物群体(放线菌、细菌和真菌)之间高度相似,这表明连续应用农药没有影响。在整个试验过程中,细菌和放线菌的拷贝数几乎保持不变。然而,在没有植被覆盖的未污染罐中,真菌的拷贝数明显更高。

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