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[1] Jiajie Li and Michael Hitch. Carbon dioxide sorption isotherm study on pristine and acid-treated olivine and its application in the vacuum swing adsorption process. Minerals. 2015, 5(2): 259-275. (影响因子: 1.835).
[2] Jiajie Li and Michael Hitch. Ultra-fine grinding and mechanical activation of mine waste using high-speed stirred mill for mineral carbonation. International Journal of Minerals, Metallurgy, and Material. 2015, 22(10): 1005-1016. (影响因子: 1.261).
[3] Jiajie Li and Michael Hitch. Characterization of the microstructure of mechanically-activated olivine using X-ray diffraction pattern analysis, Minerals Engineering. 2016, 86: 24-33. (影响因子: 2.707).
[4] Jiajie Li and Michael Hitch. Carbon dioxide adsorption isotherm study on mine waste for integrated CO2 capture and sequestration processes, Powder Technology. 2016, 291: 408-413. (影响因子: 3.230).
[5] Jiajie Li and Michael Hitch. Mechanical activation of ultramafic mine waste rock in dry condition for enhanced mineral carbonation, Minerals Engineering. 2016, 95: 1-4. (影响因子: 2.707).
[6] Jiajie Li and Michael Hitch. Ultra-fine grinding and mechanical activation of mine waste rock using a planetary mill for mineral carbonation. International Journal of Mineral Processing. 2017, 158: 18-26 (影响因子:2.255).
[7] Jiajie Li and Michael Hitch. Structural and chemical changes in mine waste mechanically-activated in various milling environments, Powder Technology. 2017, 308: 11-19 (影响因子: 3.230).
[8] Jiajie Li and Michael Hitch. Economic analysis on the application of mechanical activation in an integrated mineral carbonation processes, International Biodeterioration and Biodegradation. 2018, 128: 63-71. (影响因子: 3.562).
[9] Jiajie Li, Michael Hitch, Ian M. Power, Yueyi Pan. Integrated Mineral Carbonation of Ultramafic Mine Deposits – A Review. Minerals. 2018, 8(4), 147. (影响因子: 1.835).
[10] Jiajie Li, Michael Hitch. Mechanical activation of magnesium silicates for mineral carbonation, a review. Minerals Engineering. 2018, 128, 69-83. (影响因子: 2.707).
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