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Facilitating sustainable geo-resources exploitation: A review of environmental and geological risks of fluid injection into hydrocarbon reservoirs

机译:促进可持续地质资源开发:对碳氢化合物储层流体注射的环境和地质风险审查

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摘要

Natural gas is an important low-carbon geo-resource for sustaining future energy demand. However, production is currently impeded by the negative effects of reservoir compaction, i.e. induced seismicity and surface subsidence. Fluid injection into producing or depleted hydrocarbon reservoirs is one of the strategies to mitigate compaction, though it may introduce other negative consequences. This study aims to identify lessons and potential knowledge gaps on the causes and mechanisms of consequences of such injection operations. An overview of the environmental and geological hazards and risks is developed by examining literature on four commonly injected fluids, i.e. CO2, methane, nitrogen and wastewater. The well-recognised hazards are leakage, reservoir deformation and induced seismicity, which have consequences for several environmental receptors, e.g. the atmosphere, surface sediments and water, subsurface resources and groundwater. Generally, in defining the risk, there is a consensus on the probability of hazards occurrence, while a lack of knowledge on the hazard impacts exists. The assessment approaches analysis also indicates that consequence magnitude evaluations and comparisons to thresholds are often missing from the risk assessments. For all examined injection fluids, knowledge on hazard occurrence, hazard exposure and receptor affectability is insufficient. Furthermore, in complex subsurface systems with high uncertainty, more insight in the probability of multiple hazards occurrence and the corresponding cumulative risks is needed.
机译:天然气是一种重要的低碳地质资源,用于维持未来的能源需求。然而,目前生产的生产是通过储层压实的负面影响而阻碍,即诱导地震性和表面沉降。流体注射到生产或耗尽的碳氢化合物储层是减轻压实的策略之一,但它可能引入其他负面后果。本研究旨在识别对此类注射行动后果的原因和机制的课程和潜在知识差距。通过在四种常用的液体上检查文献,即CO 2,甲烷,氮气和废水来开发环境和地质灾害和风险的概述。公认的危险是泄漏,储层变形和诱导的地震性,其对几种环境受体产生后果,例如,大气,表面沉积物和水,地下资源和地下水。一般来说,在定义风险时,存在对危害发生概率的共识,而存在对危险影响的知识存在。评估方法分析还表明,从风险评估中仍缺少后果幅度评估和比较阈值。对于所有检查的注射液,有关危害发生的知识,危害暴露和受体可变形性不足。此外,在具有高不确定性的复杂地下系统中,在需要多种危险的可能性和相应的累积风险的可能性上有更多的洞察力。

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