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发布时间:2022-07-05

近三年部分论文

[1]     Wei Junxiao, Li Huan*, Liu Jianguo*. Curbing dioxin emissions from municipal solid waste incineration: China's action and global share. Journal of Hazardous Materials, 2022, 435, 129076.

[2]     Yang Luxin, Chen Liang, Li Huan*, Deng Zhou, Liu Jianguo. Lactic acid production from mesophilic and thermophilic fermentation of food waste at different pH. Journal of Environmental Management, 2022, 304, 114312.

[3]     Cai Jiabai, Li Huan*, Jing Qi. Copper atoms inlaid in titanium-zirconium oxide spherical shell confine free radicals for the robust Fenton-like treatment of complex biogas slurry. Applied catalysis B: environmental, 2021, 298, 120555.

[4]     Zhang Yangyang, Li Huan*, Li Debin. Maximize methane recovery from sludge anaerobic digestion by combining an optimal wet air oxidation process. Renewable Energy, 2021, 179, 359-369.

[5]     Wang Qiao, Yang Luxin, Feng Kai, Li Huan*, Deng Zhou, Liu Jianguo. Promote lactic acid production from food waste fermentation using biogas slurry recirculation. Bioresource Technology, 2021, 337, 125393.

[6]     Feng Kai, Wang Qiao, Li Huan*, Du Xinrui, Zhang Yangyang. Microbial mechanism of enhancing methane production from anaerobic digestion of food waste via phase separation and pH control. Journal of Environmental Management, 2021, 288, 112460.

[7]     Cai Jiabai, Li Huan*, Jing Qi, Li Debin, Zhang Yangyang. Embedding ruthenium nanoparticles in the shell layer of titanium zirconium oxide hollow spheres to catalyze the oxidation of lignin under mild condition. Journal of Hazardous Materials, 2021, 411(5), 125161.

[8]     Yu Qianqian, Li Huan*. Moderate separation of household kitchen waste towards global optimization of municipal solid waste management. Journal of Cleaner Production, 2020, 277, 123330.

[9]     Wang Qiao, Feng Kai, Li Huan*. Nano iron materials enhance food waste fermentation. Bioresource Technology, 2020, 315, 123804.

[10]Feng Kai, Li Huan*, Wang Qiao, Zhang Yangyang, Zheng Chengzhi. Effect of pre-fermentation types on the potential of methane production and energy recovery from food waste. Renewable Energy, 2020, 146, 1588-1595.


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