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首页> 外文期刊>Scientific reports. >Barometric-pumping controls fugitive gas emissions from a vadose zone natural gas release
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Barometric-pumping controls fugitive gas emissions from a vadose zone natural gas release

机译:气压泵送从Vadose区天然气释放中控制逃逸气体排放

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Subsurface natural gas release from leaking oil and gas wells is a major environmental concern. Gas migration can cause aquifer contamination, explosive conditions in soil gas, and greenhouse gas emissions. Gas migration is controlled by complex interacting processes, thus constraining the distribution and magnitude of "fugitive gas" emissions remains a challenge. We simulated wellbore leakage in the vadose zone through a controlled release experiment and demonstrate that fugitive gas emissions can be directly influenced by barometric pressure changes. Decreases in barometric-pressure led to surface gas breakthroughs (20-fold increase in 24?hours), even in the presence of low-permeability surficial soils. Current monitoring strategies do not consider the effect of barometric pressure changes on gas migration and may not provide adequate estimates of fugitive gas emissions. Frequent or continuous monitoring is needed to accurately detect and quantify fugitive gas emissions at oil and gas sites with a deep water table.
机译:泄漏油气井的地下天然气释放是一个主要的环境问题。气体迁移可引起土壤气体的含水层污染,爆炸性条件和温室气体排放。气体迁移由复杂的相互作用过程控制,从而限制“逃逸气体”排放的分布和幅度仍然是一个挑战。我们通过控释实验模拟井筒泄漏,并证明逃逸气体排放可以直接受到气压变化的影响。降低气压导致表面气体突破(> 20倍的<24Ω小时),即使在低渗透性表面土壤存在下也是如此。目前的监测策略不考虑气压变化对气体迁移的影响,可能无法提供足够的逃逸气体排放估计。需要频繁或连续的监测来准确地检测和量化油气部位的逃离气体排放,深水表。

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