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103. Improved methane removal in exhaust gas from biogas upgrading process using immobilized methane-oxidizing bacteria. Bioresource Technology,256(2018)201-207"影响因子:9.642
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102.Energy-efficient storage of methane in the formed hydrates with metal nanoparticles-grafted carbon nanotubes as promoter. Applied Energy, 2018 (224): 175–183.影响因子:9.746
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101. Energy-efficient storage of methane in the formed hydrates with metal nanoparticles-grafted carbon nanotubes as promoter. Applied Energy, 2018 (224): 175–183.影响因子:9.746
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101.Rapid methane hydrate formation promoted by Ag&SDS-coated nanospheres for energy storage. Applied Energy, 2018 (213): 227–234.影响因子:9.746
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100.Calculation on the phase equilibrium and critical temperature of CH4/CO2. Process Safety and Environmental Protection 113(2018) 369–377.影响因子:6.158
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99.Accelerated ciprofloxacin biodegradation in the presence of magnetite nanoparticles. CHEMOSPHERE,2017,188:168-173.影响因子:7.086
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98.Rapid degradation of 2,4-dichlorophenoxyacetic acid facilitated by acetate under methanogenic condition. BIORESOURCE TECHNOLOGY,2017, 232:146-151.影响因子:9.642
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97.Grafting of nano-Ag particles on –SO3 -coated nanopolymers for promoting methane hydrate formation. Journal of Materials Chemistry A,2017, 5, 18486–18493" 影响因子:12.732
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96.Amphiphilic-Polymer-Coated Carbon Nanotubes as Promoters for Methane Hydrate Formation. ACS Sustainable Chemistry & Engineering. 2017, 5, 9271−9278.影响因子:8.198
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95.Controllable methane hydrate formation through trace carbon dioxide charging. Fuel 203 (2017) 145–151"影响因子:6.609