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燃煤电厂的临近是否会影响鱼类组织中的汞含量?

Does proximity to coal-fired power plants influence fish tissue mercury?

机构信息

Department of Biology, North Carolina State University, Raleigh, NC 27695-7617, USA.

出版信息

Ecotoxicology. 2010 Nov;19(8):1601-11. doi: 10.1007/s10646-010-0545-5. Epub 2010 Sep 17.

Abstract

Much of the mercury contamination in aquatic biota originates from coal-fired power plants, point sources that release mercury into the atmosphere. Understanding mercury dynamics is primarily important because of the toxic threat mercury poses to wildlife and humans through the consumption of contaminated fish. In this study, we quantified the relative importance of proximity to coal-fired power plants on mercury accumulation in two fish species of different trophic positions. Fish, water and sediment were collected and analyzed from 14 lakes, seven near to (<10 km) and seven far from (>30 km) coal-fired power plants. Lower tissue mercury and higher tissue selenium concentrations were measured in fish collected near power plants. Moreover, mercury accumulation in fish was driven by biotic characteristics (e.g., trophic position, total length, age), waterbody characteristics (e.g., pH, dissolved organic carbon and sulfate) and distance from power plants. Proximity to an atmospheric point-source of mercury and selenium, such as a coal-fired power plant, affects the quantities of mercury and selenium accumulated in fish tissue. Differences in accumulation are hypothesized to be driven in part by selenium-mitigated reductions in fish tissue mercury near power plants. Although reduced fish tissue mercury in systems near power plants may decrease mercury-specific risks to human consumers, these benefits are highly localized and the relatively high selenium associated with these tissues may compromise ecological health.

摘要

水生物种中的大部分汞污染源自燃煤电厂等点源,这些点源将汞释放到大气中。了解汞的动态变化主要很重要,因为通过食用受污染的鱼类,汞会对野生动物和人类构成毒害威胁。在这项研究中,我们量化了燃煤电厂的接近程度对两种不同营养级鱼类中汞积累的相对重要性。从 14 个湖泊中采集了鱼类、水和沉积物,其中 7 个靠近(<10 公里),7 个远离(>30 公里)燃煤电厂。在靠近电厂的鱼类中,组织中的汞含量较低,而组织中的硒含量较高。此外,鱼类中的汞积累受生物特征(如营养级、总长度、年龄)、水体特征(如 pH 值、溶解有机碳和硫酸盐)和与电厂的距离的驱动。靠近大气汞和硒的点源(如燃煤电厂)会影响鱼类组织中积累的汞和硒的数量。积累的差异部分归因于靠近电厂时,硒减轻了鱼类组织中汞的积累。尽管靠近电厂的系统中鱼类组织中的汞含量降低可能会降低人类消费者的特定汞风险,但这些益处具有高度局限性,与这些组织相关的相对较高的硒可能会损害生态健康。

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