Changes of the Multiscale Pore Structure and Connectivity of Organic-Rich Shale during Hydrous Pyrolysis under Different Temperatures and Pressures

被引:0
|
作者
Meng, Fanyi [1 ,2 ]
Yao, Chuanjin [1 ,2 ,3 ]
Yang, Huichao [1 ,2 ]
Di, Tianyuan [1 ,2 ]
Du, Xinge [1 ,2 ]
Li, Lei [1 ,2 ]
机构
[1] China Univ Petr East China, State Key Lab Deep Oil & Gas, Qingdao 266580, Peoples R China
[2] China Univ Petr East China, Sch Petr Engn, Qingdao 266580, Peoples R China
[3] China Univ Petr East China, Shandong Prov Key Lab Oilfield Chem, Qingdao 266580, Peoples R China
基金
中国国家自然科学基金;
关键词
NORTHEASTERN BRITISH-COLUMBIA; OIL-SHALE; GEOLOGICAL CONTROLS; GAS SHALES; PERMEABILITY; MATURATION; EVOLUTION; POROSITY; RIVER;
D O I
10.1021/acs.energyfuels.4c02778
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Medium-low maturity shale reservoirs are rich in resources and have significant oil production potential, attracting widespread attention. The pore structure and connectivity of organic-rich shale were examined at different temperatures and pressures. In conjunction with mercury intrusion porosimetry and low-temperature N-2 and CO2 adsorption experiments, organic-rich shale multiscale pore structure alterations were examined. Nuclear magnetic resonance (NMR) investigations were used to assess the pore connectivity. Additionally, the primary mechanisms affecting the pore structure and connectivity in shale subjected to supercritical water were thoroughly explored. The findings revealed that the pore volume reaches 0.52711 cm(3)/g under supercritical water at 425 degrees C, which is 2.7 times larger than that of the original shale. Mesopores, transition pores, and micropores are generally more developed in supercritical water environments than in an aqueous medium at a pressure of 15 MPa, enhancing shale connectivity and permeability. Research findings indicate that the pyrolysis of shale organic matter is the key mechanism for pore structure alterations and improved connectivity.
引用
收藏
页码:17554 / 17570
页数:17
相关论文
共 50 条
  • [21] Effects of dissolved organic matter on shale pore structure of low-mature lacustrine facies organic-rich shale
    He, Shun
    Li, Hu
    Qin, Qirong
    Long, Shengxiang
    ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2021,
  • [22] Mineralogical changes in organic-rich Posidonia Shale during natural and experimental maturation
    Schlosser, J.
    Grathoff, G. H.
    Ostertag-Henning, C.
    Kaufhold, S.
    Warr, L. N.
    INTERNATIONAL JOURNAL OF COAL GEOLOGY, 2016, 157 : 74 - 83
  • [23] Experimental Investigation on Composition and Pore Structure Evolution of Organic-Rich Shale via Supercritical Water
    Meng, Fanyi
    Yao, Chuanjin
    Du, Xinge
    Di, Tianyuan
    Zhang, Hexing
    Ge, Jiao
    ENERGY & FUELS, 2023, 37 (20) : 15671 - 15686
  • [24] Effect of Formation Pressure on Pore Structure Evolution and Hydrocarbon Expulsion in Organic-Rich Marine Shale
    Fang, Xianglong
    Cai, Yidong
    Hu, Qinhong
    Gao, Ping
    Liu, Dameng
    Qian, Yujing
    PROCESSES, 2023, 11 (04)
  • [25] Alterations of Carbonate Mineral Matrix and Kerogen Micro-Structure in Domanik Organic-Rich Shale during Anhydrous Pyrolysis
    Karamov, Tagir
    White, Viktoria
    Idrisova, Elizaveta
    Kozlova, Elena
    Burukhin, Alexander
    Morkovkin, Andrey
    Spasennykh, Mikhail
    MINERALS, 2022, 12 (07)
  • [26] Nanoscale Pore Network Evolution of Xiamaling Marine Shale during Organic Matter Maturation by Hydrous Pyrolysis
    Wang, Yang
    Liu, Luofu
    Hu, Qinhong
    Hao, Lewei
    Wang, Ximeng
    Sheng, Yue
    ENERGY & FUELS, 2020, 34 (02) : 1548 - 1563
  • [27] Experimental investigation and intelligent modeling of pore structure changes in type III kerogen-rich shale artificially matured by hydrous and anhydrous pyrolysis
    Liu, Bo
    Mohammadi, Mohammad-Reza
    Ma, Zhongliang
    Bai, Longhui
    Wang, Liu
    Wen, Zhigang
    Liu, Yan
    Hemmati-Sarapardeh, Abdolhossein
    Ostadhassan, Mehdi
    ENERGY, 2023, 282
  • [28] Evolution of nanopore structure in lacustrine organic-rich shales during thermal maturation from hydrous pyrolysis, Minhe Basin, Northwest China
    Yang, Shuang
    Chen, Guojun
    Lv, Chengfu
    Li, Chao
    Yin, Na
    Yang, Fei
    Xue, Lianhua
    ENERGY EXPLORATION & EXPLOITATION, 2018, 36 (02) : 265 - 281
  • [29] Pore Structure Alteration of Organic-Rich Shale with Sc-CO2 Exposure: the Bakken Formation
    Ozotta, Ogochukwu
    Liu, Kouqi
    Gentzis, Thomas
    Carvajal-Ortiz, Humberto
    Liu, Bo
    Rafieepour, Saeed
    Ostadhassan, Mehdi
    ENERGY & FUELS, 2021, 35 (06) : 5074 - 5089
  • [30] Effect of organic matter on pore structure of mature lacustrine organic-rich shale: A case study of the Triassic Yanchang shale, Ordos Basin, China
    Li, Jing
    Zhou, Shixin
    Li, Yuanju
    Ma, Yu
    Yang, Yanan
    Li, Chengcheng
    FUEL, 2016, 185 : 421 - 431