A Critical Review of State-of-the-Art and Emerging Approaches to Identify Fracking-Derived Gases and Associated Contaminants in Aquifers

水力压裂 含水层 非常规油 环境科学 温室气体 固碳 化石燃料 石油工程 天然气 地下水 废物管理 地质学 二氧化碳 工程类 化学 海洋学 岩土工程 有机化学
作者
Jennifer C. McIntosh,M. Jim Hendry,C. J. Ballentine,R. Stuart Haszeldine,Bernhard Mayer,Giuseppe Etiope,Martin Elsner,Thomas H. Darrah,Alain Prinzhofer,Stephen G. Osborn,Linda Stalker,Olukayode Kuloyo,Zheng-Tian Lu,Anna M. Martini,Barbara Sherwood Lollar
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:53 (3): 1063-1077 被引量:43
标识
DOI:10.1021/acs.est.8b05807
摘要

High-volume, hydraulic fracturing (HVHF) is widely applied for natural gas and oil production from shales, coals, or tight sandstone formations in the United States, Canada, and Australia, and is being widely considered by other countries with similar unconventional energy resources. Secure retention of fluids (natural gas, saline formation waters, oil, HVHF fluids) during and after well stimulation is important to prevent unintended environmental contamination, and release of greenhouse gases to the atmosphere. Here, we critically review state-of-the-art techniques and promising new approaches for identifying oil and gas production from unconventional reservoirs to resolve whether they are the source of fugitive methane and associated contaminants into shallow aquifers. We highlight future research needs and propose a phased program, from generic baseline to highly specific analyses, to inform HVHF and unconventional oil and gas production and impact assessment studies. These approaches may also be applied to broader subsurface exploration and development issues (e.g., groundwater resources), or new frontiers of low-carbon energy alternatives (e.g., subsurface H2 storage, nuclear waste isolation, geologic CO2 sequestration).

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