水力压裂液的地球化学研究

Avner Vengosh , Andrew Kondash , Jennie Harkness , Nancy Lauer , Nathaniel Warner , Thomas H. Darrah
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引用次数: 43

摘要

综述了水力压裂液的无机地球化学特征,并对非常规页岩气和致密砂岩地层中圈闭地层水对返排和采出水质量的影响有了新的认识。在生产过程中,返排液矿化度的快速升高,结合地球化学和同位素变化,表明高盐地层水与注入水混合。盐度的增加表明,与返排水一起返回地表的注入水量比之前估计的要小得多,因此大部分注入水被保留在页岩地层中。返排水和采出水的高盐度与高浓度的卤化物、铵、金属、类金属和镭核素有关,在将水力压裂液释放到环境中时,这些物质会对环境和人类健康构成风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Geochemistry of Hydraulic Fracturing Fluids

The inorganic geochemistry of hydraulic fracturing fluids is reviewed with new insights on the role of entrapped formation waters in unconventional shale gas and tight sand formations on the quality of flowback and produced waters that are extracted with hydrocarbons. The rapid increase of the salinity of flowback fluids during production, combined with geochemical and isotopic changes, indicate mixing of the highly saline formation water with the injected water. The salinity increase suggests that the volume of the injected water that is returned to the surface with the flowback water is much smaller than previous estimates, and thus the majority of the injected water is retained within the shale formations. The high salinity of the flowback and produced water is associated with high concentrations of halides, ammonium, metals, metalloids, and radium nuclides that pose environmental and human health risks upon the release of the hydraulic fracturing fluids to the environment.

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