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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Mitigation of fungicide pollution in detention ponds and vegetated ditches within a vine-growing area in Germany
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Mitigation of fungicide pollution in detention ponds and vegetated ditches within a vine-growing area in Germany

机译:减轻德国葡萄种植区滞留池和植被沟中的杀菌剂污染

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摘要

Large amounts of fungicides are commonly applied to agricultural fields, particularly vineyards. Following their application, fungicides may accidentally be introduced into agricultural surface waters posing a potential risk for the integrity of aquatic ecosystems. In this context, the present study characterized the aquatic fungicide exposure at base flow and during rainfall-related runoff events in viticulture in Southern Palatinate (SW-Germany) between 2006 and 2009. The mitigation performance of three vegetated ditches (VD) and five vegetated detention ponds (DP) was assessed. The measurements uncovered the presence of 4 to 11 different fungicide compounds in each of the 81 samples. During runoff events, the ecotoxicological potential-expressed as the sum of toxic units calculated based on the acute toxicity towards algae, Daphnia and fish-of some of the mixtures detected at the inlet of the VD or DP exceeded the Uniform Principle threshold set by the European Union. Both the VD and the DP systems reduced the median fungicide concentrations and thus their associated ecotoxicological potential by 56% and 38%, respectively. This fungicide mitigation efficiency was mainly explained by the plant density and size-related properties of the vegetated systems. Although VP and DP are promising tools to mitigate fungicide exposure, a better mechanistic understanding of the factors triggering the remediation potential finally feeding back into policy decision making is required. (C) 2015 Elsevier B.V. All rights reserved.
机译:大量的杀菌剂通常应用于农业领域,尤其是葡萄园。应用杀真菌剂后,可能会意外地将杀真菌剂引入农业地表水中,对水生生态系统的完整性构成潜在风险。在此背景下,本研究表征了2006年至2009年之间南部普法尔茨州(德国)葡萄栽培中基流和降雨相关径流事件期间水生杀菌剂的暴露情况。三个带植被的沟渠(VD)和五个带植被的缓释性能评估了滞留池。测量发现在81个样本中的每个样本中存在4至11种不同的杀菌剂化合物。在径流事件中,VD或DP入口处检测到的某些混合物基于对藻类,水蚤和鱼类的急性毒性所计算出的毒性单位之和表示的生态毒理学潜力超过了由VD或DP入口设定的统一原则阈值。欧洲联盟。 VD和DP系统均降低了杀菌剂的中位浓度,因此它们各自的相关生态毒理学潜力分别降低了56%和38%。减轻这种杀真菌剂的效率主要由植被系统的植物密度和与大小相关的特性来解释。尽管VP和DP是缓解杀真菌剂暴露的有前途的工具,但仍需要对引发修复潜力的因素有更好的机械理解,最终将其反馈给政策决策。 (C)2015 Elsevier B.V.保留所有权利。

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