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两种壤质农业土壤中除草剂氟吡草腙丁基及其降解产物的环境归宿:一项联合实验室和田间研究。

Environmental Fate of the Herbicide Fluazifop-P-butyl and Its Degradation Products in Two Loamy Agricultural Soils: A Combined Laboratory and Field Study.

机构信息

†Department of Geochemistry, Geological Survey of Denmark and Greenland (GEUS), Øster Voldgade 10, 1350 Copenhagen K, Denmark.

‡Department of Agroecology, Aarhus University, Blichers Allé 20, DK-8830 Tjele, Denmark.

出版信息

Environ Sci Technol. 2015 Aug 4;49(15):8995-9003. doi: 10.1021/acs.est.5b00406. Epub 2015 Jul 15.

DOI:10.1021/acs.est.5b00406
PMID:26147883
Abstract

The herbicide fluazifop-P-butyl (FPB) is used against grasses in agricultural crops such as potato, oilseed rape, and sugar beet. Limited information is available in scientific literature on its environmental fate, therefore extensive monitoring at two agricultural test fields was combined with laboratory studies to determine leaching and the underlying degradation and sorption processes. Water samples from drains, suction cups, and groundwater wells showed leaching of the degradation products fluazifop-P (FP) and 2-hydroxy-5-trifluoromethyl-pyridin (TFMP) following FPB treatment. Laboratory experiments with soil from each field revealed a rapid degradation of FPB to FP. The degradation was almost exclusively microbial, and further biodegradation to TFMP occurred at a slower rate. Both degradation products were sorbed to the two soils to a small extent and were fairly persistent to degradation during the two-month incubation period. Together, the field and laboratory results from this study showed that the biodegradation of FPB in loamy soils gave rise to the production of two major degradation products that sorbed to a small extent. In this study, both degradation products leached to drainage and groundwater during precipitation. It is therefore recommended that these degradation products be included in programs monitoring water quality in areas with FPB use.

摘要

除草剂氟吡草腙-P-丁酯(FPB)用于防治马铃薯、油菜和糖甜菜等农作物中的杂草。科学文献中关于其环境归宿的信息有限,因此在两个农业试验场进行了广泛的监测,并结合实验室研究来确定淋溶和潜在的降解及吸附过程。从排水渠、吸盘和地下水井采集的水样显示,在 FPB 处理后,降解产物氟吡草腙(FP)和 2-羟基-5-三氟甲基吡啶(TFMP)发生淋溶。来自每个试验场的土壤的实验室实验表明,FPB 迅速降解为 FP。降解几乎完全是微生物的,进一步的生物降解为 TFMP 的速度较慢。两种降解产物都在一定程度上被两种土壤吸附,并且在两个月的培养期内对降解具有相当的持久性。本研究的田间和实验室结果表明,FPB 在壤土地中的生物降解会产生两种主要的降解产物,它们在一定程度上被吸附。在本研究中,两种降解产物在降水期间淋溶到排水和地下水中。因此,建议在使用 FPB 的地区监测水质的计划中包括这些降解产物。

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