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首页> 外文期刊>Environmental science & policy >Revisiting the aquatic impacts of copper discharged by water-cooled copper alloy condensers used by power and desalination plants
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Revisiting the aquatic impacts of copper discharged by water-cooled copper alloy condensers used by power and desalination plants

机译:回顾电力和海水淡化厂使用的水冷铜合金冷凝器排放的铜对水的影响

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Power generation and desalination plants have used water-cooled copper alloy condensers since the 1960s. During the late 1970s some copper discharges associated with these condensers were implicated as a cause of adverse aquatic impacts and water quality criteria (WQC) exceedances. Given recent advances in monitoring and impact assessment techniques, it was therefore decided to complete an updated review of the aquatic impacts of copper alloy condenser discharges. In conducting such a review, it is necessary to accurately define both the exposure and effect levels of concern, and to consider bioavailability. The evaluation of copper exposure levels requires use of clean sampling and analytical techniques. A review of historical data showed that some previously reported copper data probably overstated actual levels due to failure to use these techniques. Further, the regulatory effect levels of concern, the WQC, have often been found to be overly protective relative to the level of protection intended by regulatory guidelines. Thus, WQC refinements have been introduced, including: a revision of the saltwater copper criterion, a recommendation to use dissolved copper to assess compliance, and development of procedures to set site-specific WQC. Considering the latter, the biotic ligand model, an evaluative tool that considers copper bioavailability, is introduced as a computational alternative to setting bioassay-based site-specific criteria. Based on the preceding considerations, bioavailable copper exposure levels are lower than previously believed, effect levels of concern (applicable site-specific WQC) have increased, and the desired level of protection has been achieved more frequently than previous analyses have indicated.
机译:自1960年代以来,发电厂和海水淡化厂就一直在使用水冷铜合金冷凝器。在1970年代后期,与这些冷凝器相关的一些铜排放被认为是不利的水生影响和水质标准(WQC)超出的原因。鉴于监测和影响评估技术的最新进展,因此决定完成对铜合金冷凝器排放水生影响的最新审查。在进行此类审查时,有必要准确定义关注的暴露水平和影响水平,并考虑生物利用度。铜暴露水平的评估需要使用干净的采样和分析技术。对历史数据的回顾表明,由于未能使用这些技术,一些先前报告的铜数据可能夸大了实际水平。此外,经常发现关注的监管效果级别WQC相对于监管准则所预期的保护级别而言过于保护。因此,已经引入了WQC改进,包括:修订咸水铜标准,使用溶解铜评估合格性的建议以及制定设置特定地点WQC的程序。考虑到后者,引入了生物配体模型(一种考虑铜生物利用度的评估工具),作为设置基于生物测定的特定地点标准的计算替代方案。基于前面的考虑,可生物利用的铜暴露水平低于以前认为的水平,关注的影响水平(适用于特定地点的WQC)有所增加,并且所需的保护水平比以前的分析表明的要高。

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