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The impact of pesticides on local waterways: A scoping review and method for identifying pesticides in local usage

机译:农药对局部水道的影响:鉴定局部用法杀虫剂的范围综述与方法

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Pesticides used in agriculture are widely considered to be the most cost-effective way to reduce undesirable plants and animal pests and increase crop yields. However, these economic benefits should be evaluated against any deleterious impacts on the natural environment and human health. While a great deal of attention is paid to the impact of agricultural runoff, more studies are needed on the impacts of pesticides on local waterways. The aim of this study was to: (i) develop a methodology to determine which pesticides were being used in local agriculture in the Byron Shire, Australia, and (ii) search the literature for evidence of the impact of these chemicals on local waterways. After a comprehensive search involving multiple government databases, three herbicides with potentially high toxicity on the aquatic ecosystems and humans, which are used for the treatment of crops cultivated on the agricultural land in the Byron Shire, Australia, were selected for this review: bromoxynil, diquat and paraquat. In the systematic scoping review, two databases were searched (Scopus and Web of Science) for publications between January 2008 and April 2019. From 160 articles identified, 36 papers were selected for inclusion. The evidence of harmful effects at realistic field concentrations (concentrations that are within the recommended safety range for use in the environment) was found for all selected herbicides, but not on all organisms. In aquatic environments, diquat was found to be toxic to snails and bromoxynil to microalgae. The clearest and most consistent evidence was found for paraquat. At realistic field concentrations, paraquat: (i) severely inhibited healthy bacterial growth (E. coli), (ii) distorted tropical freshwater plankton communities, and (iii) increased fish kills (common carp) three times more than the weed (water hyacinth) that it was employed to control. Of particular concern is that paraquat has been banned from sale in the European Union and many countries around the world but remains available in Australia and is likely in use in the Byron Shire. While there are existing Australian government regulations restricting the use of paraquat in agriculture, further work is required to scope the extent of its use, the effectiveness of these regulations and the amount of paraquat entering the environment. This study provides a methodology that can be used to identify pesticides that are likely to be in local use and to identify evidence of any negative impacts on the health of local waterways.
机译:农业中使用的农药被广泛认为是减少不良植物和动物害虫的最具成本效益的方法,并增加作物产量。但是,应评估这些经济效益,以反对对自然环境和人类健康的任何有害影响。虽然对农业径流的影响有大量关注,但需要更多的研究对农药对当地水道的影响。本研究的目的是:(i)制定一种方法,以确定在拜伦郡,澳大利亚和(ii)中将哪些农药用于当地农业中使用哪些农药,以证明这些化学物质对当地水道的影响。在涉及多个政府数据库的全面搜索后,选择了三种对水生生态系统和人类有潜在高毒性的除草剂,这些药物用于澳大利亚拜伦郡的农业用地培养的农作物,审查:Bromoxynil,肝脏和百草枯。在系统范围审查中,在2008年1月至2019年4月期间搜索了两个数据库(Scopus和Science Web)出版物。从160篇被确定的文章中,选择了36篇论文纳入其中。对所有选定的除草剂发现了所有选定的除草剂,但在所有选定的除草剂中发现了对现实场浓度(在环境中使用的建议安全范围内的浓度)的证据。在水生环境中,发现毒液对蜗牛和溴昔单机进行毒性毒性。最清晰,最一致的证据是针对百草枯的。在现实的田间浓度下,百草枯:(i)严重抑制健康的细菌生长(大肠杆菌),(ii)扭曲的热带淡水浮游生物社区,(iii)比杂草的三倍(普通鲤鱼)增加了(普通鲤鱼)(水风信子) )它被用来控制。特别值得关注的是,百草枯被禁止在欧盟和全球许多国家销售,但在澳大利亚仍然可用,并且可能在拜伦郡使用。虽然存在现有的澳大利亚政府法规限制了农业拟人的使用,但需要进一步的工作来占据其使用程度,这些条例的有效性以及进入环境的百草枯的数量。本研究提供了一种方法,可用于识别可能在当地使用的农药,并确定对当地水道健康产生任何负面影响的证据。

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