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首页> 外文期刊>Journal of Hydrology >Setting the baseline for shale gas - Establishing effective sentinels for water quality impacts of unconventional hydrocarbon development
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Setting the baseline for shale gas - Establishing effective sentinels for water quality impacts of unconventional hydrocarbon development

机译:设定页岩气的基线 - 建立有效的哨兵水质对非传统碳氢化合物发育的影响

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摘要

There is a need for the development of effective baselines against which the water quality impacts of industry in general, and shale gas extraction specifically, can be assessed. The salinity, and hence the specific conductance, of fluids associated with shale gas extraction is typically many times higher that of river water. The contrast between these two water types means that testing for salinity (specific conductance) could provide an ideal sentinel for detecting environmental impact of shale gas extraction. Here, Bayesian generalised linear modelling was used to predict specific conductance across English surface waters. The modelling used existing, spot-sampled data from 2005 to 2015 from 123 sites to assess whether this approach could predict variation for subsequent years or for a new site (data from 2002 to 2015). We show that the results were readily projected in to subsequent years for sites included in the initial analysis. The use of covariates (land-use, hydroclimatic and soil descriptors) did not prove useful in predicting specific conductance at further sites not previously included in the analysis. The extension of the approach to 6833 English river monitoring sites with 10 or more observations from more than one year over the period 2005-2015 showed that it was possible to reproduce the seasonal variation in river water specific conductance. The approach taken here shows that it is possible to use low-frequency but widespread monitoring data to predict natural variation at monitoring sites to give a probabilistic assessment of whether or not a pollution incident has occurred and the seasonal variation, expressed as uncertainty bounds around the observations, at a specific site has been exceeded.
机译:可以评估有效地开发工业水质对行业的水质影响,以及岩石气体提取,可以进行评估。与页岩气体提取相关的液体的盐度和特定的电导通常较高,河水的流体通常较高。这两种水类型之间的对比意味着对盐度的测试(特定电导)可以提供理想的哨兵,用于检测页岩气提取的环境影响。这里,贝叶斯广义的线性建模用于预测英国地表水域的特定电导。从123个站点的2005年到2015年使用的现有发现数据的建模,以评估此方法是否可以预测后续年份或新网站的变化(2002年至2015年的数据)。我们展示了结果,在初步分析中包含的网站,结果易于预测到随后的几年。协变量(土地使用,循环和土壤描述符)的使用在预先预测以前未包括在分析中的其他部位的特定导量中没有证明。在2005 - 2015年期间,从超过一年的观察到6833英国河流监测网站的延伸表明,有可能在河水具体的河流上繁殖季节性变化。这里采取的方法表明,可以使用低频但广泛的监测数据来预测监测网站的自然变化,以给出污染事件是否发生的概率评估以及季节性变化,表示为周围的不确定性界限已经超过了特定部位的观察结果。

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