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地下水保护与非常规天然气开采:基于现场的水文地质学研究的迫切需求。

Groundwater protection and unconventional gas extraction: the critical need for field-based hydrogeological research.

机构信息

Geofirma Engineering Ltd., 11 Venus Crescent, Heidelberg, Waterloo Region, Ontario, Canada.

出版信息

Ground Water. 2013 Jul-Aug;51(4):488-510. doi: 10.1111/gwat.12074. Epub 2013 Jun 7.

Abstract

Unconventional natural gas extraction from tight sandstones, shales, and some coal-beds is typically accomplished by horizontal drilling and hydraulic fracturing that is necessary for economic development of these new hydrocarbon resources. Concerns have been raised regarding the potential for contamination of shallow groundwater by stray gases, formation waters, and fracturing chemicals associated with unconventional gas exploration. A lack of sound scientific hydrogeological field observations and a scarcity of published peer-reviewed articles on the effects of both conventional and unconventional oil and gas activities on shallow groundwater make it difficult to address these issues. Here, we discuss several case studies related to both conventional and unconventional oil and gas activities illustrating how under some circumstances stray or fugitive gas from deep gas-rich formations has migrated from the subsurface into shallow aquifers and how it has affected groundwater quality. Examples include impacts of uncemented well annuli in areas of historic drilling operations, effects related to poor cement bonding in both new and old hydrocarbon wells, and ineffective cementing practices. We also summarize studies describing how structural features influence the role of natural and induced fractures as contaminant fluid migration pathways. On the basis of these studies, we identify two areas where field-focused research is urgently needed to fill current science gaps related to unconventional gas extraction: (1) baseline geochemical mapping (with time series sampling from a sufficient network of groundwater monitoring wells) and (2) field testing of potential mechanisms and pathways by which hydrocarbon gases, reservoir fluids, and fracturing chemicals might potentially invade and contaminate useable groundwater.

摘要

从致密砂岩、页岩和一些煤层中非常规天然气的开采通常采用水平钻井和水力压裂技术,这对于这些新型碳氢资源的经济开发是必要的。人们对与非常规天然气勘探相关的游离气、地层水和压裂化学物质可能污染浅层地下水的问题表示担忧。由于缺乏对常规和非常规石油和天然气活动对浅层地下水影响的可靠水文地质现场观测,以及发表的同行评议文章稀缺,因此难以解决这些问题。在这里,我们讨论了几个与常规和非常规石油和天然气活动有关的案例研究,说明了在某些情况下,深部富气地层中的游离或逸散气是如何从地下迁移到浅层含水层的,以及它是如何影响地下水质量的。这些例子包括在历史钻井作业区未固结的井环的影响、新旧烃井中水泥胶结不良的影响以及无效的固井实践的影响。我们还总结了描述结构特征如何影响天然和诱导裂缝作为污染物流体运移途径的研究。基于这些研究,我们确定了两个需要进行现场重点研究的领域,以填补与非常规天然气开采相关的当前科学空白:(1)基线地球化学测绘(通过足够数量的地下水监测井进行时间序列采样)和(2)对烃类气体、储层流体和压裂化学物质可能潜在侵入和污染可用地下水的潜在机制和途径的现场测试。

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