首页> 外文期刊>Environmental Science & Technology >Modeling effects of mixtures of endocrine disrupting chemicals at the river catchment scale
【24h】

Modeling effects of mixtures of endocrine disrupting chemicals at the river catchment scale

机译:流域尺度内分泌干扰物混合物的模拟效果

获取原文
获取原文并翻译 | 示例
       

摘要

For endocrine disrupting chemicals in the environment, concerns arise primarily from the effects that may be induced in wildlife. A well studied example is estrogenic chemicals in the aquatic environment and their effects on fish. Directly measuring effects, in fieldwork studies, is an expensive and time-consuming approach that is fraught with many difficulties, ranging from study design right through to data analysis and interpretation. An alternative approach would be to predict the scale of effect(s) using suitable modeling techniques. We have attempted to do this using estrogenic chemicals as an example. We chose this group of aquatic pollutants because of the current considerable interest in them and the wealth of biological data available on them. Using the established GREAT-ER hydrological model, we have first predicted the concentrations and then the estrogenic effects on fish, of estrone, estradiol, ethinyl estradiol, and nonylphenol individually throughout an entire river catchment. We then show that knowledge of the biological responses of fish to mixtures of these chemicals can be used to predict the effect of environmentally realistic mixtures of them. To determine the degree of risk posed by this group of chemicals, it was necessary to take into account mixture effects: assessment on a chemical by chemical basis led to underestimations of the risk. Finally, we show that the approach can be used to predict how the risk will be affected by changes in the concentration of one chemical in the mixture. Although we have used only one endpoint (vitellogenin induction as an estrogenic response) and one group of similarly acting chemicals, we suggest that this general approach could prove extremely useful to regulatory authorities and other parties charged with protecting aquatic wildlife from adverse effects caused by chemicals in their environment.
机译:对于环境中破坏内分泌的化学物质,人们主要担心的是野生生物可能引起的影响。一个经过充分研究的例子是水生环境中的雌激素化学物质及其对鱼类的影响。在实地研究中,直接测量效果是一种昂贵且耗时的方法,充满很多困难,从研究设计到数据分析和解释。一种替代方法是使用适当的建模技术来预测效果的规模。我们已尝试使用雌激素化学物质作为示例。我们之所以选择这组水生污染物,是因为目前对它们有相当大的兴趣,以及有关它们的大量生物学数据。使用已建立的GREAT-ER水文模型,我们首先预测了整个河流集水区中雌酮,雌二醇,炔雌醇和壬基酚的浓度,然后预测了它们对鱼类的雌激素作用。然后,我们表明,鱼类对这些化学混合物的生物反应的知识可以用来预测它们在环境上现实的混合物的影响。为了确定这组化学品带来的风险程度,有必要考虑混合物的影响:在逐个化学品的基础上进行评估会导致风险的低估。最后,我们证明了该方法可用于预测混合物中一种化学品浓度的变化将如何影响风险。尽管我们仅使用了一个终点(玻璃体素诱导作为一种雌激素反应)和一组类似作用的化学物质,但我们建议,这种通用方法对于监管机构和其他负责保护水生野生生物免受化学物质造成的不利影响的各方可能极为有用在他们的环境中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号