Journal of Petroleum Science & Engineering2022,Vol.208PB14.DOI:10.1016/j.petrol.2021.109466

Adsorption of gases on heterogeneous shale surfaces: A review

Kawthar Adewumi Babatunde Berihun Mamo Ne gash Shiferaw Regassa Jufar
Journal of Petroleum Science & Engineering2022,Vol.208PB14.DOI:10.1016/j.petrol.2021.109466

Adsorption of gases on heterogeneous shale surfaces: A review

Kawthar Adewumi Babatunde 1Berihun Mamo Ne gash 1Shiferaw Regassa Jufar1
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作者信息

  • 1. Petroleum Engineering Department, Universiti Teknologi PETRONAS, 32610, Bandar Seri Iskandar, Perak Darul Ridzuan, Malaysia
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Abstract

Many studies tied to adsorption on heterogeneous surfaces have been reported in the literature. However, finding an adsorption model that accurately describes the sorption mechanism in gas shales remains a challenge. This is due to the complex surface heterogeneity and the presence of multiple components in the formation. Modelling and simulation at reservoir conditions for adsorption studies are also computationally expensive. An optimized adsorption model is therefore essential because it can lead to an accurate estimation of the adsorbed gas amount and ultimately improve the production process. This work presents a review of the adsorption models that have been used in characterizing shale formation. Moreover, the mechanisms and factors that control adsorption in shale formation and their interaction are also analyzed. As observed from the current review, Langmuir is the most used adsorption model. However, like other existing models, it does not adequately represent the sorption phenomenon in shale formation where surface heterogeneity and the presence of multi-component are eminent. There has thus been works to improve and enhance it for use in shale formation. On the other hand, the advancement of molecular simulation presents an opportunity for better representation of the sorption mechanism.

Key words

Adsorption/Heterogenous surface/Multi-component adsorption/Gas shale

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出版年

2022
Journal of Petroleum Science & Engineering

Journal of Petroleum Science & Engineering

ISSN:0920-4105
被引量10
参考文献量114
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