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Experimental investigation on water adsorption and desorption isotherms of the Longmaxi shale in the Sichuan Basin, China
Ma XH1; Shen WJ(沈伟军)2,3,4; Li XZ1; Hu Y1; Liu XH1; Lu XB(鲁晓兵)2
Source PublicationScientific Reports
2020-08
Volume10Issue:1Pages:13434
Abstract

the understanding of water adsorption and desorption behavior in the shale rocks is of great significance in the reserve estimation, wellbore stability and hydrocarbon extraction in the shale gas reservoirs. However, the water sorption behavior in the shales remains unclear. In this study, water vapor adsorption/desorption isotherms of the Longmaxi shale in the Sichuan Basin, china were conducted at various temperatures (30 °C, 60 °C) and a relative pressure up to 0.97 to understand the water sorption behavior. Then the effects of temperature and shale properties were analyzed, and the water adsorption, hysteresis, saturation and capillary pressure were discussed. The results indicate that water adsorption isotherms of the Longmaxi shale exhibit the type II characteristics. The water molecules initially adsorb on the shale particle/pore surfaces at low relative pressure while the capillary condensation dominates at high relative pressure. Temperature favors the water sorption in the shales at high relative pressure, and the GAB isotherm model is found to be suitable for describe the water adsorption/desorption behavior. The high organic carbon and full bedding are beneficial to water adsorption in the shales while the calcite inhibits the behavior. There exists the hysteresis between water adsorption and desorption at the whole relative pressure, which suggests that the depletion of condensed water from smaller capillary pores is more difficult than that from larger pores, and the chemical interaction contributes to the hysteresis loop for water sorption. The capillary pressure in the shales can be up to the order of several hundreds of Mpa, and thus the desorption of water from the shales may not be as easy as the water adsorption due to the high capillary pressure, which results in water retention behavior in the shale gas reservoirs. these results can provide insights into a better understanding of water sorption behavior in the shale so as to optimize extraction conditions and predict gas productivity in the shale gas reservoirs.

DOI10.1038/s41598-020-70222-8
Indexed BySCI
Language英语
WOS IDWOS:000561123700010
DepartmentLMFS海洋土力学(LHO)
Classification二类/Q1
Ranking1
Contributorli xz, shen wj
Citation statistics
Cited Times:34[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/84718
Collection流固耦合系统力学重点实验室
Corresponding AuthorShen WJ(沈伟军); Li XZ
Affiliation1.Research Institute of Petroleum Exploration & Development, PetroChina, Beijing 10083, China.
2.Key Laboratory for Mechanics in Fluid Solid Coupling Systems, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China
3.School of Engineering Science, University of Chinese Academy of Sciences, Beijing 100049, China
4.State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China
Recommended Citation
GB/T 7714
Ma XH,Shen WJ,Li XZ,et al. Experimental investigation on water adsorption and desorption isotherms of the Longmaxi shale in the Sichuan Basin, China[J]. Scientific Reports,2020,10,1,:13434.Rp_Au:li xz, shen wj
APA Ma XH,Shen WJ,Li XZ,Hu Y,Liu XH,&Lu XB.(2020).Experimental investigation on water adsorption and desorption isotherms of the Longmaxi shale in the Sichuan Basin, China.Scientific Reports,10(1),13434.
MLA Ma XH,et al."Experimental investigation on water adsorption and desorption isotherms of the Longmaxi shale in the Sichuan Basin, China".Scientific Reports 10.1(2020):13434.
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