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评估美国页岩油藏碳储存潜力的不同方法。

Different ways to approach shale reservoirs' CO storage potential in America.

作者信息

Ni Ruichong, Ling Kegang, Afari Samuel

机构信息

University of North Dakota, Grand Forks, ND, USA.

出版信息

Heliyon. 2023 Jul 20;9(8):e18458. doi: 10.1016/j.heliyon.2023.e18458. eCollection 2023 Aug.

Abstract

To achieve the Net Zero Carbon Emissions (NZCE) target by 2050, Carbon Capture, Utilization, and Storage (CCUS) is a major method. Gathering and injecting CO into shale reservoirs is an effective way to reduce the CO amount in the air and thus, release the greenhouse effect. CO injection into organic-rich shales could provide dual benefits of incremental oil or gas recovery and secure CO storage. When planning the CO injection project, the most important question is how much gas could be stored in the reservoir. Methods for calculating CO storage potential in shale reservoirs have been studied by many researchers. However, few researchers put those methods together and make comparisons to each other. This paper summarized five methods for evaluating CO storage potential in five shale reservoirs by using the literature published in recent years. This paper aims to discuss and evaluate the technical aspects related to gas storage. Those geomechanical properties, petrophysical properties, and construction parameters were discussed. Among those parameters, CO injection rate, skin factor, and Knudsen diffusion could significantly affect CO storage potential evaluation results. Also, if well integrity, especially cement quality, and permeability could be taken into consideration, CO storage simulation models' results will be more realistic. The significances of this study are: (1) served as guidance in calculating CO storage capacity in shale oil plays; (2) provides analyses in evaluating nowadays methods' limitations; (3) gives recommendations to researchers on how to improve those methods or create a new one.

摘要

为了在2050年前实现净零碳排放(NZCE)目标,碳捕集、利用与封存(CCUS)是一种主要方法。将二氧化碳收集并注入页岩储层是减少空气中二氧化碳含量从而缓解温室效应的有效途径。向富含有机质的页岩中注入二氧化碳可以带来提高油气采收率和实现二氧化碳安全封存的双重效益。在规划二氧化碳注入项目时,最重要的问题是储层能够储存多少气体。许多研究人员对计算页岩储层二氧化碳封存潜力的方法进行了研究。然而,很少有研究人员将这些方法整合起来并相互比较。本文通过梳理近年来发表的文献,总结了五种评估五个页岩储层二氧化碳封存潜力的方法。本文旨在讨论和评估与气体储存相关的技术层面。对那些地质力学性质、岩石物理性质和施工参数进行了讨论。在这些参数中,二氧化碳注入速率、表皮因子和克努森扩散会显著影响二氧化碳封存潜力的评估结果。此外,如果能够考虑井筒完整性,特别是水泥质量和渗透率,二氧化碳储存模拟模型的结果将更加符合实际。本研究的意义在于:(1)为计算页岩油藏的二氧化碳储存能力提供指导;(2)分析评估现有方法的局限性;(3)为研究人员如何改进这些方法或创建新方法提供建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5491/10407039/8e2f01b1dcb4/gr1.jpg

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