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首页> 外文期刊>Environmental Science & Technology Letters >Strontium Isotope Ratios in Fish Otoliths as Biogenic Tracers of Coal Combustion Residual Inputs to Freshwater Ecosystems
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Strontium Isotope Ratios in Fish Otoliths as Biogenic Tracers of Coal Combustion Residual Inputs to Freshwater Ecosystems

机译:鱼欧替尔斯锶同位素比例作为淡水生态系统的煤燃烧残余投入的生物示踪剂

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摘要

Permitted and accidental releases of contaminants from coal combustion residual (CCR) storage facilities pose environmental and ecological risks for associated freshwater ecosystems around the world. Previous studies have applied isotope ratios in CCRs as environmental tracers to delineate and quantify the impact of CCRs and other fossil fuel wastes. In this proof-of-concept study, we present data from CCR-receiving as well as non-impacted lakes in North Carolina to assess the applicability of otolith-based strontium isotope ratios as biogenic tracers of CCRs in ecosystems receiving coal-fired power plant effluents. We show that while discrepancies between bulk otolith and surface water ratios likely reflected temporal variations in CCR inputs and/or upstream water sources over fish lifetimes, Sr-87/Sr-86 ratios in largemouth bass (Micropterus salmoides) otoliths consistently reflected those in lake sediment pore waters. Because biogenic Sr-87/Sr-86 ratios are both geochemically and metabolically stable, they are potentially powerful tools for informing contamination sources and timing alongside studies investigating the effects of co-occurring trace elements in fossil fuel waste streams.
机译:煤炭燃烧残留(CCR)储存设施的允许和意外释放污染物占世界各地相关淡水生态系统的环境和生态风险。以前的研究在CCR中应用了同位素比作为环境示踪剂,以描绘并量化CCR和其他化石燃料废物的影响。在这种概念证明研究中,我们从CCR接收以及北卡罗来纳州的非受影响的湖泊提供了数据,以评估基于Otolith的锶同位素比的适用性作为接受燃煤发电厂的生态系统中CCR的生物转换器流出物。我们认为,虽然散装欧特里斯和地表水比之间的差异可能反映了CCR输入和/或上游水源在鱼类寿命上,但在洛根鲈(Micropterus Salloides)欧洛伊斯的SR-87 / SR-86比率始终反映了湖泊中的SR-87 / SR-86比率沉积物孔隙水。因为生物生物的SR-87 / SR-86比率都是地球织化学和代谢稳定的,因此它们是通知污染源和研究的潜在强大的工具,以及研究研究在化石燃料废料流中的共同出现的微量元素的影响。

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