Experimental Measurements and Molecular Simulation of Carbon Dioxide Adsorption on Carbon Surface

被引:0
|
作者
Gomaa, Ibrahim [1 ]
Guerrero, Javier [1 ]
Heidari, Zoya [1 ]
Espinoza, D. Nicolas [1 ]
机构
[1] Univ Texas Austin, Austin, TX 78712 USA
关键词
CO2; STORAGE; GAS SHALE; COMPETITIVE ADSORPTION; ACTIVATED CARBON; WATER-VAPOR; SEQUESTRATION; METHANE; MIXTURES; CAPTURE; RESERVOIRS;
D O I
暂无
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
Geological sequestration of carbon dioxide (CO2) in depleted gas reservoirs represents a cost-effective solution to mitigate global carbon emissions. The surface chemistry of the reservoir rock, pressure, temperature, and moisture content are critical factors that determine the CO2 adsorption capacity and storage mechanisms. Shale gas reservoirs are good candidates for this application. However, the interactions between CO2 and organic content still need further investigation. The objectives of this paper are to (i) experimentally evaluate the adsorption isotherm of CO2 on activated carbon, (ii) quantify the nanoscale interfacial interactions between CO2 and the activated carbon surface using Monte Carlo (MC) and molecular dynamic (MD) simulations, (iii) evaluate the modeling reliability using experimental measurements, and (iv) quantify the influence of temperature and geochemistry on the adsorption behavior of CO2 on the surface of activated carbon. These objectives aim at obtaining a better understanding of the behavior of CO2 injection and storage in the kerogen structure of shale gas formations, where activated carbon is used as a proxy for thermally mature kerogen.We performed experimental measurements, grand canonical Monte Carlo (GCMC) simulations, and MD simulations of CO2 adsorption and diffusion on activated carbon.The experimental work involved measurements of the high-pressure adsorption capacity of activated carbon using pure CO2 gas at a temperature of 300 K. The simulation work started with modeling and validating an activated carbon structure by calibrating the GCMC simulations with experimental CO2 adsorption measurements. Then, we extended the simulation work to quantify the adsorption isotherms at a temperature range of 250-500 K and various surface chemistry conditions. Moreover, CO2 self diffusion coefficients were quantified at gas pressures of 0.5 MPa, 1 MPa, and 2 MPa using MD simulations. The experimental results showed a typical CO2 excess adsorption trend for the nanoporous structures, with a density of the sorbed gas phase of 504.76 kg/m3. The simulation results were in agreement with experimental adsorption isotherms with a 10.6% average absolute relative difference. The self diffusion results showed a decrease in gas diffusion with increasing pressure due to the increase in the adsorbed gas amount. Increasing the simulation temperature from 300 K to 400 K led to a decrease in the amount of adsorbed CO2 molecules by about 87% at 2 MPa pressure. Finally, the presence of charged functional groups (e.g., hydroxyl-OH and carboxyl-COOH) led to an increase in the adsorption of CO2 gas to the activated carbon surface. The outcomes of this paper provide new insights about the parameters affecting CO2 adsorption and sequestration in depleted shale gas reservoirs. This in turn helps in screening the candidate shale gas reservoirs for carbon capture, sequestration, and storage to maximize the CO2 storage capacity.
引用
收藏
页码:1454 / 1467
页数:14
相关论文
共 50 条
  • [41] An experimental evaluation and molecular simulation of high temperature gas adsorption on nanoporous carbon
    Anderson, Clare J.
    Tao, Wendy
    Jiang, Jianwen
    Sandler, Stanley I.
    Stevens, Geoff W.
    Kentish, Sandra E.
    CARBON, 2011, 49 (01) : 117 - 125
  • [42] Adsorption of carbon dioxide in IRMOFs using molecular simulations
    Hicks, Jason
    Desgranges, Caroline
    Delhommelle, Jerome
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2013, 246
  • [43] Molecular simulation and experimental validation of resorcinol adsorption on Ordered Mesoporous Carbon (OMC)
    Ahmad, Zaki Uddin
    Chao, Bing
    Konggidinata, Mas Iwan
    Lian, Qiyu
    Zappi, Mark E.
    Gang, Daniel Dianchen
    JOURNAL OF HAZARDOUS MATERIALS, 2018, 354 : 258 - 265
  • [44] A fully consistent experimental and molecular simulation study of methane adsorption on activated carbon
    Fadi Khaddour
    Auriane Knorst-Fouran
    Frédéric Plantier
    Manuel M. Piñeiro
    Bruno Mendiboure
    Christelle Miqueu
    Adsorption, 2014, 20 : 649 - 656
  • [45] A fully consistent experimental and molecular simulation study of methane adsorption on activated carbon
    Khaddour, Fadi
    Knorst-Fouran, Auriane
    Plantier, Frederic
    Pineiro, Manuel M.
    Mendiboure, Bruno
    Miqueu, Christelle
    ADSORPTION-JOURNAL OF THE INTERNATIONAL ADSORPTION SOCIETY, 2014, 20 (04): : 649 - 656
  • [46] Molecular level investigation of methane and carbon dioxide adsorption on SiO2 surface
    Zhao, Jianfei
    Wang, Zhouhua
    Guo, Ping
    Luo, Qiang
    COMPUTATIONAL MATERIALS SCIENCE, 2019, 168 : 213 - 220
  • [47] Adsorption and dissociation reaction of carbon dioxide on Ni(111) surface: molecular orbital study
    Choe, SJ
    Kang, HJ
    Park, DH
    Huh, DS
    Park, J
    APPLIED SURFACE SCIENCE, 2001, 181 (3-4) : 265 - 276
  • [48] ADSORPTION ISOTHERMS OF NITROGEN CARBON DIOXIDE AND BUTANE ON CARBON BLACK AND A MOLECULAR FILTER
    BROUSSE, E
    LESPINAS.B
    JOURNAL DE CHIMIE PHYSIQUE ET DE PHYSICO-CHIMIE BIOLOGIQUE, 1970, 67 (10) : 1782 - &
  • [49] Surface Bespoke Mesoporous Silica for Carbon Dioxide Adsorption
    Kumar, Vivek
    Labhsetwar, Nitin
    Drage, Trevor
    Stevens, Lee
    Meshram, Siddharth
    Rayalu, Sadhana
    JOURNAL OF ENVIRONMENTAL ENGINEERING, 2014, 140 (10)
  • [50] Experimental Solubility Measurements of Fenoprofen in Supercritical Carbon Dioxide
    Zabihi, Samyar
    Rahnama, Yaghoub
    Sharafi, Amir
    Borousan, Fatemeh
    Hezave, Ali Zeinolabedini
    Shirazian, Saeed
    JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2020, 65 (04): : 1425 - 1434