吸附
固碳
热力学
石油工程
环境科学
化学
环境化学
二氧化碳
地质学
物理
物理化学
有机化学
作者
Xidong Du,Haitao Wang,Jinpan Zhong,Guangjin Wang,Dengfeng Zhang,Zhenjian Liu,Kaibo Huang,Zhiliu Wang
标识
DOI:10.1080/16583655.2023.2226490
摘要
In this study, the adsorption experiments of water vapour on deep reservoir were conducted. The thermodynamics for water vapour adsorption were analysed. Results illustrate that primary binding centres have stronger affinity than secondary binding centres. Water molecule will be preferentially trapped at primary binding centres in low-pressure region. In high-pressure region, secondary adsorption predominates. Primary adsorption spontaneity increases with pressure. At secondary binding centres and total binding centres, the spontaneity degree quickly improves and then slowly decreases as pressure increases. The transfer of water molecules from the more energetic binding centres to the less binding centres leads to the initial reduction in entropy loss (ΔS) and isosteric heat of adsorption (Qst). The late enhancement in ΔS and Qst is caused by the growing water clusters. Water vapour adsorption can promote CH4 desorption. By occupying adsorption sites and reducing pore connectivity, water vapour adsorption causes an unfavourable effect on CO2 sequestration.
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