Quantification of mineral accessible surface area and flow-dependent fluid-mineral reactivity at the pore scaleMa, J., Ahkami, M., Saar, M. O., and Kong, X.-Z.2021Journal Article Peer-ReviewedChemical Geology 563, pp. 120042–120042Abstract ▾DOI: 10.1016/j.chemgeo.2020.120042Cite
The Effect of Mineral Dissolution on the Effective Stress Law for Permeability in a Tight SandstoneMa, J., Querci, L., Hattendorf, B., Saar, M. O., and Kong, X.-Z.2020Journal Article Peer-ReviewedGeophysical Research Letters 47Abstract ▾DOI: 10.1029/2020gl088346Cite
Estimation of Effective Surface Area: A Study on Dolomite Cement Dissolution in SandstonesMa, J., Saar, M. O., and Kong, X.-Z.2019Journal Article Peer-ReviewedCite
Toward a Spatiotemporal Understanding of Dolomite Dissolution in Sandstone by CO₂-Enriched Brine CirculationMa, J., Querci, L., Hattendorf, B., Saar, M. O., and Kong, X.-Z.2019Journal Article Peer-ReviewedEnvironmental Science & Technology 53, pp. 12458–12466Abstract ▾DOI: 10.1021/acs.est.9b04441Cite
Effect of Mineral Dissolution/Precipitation and CO₂ Exsolution on CO₂ transport in Geological Carbon StorageXu, R. N., Li, R., Ma, J., He, D., and Jiang, P. X.2017Journal Article Peer-ReviewedAccounts of Chemical Research 50, pp. 2056–2066Abstract ▾DOI: 10.1021/acs.accounts.6b00651Cite
Two‐phase flow properties of a sandstone rock for the CO 2 /water system: Core‐flooding experiments, and focus on impacts of mineralogical changesManceau, J.-C., Ma, J., Li, R., Audigane, P., Jiang, P. X., Xu, R. N., Tremosa, J., and Lerouge, C.2015Journal Article Peer-ReviewedWater Resources Research 51, pp. 2885–2900Abstract ▾(Paper accepted: 2015-04-01)DOI: 10.1002/2014wr015725Cite
Core Scale Modelling of CO2 Flowing: Identifying Key Parameters and Experiment FittingMa, J., Petrilli, D., Manceau, J.-C., Xu, R. N., Audigane, P., Shu, L., Jiang, P. X., and Le Nindre, Y.-M.2013Journal Article Peer-ReviewedEnergy Procedia 37, pp. 5464–5472Abstract ▾DOI: 10.1016/j.egypro.2013.06.466Cite
Core-scale Experimental Study on Supercritical-Pressure CO2 Migration Mechanism during CO2 Geological Storage in Deep Saline AquifersMa, J., Xu, R. N., and Luo, S.2012Journal Article Peer-ReviewedAbstract ▾ URLCite
Estimation of Effective Surface Area: A Study on Dolomite Cement Dissolution in SandstonesMa, J., Saar, M. O., and Kong, X.-Z.2020PresentationTalk (Contributed) at GEG Group Seminar, ETH ZurichCite
An image- and BET-based Monte-Carlo approach to determine mineral accessible surface areas in sandstonesMa, J., Saar, M. O., and Kong, X.-Z.2019PreprintPreprint on EarthArXiv (10.31223/osf.io/dhygb)Abstract ▾(Paper accepted: 2019-09-21)DOI: 10.31223/osf.io/dhygbCite
Researches on the Migration of Supercritical CO2 on Geological Storage ConditionsMa, J.2013PhD Thesis Peer-ReviewedPhD Thesis, Wuhan Institute of Rock and Soil MechanicsAbstract ▾ URLCite
Evolution of fracture permeability induced by THMC-coupled processesKong, X.-Z., Grimm Lima, M., Wang, X., and Ma, J.2021OtherCite
Carbonate dissolution in tight sandstones and flow-through drying in fractured granites: The role of stressKong, X.-Z., Ma, J., Grimm Lima, M., and Saar, M. O.2020OtherCite
Coupled Geochemical-Mechanical Evolution during Injection of CO2-charged Brine into SandstonesKong, X.-Z., Ma, J., and Saar, M. O.2019OtherCite
Experimentally exploring permeability evolution induced by THMC-coupled processesKong, X.-Z., Ma, J., Grimm Lima, M., and Saar, M. O.2019OtherCite
Dissolution of dolomite cement in sandstones subjected to CO2-enriched brineMa, J., Querci, L., Hattendorf, B., Saar, M. O., and Kong, X.-Z.2018OtherCite
Dolomite dissolution in natural sandstone during flow-through experiments with CO2-rich brineMa, J., Querci, L., Hattendorf, B., Saar, M. O., and Kong, X.-Z.2018OtherCite
Alteration of hydrogeochemical properties during reactive flow-through experiments on sandstone specimen using CO2-charged brineKong, X.-Z., Ma, J., and Saar, M. O.2017OtherCite
Core-scale reactive transport modelling of injection of CO2-charged brine into natural sandstoneMa, J., Kong, X.-Z., and Saar, M. O.2017OtherCite
Evolution of hydrogeochemical properties during reactive flow-through experiments using CO2-bearing solutionKong, X.-Z., Ma, J., and Saar, M. O.2017OtherCite
How much can we interpret mineral surface area with distribution of mineral and pores?Kong, X.-Z., Ma, J., Webster, D., and Saar, M. O.2017OtherCite
How much can we interpret mineral surface area with distributions of minerals and pores ?Kong, X.-Z., Ma, J., Webster, D., and Saar, M. O.2017OtherCite
Linking mineral reactive surface area with its distribution and pore geometryMa, J., Webster, D., Kong, X.-Z., and Saar, M. O.2017OtherCite