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[1]daixuguang,sangshuxun,wangmeng,Liu Shiqi,zhengsijian,宋新贺,师轩,songyu,Guangjun Feng,全方凯.页岩CO2封存中的矿物溶蚀/沉淀特征及作用规律,2024,2024年12期:1833-1850,18
[2]Ma, Ruying,Yao, Yanbin,Zhang, Xiaona,daixuguang,Wang, Zefan,Sun, Xiaoxiao.Fluid Spontaneous Imbibition Under the Influence of Osmotic Pressure in Deep Coalbed Methane Reservoir in the Ordos Basin, China,2024,v 29,n 7,p3766-3776
[3]Ma, Ruying,Yao, Yanbin,Zhang, Xiaona,daixuguang,Wang, Zefan,Sun, Xiaoxiao.Fluid Spontaneous Imbibition Under the Influence of Osmotic Pressure in Deep Coalbed Methane Reservoir in the Ordos Basin, China,2024,v 29,n 7,p3766-3776
[4]daixuguang,Wei, Chongtao,wangmeng,Zhang, Junjian,Wang, Xiaoqi,Shi, Xuan,Vandeginste, Veerle.Understanding CO2 mineralization and associated storage space changes in illite using molecular dynamics simulation and experiments,2023,卷: 283
[5]daixuguang,Wei, Chongtao,wangmeng,Shi, Xuan,Wang, Xiaoqi,Vandeginste, Veerle.Experimental Investigation of Storage Space and Adsorption Capacity Variation of Shale under Different Reaction Times in Supercritical CO2,2023,卷: 32期: 5页: 2337-2353
[6]daixuguang,wangmeng,Feng, Guangjun,zhengsijian,Ren, Bin,Xu, Shen.Mineralogical erosion and precipitation characteristics and their effects on adsorption property of shale during scCO2-H2O-shale interaction,2023,v 48,n 7,p2813-2826
[7]daixuguang,wangmeng,Guangjun Feng,zhengsijian,任斌,徐慎.超临界CO2-水-页岩作用矿物溶蚀/沉淀特征及其对页岩吸附性的影响,2023,2023年07期:2813-2826,14
[8]daixuguang,Wei, Chongtao,wangmeng,Ma, Ruying,宋昱,Zhang, Junjian,Wang, Xiaoqi,Shi, Xuan,Vandeginste, Veerle.Interaction mechanism of supercritical CO2 with shales and a new quantitative storage capacity evaluation method,2023,卷: 264
[9]daixuguang,韦重韬,wangmeng,songyu,王笑奇,师轩,Veerle Vandeginste.Alteration of Potential Storage Space of Shale Gas Reservoirs Induced by Mineral Dissolution and Precipitation during scCO2-H2O Shale Reactions,2022
[10]daixuguang,wangmeng,韦重韬,张军建,王笑奇,邹明俊.Factors affecting shale microscopic pore structure variation during interaction with supercritical CO2,2020
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