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为了更好地保障区域水质,改善水力压裂化学物质的命运和影响特征。

Towards improved characterization of the fate and impact of hydraulic fracturing chemicals to better secure regional water quality.

机构信息

State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China.

CAS Center for Excellence in Deep Earth Science, Guangzhou, 510640, China.

出版信息

Environ Sci Process Impacts. 2022 Apr 21;24(4):497-503. doi: 10.1039/d2em00034b.

Abstract

Hydraulic fracturing (HF) of shale and other permeable rock formations to extract gas and oil is a water-intensive process that returns a significant amount of flowback and produced water (FPW). Due to the complex chemical composition of HF fluids and FPW, this process has led to public concern on the impacts of FPW disposal, spillage and spreading to regional freshwater resources, in particular to shallow groundwater aquifers. To address this, a better understanding of the chemical composition of HF fluid and FPW is needed, as well as the environmental fate properties of the chemical constituents, such as their persistence, mobility and toxicity (PMT) properties. Such research would support risk-based management strategies for the protection of regional water quality, including both the phase-out of problematic chemicals and better hydraulic safeguards against FPW contamination. This article presents recent strategies to advance the assessment and analysis of HF and FPW associated organic chemicals.

摘要

水力压裂(HF)页岩和其他渗透性岩层以提取天然气和石油是一个耗水的过程,会产生大量的返排液和产出水(FPW)。由于 HF 流体和 FPW 的复杂化学成分,这一过程引起了公众对 FPW 处置、溢出和扩散到区域淡水资源,特别是浅层地下水含水层的影响的关注。为了解决这个问题,需要更好地了解 HF 流体和 FPW 的化学成分,以及化学成分的环境归宿特性,例如它们的持久性、迁移性和毒性(PMT)特性。这种研究将支持基于风险的管理策略,以保护区域水质,包括淘汰有问题的化学物质和更好地防止 FPW 污染的水力保障措施。本文介绍了最近用于推进 HF 和 FPW 相关有机化学品评估和分析的策略。

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