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Selenium Dynamics in Headwater Streams of the Central Appalachian Coalfield

机译:阿巴拉契亚中部煤田上游水体中硒的动力学

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Coal mining can cause selenium (Se) contamination in US Appalachian streams, but linkages between water-column Se concentrations and Se bioaccumulation within Appalachian headwater streams have rarely been quantified. Using elevated specific conductance (SC) in stream water as an indicator of mining influence, we evaluated relationships between SC and Se concentrations in macroinvertebrates and examined dynamics of Se bioaccumulation in headwater streams. Twenty-three Appalachian streams were categorized into 3 stream types based on SC measurements: 1) reference streams with no coal-mining history; 2) mining-influenced, high-SC streams; and 3) mining-influenced, low-SC streams. Selenium concentrations in macroinvertebrates exhibited strong positive associations with both SC and dissolved Se concentrations in stream water. At 3 streams of each type, we further collected water, particulate matter (sediment, biofilm, leaf detritus), and macroinvertebrates and analyzed them for Se during 2 seasons. Enrichment, trophic transfer, and bioaccumulation factors were calculated and compared among stream types. Particulate matter and macroinvertebrates in mining-influenced streams accumulated high Se concentrations relative to reference streams. Concentrations were found at levels indicating Se to be a potential environmental stressor to aquatic life. Most Se enrichment, trophic transfer, and bioaccumulation factors were independent of season. Enrichment factors for biofilm and sediments and bioaccumulation factors for macroinvertebrate predators varied negatively with water-column Se. Our results increase scientific understanding of Se bioaccumulation processes in Appalachian headwater streams. Environ Toxicol Chem 2018;37:2714-2726. (c) 2018 SETAC
机译:煤炭开采会导致美国阿巴拉契亚河流中的硒(Se)污染,但是很少能量化水柱中硒浓度与阿巴拉契亚源头溪流中硒生物富集之间的联系。我们使用河水中的比电导率(SC)升高作为采矿影响的指标,我们评估了大型无脊椎动物中SC和Se浓度之间的关系,并研究了上游水体中Se生物富集的动态。根据SC测量,将23个阿巴拉契亚河流分为3种流类型:1)没有采煤历史的参考流; 2)受采矿影响的高SC流; 3)受采矿影响的低SC流。大型无脊椎动物中的硒浓度与溪流中的SC和溶解的Se浓度均显示出强正相关。在每种类型的3条溪流中,我们还收集了水,颗粒物(沉积物,生物膜,叶片碎屑)和大型无脊椎动物,并在2个季节对它们进行了硒分析。计算并比较了流类型之间的富集,营养传递和生物富集因子。相对于参考流,受采矿影响的流中的颗粒物和大型无脊椎动物积累了较高的硒浓度。发现浓度表明硒可能对水生生物造成环境压力。大多数硒的富集,营养传递和生物积累因子与季节无关。水柱硒对生物膜和沉积物的富集因子和大型无脊椎动物捕食者的生物富集因子呈负相关。我们的结果增加了对阿巴拉契亚河源流中硒生物富集过程的科学认识。 Environ Toxicol Chem 2018; 37:2714-2726。 (c)2018年SETAC

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