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氟吡草酮代谢物 TFMP 何时会从农业壤土中渗滤到地下水中?

When does the fluazifop-P-butyl degradate, TFMP, leach through an agricultural loamy soil to groundwater?

机构信息

Department of Agroecology, Science and Technology, Aarhus University, Blichers Allé 20, P.O. Box 50, DK-8830 Tjele, Denmark.

Department of Agroecology, Science and Technology, Aarhus University, Blichers Allé 20, P.O. Box 50, DK-8830 Tjele, Denmark.

出版信息

Sci Total Environ. 2016 Aug 15;562:1044-1053. doi: 10.1016/j.scitotenv.2016.04.182. Epub 2016 May 6.

Abstract

In intensely cultivated regions, it is crucial to have knowledge of the leaching potential related to pesticides in agricultural production. This is especially true in countries, like Denmark, that base its drinking water supply on untreated groundwater. Since fluazifop-P-butyl (FPB) is applied to control perennial and annual weed grasses in agricultural fields, the objective of this study was to evaluate leaching of its two degradation products - fluazifop-P (FP; free acid; (R)-2-(4-(5-trifluoromethyl-2-pyridyloxy)phenoxy)propionic acid) and TFMP (5-(trifluoromethyl)-2(1H)-pyridinone) - through an agricultural field consisting of loamy soil. Drainage and groundwater samples were collected over a five-year period following four spring/summer applications of FPB, and analysed for both FP and TFMP. FP was only detected once in groundwater, whereas TFMP within the first year after the first and fourth application was detected in concentrations exceeding the value of 0.1μgL(-1) in 100% and 24% of the drainage samples and 9% and 14% of the groundwater samples, respectively. Detections of TFMP up to 18months after application were obtained both in the drainage and groundwater. What differentiated the first and fourth FPB applications from the two others were heavy precipitation events within one week of FPB application, which resulted in rapid transport of TFMP through the discontinuities in the soil and contributed to relatively high TFMP detections in drainage and groundwater. This study indicated that pesticide degradates like TFMP, often being more soluble than the pesticide, have a relatively high leaching potential especially associated with heavy precipitation events shortly after the application. Hence, such pesticide degradates should like in Denmark be considered "relevant" meaning that the EU value for drinking water applies to them, having its leaching potential regulatory assessed based on high quality estimations of their persistence, and be exposed to an assessment of the risk to consumers of drinking contaminated groundwater.

摘要

在高度耕作的地区,了解农业生产中与农药有关的淋溶潜力至关重要。对于像丹麦这样以未经处理的地下水作为饮用水供应源的国家来说,这一点尤为重要。由于氟草烟-P-丁酯(FPB)被用于控制农业田中的多年生和一年生杂草,因此本研究的目的是评估其两种降解产物——氟草烟-P(FP;游离酸;(R)-2-(4-(5-三氟甲基-2-吡啶氧基)苯氧基)丙酸)和 TFMP(5-(三氟甲基)-2(1H)-吡啶酮)——通过由壤土组成的农田淋溶的情况。在 FPB 进行了四次春季/夏季施药后的五年期间,收集了排水和地下水样本,并对 FP 和 TFMP 进行了分析。FP 仅在地下水中检测到一次,而 TFMP 在第一次和第四次施药后的第一年,在 100%和 24%的排水样本和 9%和 14%的地下水样本中,浓度超过 0.1μg/L。在应用后 18 个月,在排水和地下水中均检测到 TFMP。与其他两次施药相比,FPB 的第一次和第四次施药与第一次和第四次施药的区别在于,在 FPB 施药后一周内发生了强降水事件,导致 TFMP 通过土壤中的不连续性快速迁移,并导致排水和地下水中 TFMP 的相对高检出率。本研究表明,像 TFMP 这样的农药降解物通常比农药更易溶解,具有相对较高的淋溶潜力,特别是在施药后不久发生强降水事件时。因此,在丹麦等国家,应将此类农药降解物视为“相关”,这意味着欧盟的饮用水标准适用于它们,其淋溶潜力的监管评估应基于对其持久性的高质量估计,并对消费者饮用受污染地下水的风险进行评估。

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