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Impacts of climate change on the fate and behaviour of pesticides in surface and groundwater - a UK perspective

机译:气候变化对地表和地下水中农药命运和行为的影响-英国的观点

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Over the last two decades significant effort has been dedicated to understanding the fate and transport of pesticides in surface water and groundwater and to use this understanding in the development of environmental policy and regulation. However, there have been few studies that have investigated the relationships between pesticides and climate change, and where this work has been undertaken it has principally been in relation to the impacts of climate change on agricultural production rather than in the context of environmental protection. This study addresses that gap by reviewing how climate change may impact the fate and transport of pesticides in surface and groundwaters as a pre-cursor to quantitative studies. In order to structure the review, we have adopted a source-pathway-receptor approach where climate sensitivities of pesticide source terms, environmental pathways and receptors are reviewed. The main climate drivers for changing pesticide fate and behaviour are thought to be changes in rainfall seasonality and intensity and increased temperatures, but the effect of climate change on pesticide fate and transport is likely to be very variable and difficult to predict. In the long-term, indirect impacts, such as land-use change driven by changes in climate, may have a more significant effect on pesticides in surface and groundwaters than the direct impacts of climate change on pesticide fate and transport. The review focuses on climate change scenarios and case studies from the UK; however, the general conclusions can be applied more widely. (c) 2006 NERC. Published by Elsevier B.V. All rights reserved.
机译:在过去的二十年中,人们付出了巨大的努力来了解地表水和地下水中农药的结局和运输方式,并将这种理解用于制定环境政策和法规。但是,很少有研究调查农药与气候变化之间的关系,而开展这项工作的地方主要是与气候变化对农业生产的影响有关,而不是与环境保护有关。这项研究作为定量研究的前兆,通过回顾气候变化如何影响地表和地下水中农药的命运和运输来解决这一差距。为了构建该审查,我们采用了一种“源-途径-受体”方法,其中对农药来源术语,环境途径和受体的气候敏感性进行了审查。人们认为,改变农药命运和行为的主要气候驱动因素是降雨季节和强度的变化以及温度的升高,但是气候变化对农药命运和运输的影响可能变化很大且难以预测。从长远来看,间接影响,例如气候变化引起的土地利用变化,可能比气候变化对农药命运和运输的直接影响对地表和地下水中的农药产生更大的影响。审查的重点是英国的气候变化情景和案例研究;但是,一般性结论可以更广泛地应用。 (c)2006年NERC。由Elsevier B.V.发布。保留所有权利。

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