论著、论文、专利等情况
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论著
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工科类专业本科教学创新研究. 化学工业出版社,路朝阳,2024。
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连续流暗光生物制氢过程强化理论与技术. 化学工业出版社,路朝阳,2023。
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Photo-Fermentation Biohydrogen Production: Advances in Theory and Experiments. Eliva Press, Chaoyang Lu, Huan Zhang, and Zhiping Zhang. 2022。
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Waste to Renewable Biohydrogen. Elsevier Press, 章节主编,2021。
论文
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Cascade biorefining of tobacco waste: co-production of aroma extracts, photo-fermentation biohydrogen, and biogas. Journal of Cleaner Production, 2026, 538: 147406. (第一作者, IF 10.0, JCR:1区)
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Enhanced energy conversion efficiency through photo-fermentation biohydrogen and biomethane co-production. International Journal of Hydrogen Energy, 2025, 151: 150221. (通讯作者, IF 8.3, JCR:2区)
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Correlation between ethanol addition and photo-fermentative biohydrogen production of Arundo donax L. with a consortium. Renewable Energy, 2025, 248:123077. (通讯作者, IF 9.0, JCR:1区)
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Enhanced the energy conversion of corn stalk via co-production of photo-fermentation biohydrogen and bioethanol. Bioresource Technology. 2024, 408: 131196. (通讯作者, IF 9.7, JCR:1区)
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Strategies for the Biotransformation of Tung Leaves in Bioethanol Fermentation. Fermentation. 2023, 9(11), 986. (通讯作者, IF 3.7, JCR:2区)
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Comparison of biorefinery characteristics: Photo-fermentation biohydrogen, dark fermentation biohydrogen, biomethane, and bioethanol production. Applied Energy. 2023; 347:121463. (第一作者, IF 10.1, JCR:1区)
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Enhancing photo-fermentation biohydrogen production from corn stalk by iron ion. Bioresource Technology. 2022; 345: 126457. (第一作者, IF 11.4, JCR:1区)
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Enhancing photo-fermentation biohydrogen production by strengthening the beneficial metabolic products with catalysts, Journal of Cleaner Production, 2021; 317: 128437. (第一作者, IF 11.1, JCR:1区)
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Enhanced buffer capacity of fermentation broth and biohydrogen production from corn stalk with Na2HPO4/NaH2PO4, Bioresource Technology, 2020; 313: 123783. (第一作者, IF 9.6, JCR:1区)
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Biohydrogen production through active saccharification and photo-fermentation from alfalfa. Bioresource Technology, 2020; 304:123007. (第一作者, IF 9.6, JCR:1区)
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Biohydrogen production in pilot-scale fermenter: Effects of hydraulic retention time and substrate concentration. Journal of Cleaner Production. 2019, 229: 751-760. (第一作者, IF 7.2, JCR:1区)
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Effect of substrate concentration on hydrogen production by photo-fermentation in the pilot-scale baffled bioreactor. Bioresource Technology, 2018. 247, 1173-1176. (第一作者, IF 6.7, JCR:1区)
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An automated control system for pilot-scale biohydrogen production: Design, operation and validation. International Journal of Hydrogen Energy. 2020;45:3795-806. (第一作者, IF 5.8, JCR:2区)
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Bio-hydrogen production from apple waste by photosynthetic bacteria HAU-M1. International Journal of Hydrogen Energy, 2016. 41(31), 13399-13407. (第一作者, IF 3.5, JCR:2区)
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Optimization of biohydrogen production from cornstalk through surface response methodology. Journal of Biobased Materials and Bioenergy. 2019, 13: 830-839. (第一作者, IF 1.1, JCR:4区)
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Biological fermentation pilot-scale systems and evaluation for commercial viability towards sustainable biohydrogen production. Nature Communications, 2024 (15):4539. (参与, IF 15.7, JCR:1区)
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Fe2+浓度对玉米芯光合生物制氢的影响 [J]. 热科学与技术, 2024, 23 (06): 527-532. (第一作者, 核心)
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酸碱度对玉米秸秆酶解液光合生物产氢动力学的影响[J].安全与环境学报,2016(03):262-266.(第一作者, 核心)
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基于BBD模型的玉米秸秆光合生物制氢优化实验研究[J].太阳能学报,2014(08):1511-1516.(第一作者, EI)
专利
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Method for biohydrogen production. US 11530426 B2(第一发明人,美国发明专利)
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一种非正常死亡猪肉光合生物制氢的方法. ZL 2021 1 1048080.4(第一发明人,国家发明专利)
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一种利用紫花苜蓿进行HAU-M1光合细菌同步糖化发酵制氢的方法. ZL 202010062991.1(第一发明人,国家发明专利)
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一种提高HAU-M1光合菌群利用玉米秸秆发酵产氢的方法. ZL 202010064821.7(第一发明人,国家发明专利)
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