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Association between unconventional oil and gas (UOG) development and water quality in small streams overlying the Marcellus Shale

机译:在Marcellus页岩覆盖的小型溪流中的非传民油气(UOG)开发和水质之间的关联

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Unconventional oil and gas (UOG) development has increased dramatically in the Marcellus Shale region over the past decade, and there is widespread public concern about the potential effects that UOG development may have on water quality. The goal of this study was to assess whether a suite of stream water quality constituents was related to the intensity of UOG development in corresponding catchments. Nineteen streams in southwestern Pennsylvania, where UOG development is prevalent, and 10 streams in western Maryland, where no UOG development has occurred, were sampled in summer 2013. Dissolved metals, radium isotopes, radon, specific conductance, stream discharge, and pH were measured. Principal component analysis revealed that samples tended to cluster by state, but some overlap in water quality existed between Maryland and Pennsylvania. Linear models were used to assess how response variables were related to UOG, other extractive activities, and landscape characteristics. These models showed that an index of oil and gas development had significant explanatory power for specific conductance, As, Ca, K, Mg, Na, and Sr. Other land use and land cover variables, such as forest, urban development, and coal mining, as well as stream discharge and pH, also were significantly associated with response variables. These results suggest that, in the Marcellus Shale region, UOG may elevate specific conductance and dissolved element concentrations in streams, but it should be considered in the context of broader patterns of land use and human activity.
机译:在过去的十年中,Marcellus Shale地区的非传民石油和天然气(UOG)的发展在大幅增加,大众担心巨大的开发可能对水质的潜在影响。本研究的目的是评估一套流水质成分是否与相应集水区中的迁移强度有关。宾夕法尼亚州西南部的十九辆溪流,在2013年夏季,在马里兰州的普遍开发是普遍存在的,并且在西部马里兰州的10个溪流,在2013年夏天进行了采样。测量溶解的金属,镭同位素,氡,比率,流放电和pH 。主要成分分析显示,样品倾向于群体的群体,但马里兰州和宾夕法尼亚州的水质中存在一些重叠。线性模型用于评估响应变量如何与UOG,其他提取活动和景观特征有何相关。这些模型表明,石油和天然气发育指数具有显着的特定电导率的解释力,如Ca,K,Mg,Na和Sr.其他土地使用和陆地覆盖变量,如森林,城市开发和煤炭开采以及物流放电和pH,也与响应变量显着相关。这些结果表明,在Marcellus Shale地区,UOG可以提高物流中的特定电导和溶解元素浓度,但应在更广泛的土地使用模式和人类活动模式中考虑。

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