Dong-Liang Zhong
Dong-Liang Zhong
Professor, School of Resources and Safety Engineering, Chongqing University, Chongqing, China
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Methane Separation from Coal Mine Methane Gas by Tetra-n-butyl Ammonium Bromide Semiclathrate Hydrate Formation
D Zhong, P Englezos
Energy & fuels 26 (4), 2098-2106, 2012
Recovery of CH4 from coal mine model gas mixture (CH4/N2) by hydrate crystallization in the presence of cyclopentane
DL Zhong, N Daraboina, P Englezos
Fuel 106, 425-430, 2013
Evaluation of CO2 removal from a CO2 + CH4 gas mixture using gas hydrate formation in liquid water and THF solutions
DL Zhong, Z Li, YY Lu, JL Wang, Y Jin
Applied Energy 158, 133-141, 2015
Performance evaluation of methane separation from coal mine gas by gas hydrate formation in a stirred reactor and in a fixed bed of silica sand
DL Zhong, YY Lu, DJ Sun, WL Zhao, Z Li
Fuel 143, 586-594, 2015
Experimental Investigation of Methane Separation from Low-Concentration Coal Mine Gas (CH4/N2/O2) by Tetra-n-butyl Ammonium Bromide Semiclathrate …
D Zhong, Y Ye, C Yang, Y Bian, K Ding
Industrial & engineering chemistry research 51 (45), 14806-14813, 2012
Investigation of using graphite nanofluids to promote methane hydrate formation: Application to solidified natural gas storage
YY Lu, BB Ge, DL Zhong
Energy 199, 117424, 2020
Methane recovery from coal mine gas using hydrate formation in water-in-oil emulsions
DL Zhong, K Ding, YY Lu, J Yan, WL Zhao
Applied Energy 162, 1619-1626, 2016
Precombustion CO2 Capture Using a Hybrid Process of Adsorption and Gas Hydrate Formation
DL Zhong, JL Wang, YY Lu, Z Li, J Yan
Energy 102, 621-629, 2016
Coal mine methane gas recovery by hydrate formation in a fixed bed of silica sand particles
DL Zhong, N Daraboina, P Englezos
Energy & fuels 27 (8), 4581-4588, 2013
Equilibrium Conditions for Semiclathrate Hydrates Formed in the CH4 + N2 + O2 + Tetra-n-butyl Ammonium Bromide Systems
DL Zhong, Y Ye, C Yang
Journal of Chemical & Engineering Data 56 (6), 2899-2903, 2011
Influence of cyclopentane and SDS on methane separation from coal mine gas by hydrate crystallization
DL Zhong, K Ding, J Yan, C Yang, DJ Sun
Energy & fuels 27 (12), 7252-7258, 2013
Investigation on methane recovery from low-concentration coal mine gas by tetra-n-butyl ammonium chloride semiclathrate hydrate formation
DL Zhong, WC Wang, ZL Zou, YY Lu, J Yan, K Ding
Applied Energy 227, 686-693, 2018
Preferential enclathration of CO2 into tetra-n-butyl phosphonium bromide semiclathrate hydrate in moderate operating conditions: Application for CO2 capture from shale gas
Z Li, DL Zhong, YY Lu, J Yan, ZL Zou
Applied energy 199, 370-381, 2017
Phase Equilibrium Data of Gas Hydrates Formed from a CO2 + CH4 Gas Mixture in the Presence of Tetrahydrofuran
DL Zhong, Z Li, YY Lu, DJ Sun
Journal of Chemical & Engineering Data 59 (12), 4110-4117, 2014
Impacts of the surfactant sulfonated lignin on hydrate based CO2 capture from a CO2/CH4 gas mixture
J Yi, DL Zhong, J Yan, YY Lu
Energy 171, 61-68, 2019
Phase equilibria and dissociation enthalpies for tetra-n-butylammonium chloride semiclathrate hydrates formed with CO2, CH4, and CO2+ CH4
SL Qing, DL Zhong, DT Yi, YY Lu, Z Li
The Journal of Chemical Thermodynamics 117, 54-59, 2018
Adsorption–Hydrate Hybrid Process for Methane Separation from a CH4/N2/O2 Gas Mixture Using Pulverized Coal Particles
DL Zhong, DJ Sun, YY Lu, J Yan, JL Wang
Industrial & Engineering Chemistry Research 53 (40), 15738-15746, 2014
Enhanced methane recovery from low-concentration coalbed methane by gas hydrate formation in graphite nanofluids
J Yan, YY Lu, DL Zhong, ZL Zou, JB Li
Energy 180, 728-736, 2019
Enhanced Separation of Carbon Dioxide from a CO2 + CH4 Gas Mixture Using a Hybrid Adsorption-Hydrate Formation Process in the Presence of Coal Particles
Z Li, DL Zhong, YY Lu, JL Wang, SL Qing, J Yan
Journal of Natural Gas Science and Engineering, 2016
Investigation of CO2 Capture from a CO2 + CH4 Gas Mixture by Gas Hydrate Formation in the Fixed Bed of a Molecular Sieve
DL Zhong, Z Li, YY Lu, JL Wang, J Yan, SL Qing
Industrial & Engineering Chemistry Research, 2016
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