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Impacts of Coal Resource Development on Surface Water Quality in a Multi‐jurisdictional Watershed in the Western United States

机译:煤炭资源开发对美国西部多辖区分水岭地表水质的影响

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This study focuses on water quality and quantity impacts from natural resource development on watersheds originating on Crow tribal lands in southeastern Montana. Field research analysis will focus on the surface water quality in three adjacent watersheds. This study will determine impacts to water quality from reclaimed coal mine spoils surface runoff and produced water discharge from coal bed methane wells within the watersheds. A secondary research objective is to determine a baseline assessment of surface water in watersheds prior to proposed mine development, particularly on tribally owned and allotted tracts. Historical data from state agencies will also be compared to data collected within watersheds on tribal lands. Water quality impacts from mining development may be more pronounced than that of coal bed methane as the reclaimed mining sites have demonstrated lasting impacts on the nearby surface water quality in the study area. Historical and current samples have demonstrated increased sodium absorption ratio and sodium levels downstream of a mine site in a tributary to the primary watershed. A sample from a pond in another reclaimed mine site contained the highest sodium adsorption ratio levels of all surface water samples. Coal bed methane development impacts may have been transient in the primary watershed surface water based on sample results. Historical oil and gas development appears to be impacting surface water quality within the southernmost watershed. Analysis has shown the increasing degradation of water quality in watersheds downstream and across the state boundary of Montana into Wyoming where natural resource development has occurred.
机译:本研究重点介绍了蒙大拿州乌鸦部族土地的流域自然资源开发的水质和数量影响。现场研究分析将专注于三个邻近水域的地表水质。该研究将从再生煤矿中的影响,从食物煤矿中的水质的影响破坏了水面径流,并在流域内产生了水煤层井的排水。二级研究目标是在提出的矿山发展之前确定流域水域水域的基线评估,特别是在分枝拥有和分配的尸体上。州各机构的历史数据也将与部落土地上的流域内收集的数据进行比较。采矿开发的水质影响可能比煤层甲烷更加明显,因为再生的采矿部位表现出对研究区附近的地表水质的持久影响。历史和当前样品在矿工位点中的钠吸收率和钠水平呈矿工部位的增加,对原发性流域。来自另一个再生矿部位的池塘中的样品含有所有地表水样的最高的吸附率水平。基于样品结果,煤层甲烷的开发撞击可能存在于原发性流域水域中的瞬态。历史石油和天然气开发似乎在最南端的水质中受到影响。分析表明,流域下游水质越来越低落,蒙大拿州蒙大拿州的国家边界发生了自然资源开发的怀俄明州。

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