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Development And Application Of A Species Sensitivity Distribution For Temperature-induced Mortality In The Aquatic Environment

机译:水生环境温度致死物种敏感性分布的研究与应用

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摘要

Current European legislation has static water quality objectives for temperature effects, based on the most sensitive species. In the present study a species sensitivity distribution (SSD) for elevated temperatures is developed on the basis of temperature sensitivity data (mortality) of 50 aquatic species. The SSD applies to risk assessment of heat discharges that are localized in space or time. As collected median lethal temperatures (LT50 values) for different species depend on the acclimation temperature, the SSD is also a function of the acclimation temperature. Data from a thermal discharge in The Netherlands are used to show the applicability of the developed SSD in environmental risk assessment. Although restrictions exist in the application of the developed SSD, it is concluded that the SSD approach can be applied to assess the effects of elevated temperature. Application of the concept of SSD to temperature changes allows harmonization of environmental risk assessment for stressors in the aquatic environment. When a synchronization of the assessment methods is achieved, the steps to integration of risks from toxic and nontoxic stressors can be made.
机译:根据最敏感的物种,当前的欧洲法规对温度影响有静态的水质目标。在本研究中,基于50种水生物种的温度敏感度数据(死亡率),开发了针对高温的物种敏感度分布(SSD)。 SSD适用于空间或时间局部的散热风险评估。由于收集到的不同物种的中位致死温度(LT50值)取决于适应温度,因此SSD也是适应温度的函数。荷兰的一次散热数据用于显示开发的固态硬盘在环境风险评估中的适用性。尽管开发的SSD的应用存在限制,但可以得出结论,可以将SSD方法应用于评估高温的影响。将SSD的概念应用于温度变化可以协调水生环境中应激源的环境风险评估。当评估方法实现同步时,就可以将有毒和无毒应激源的风险综合起来。

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