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Establishment of multiple pesticide biodegradation capacities from pesticide-primed materials in on-farm biopurification system microcosms treating complex pesticide-contaminated wastewater

机译:建立农场生物净化系统微观环境中农药基料中多种农药的生物降解能力,以处理复杂的农药污染废水

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BACKGROUNDOn-farm biopurification systems (BPSs) treat pesticide-containing wastewater at farms by biodegradation and sorption processes. The inclusion of pesticide-primed material carrying a pesticide-degrading microbial community is beneficial for improving biodegradation, but no data exist for treating wastewater containing multiple pesticides, as often occurs on farms. In a microcosm set-up, an examination was carried out to determine whether multiple pesticide degradation activities could be simultaneously established in the matrix of a BPS by the simultaneous inclusion of different, appropriate pesticide-primed materials. The microcosms were fed with a mixture of pesticides including the fungicide metalaxyl and the herbicides bentazon, isoproturon, linuron and metamitron, and pesticide-degrading activities were monitored over time.
机译:背景技术农场生物净化系统(BPS)通过生物降解和吸附过程处理农场中的含农药废水。包含带有农药降解微生物群落的农药引发材料有利于改善生物降解,但是没有像农场经常发生的那样处理含多种农药废水的数据。在微观环境中,进行了一项检查,以确定是否可以通过同时加入不同的,适当的农药引发材料来在BPS的基质中同时建立多种农药降解活性。在微观世界中,加入了包括杀真菌剂甲霜灵和除草剂苯达松,异丙隆,亚麻嘧啶和间甲隆等农药的混合物,并随时间监测农药的降解活性。

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