论文: 1. Correlation between ethanol addition and photo-fermentative biohydrogen production of Arundo donax L. with a consortium. Renewable Energy,2025,248:123077.第一作者. 2. 磁性颗粒尺寸对加磁光发酵生物制氢的影响.河南农业大学学报,2025.通讯作者. 3. Enhanced the energy conversion of corn stalk via co-production of photo-fermentation biohydrogen and bioethanol. Bioresource Technology,2024,408,131196.共同通讯作者. 4. Biological conversion of methane to methanol at high H2S concentrations with an H2S-tolerant methanotrophic consortium. Renewable Energy, 2023, 204:475–484.第一作者. 5. Pretreatment of Arundo donax L. for photo-fermentative biohydrogen production by ultrasonication and ionic liquid.BioresourceTechnology,2023,377:128904. 通讯作者. 6. 1-Butyl-3-methylimidazolium acetate pretreatment of giant reed triggering yield improvement of biohydrogen production via photo-fermentation.BioresourceTechnology, 2022,364:128068.通讯作者. 7. Towards high light conversion efficiency from photo-fermentative hydrogen production ofArundo donaxL. By light–dark duration alternation strategy.BioresourceTechnology, 2022, 344:126302.第一作者. 8. A strategy for successive feedstock reuse to maximize photo-fermentative hydrogen production ofArundo donaxL. Bioresource Technology,2021,321:124467.第一作者. 9. Insights into correlation between hydrogen yield improvement and glycerol addition in photo-fermentation ofArundo donaxL. Bioresource Technology,2021,321:124467. 第一作者. 10. Enhanced CH4Production from Corn Stover by Simultaneous Lime Treatment. Journal of Biobased Materials and Bioenergy.2021,15,323–333.第一作者. 11. Effect of alkaline pretreatment on photo-fermentative hydrogen production from giant reed: Comparison of NaOH and Ca(OH)2.Bioresource Technology,2020,304: 123001.第一作者. 12. Continuous photo-fermentative hydrogen production in a tubular photobioreactor using corn stalk pith hydrolysate with a consortium. International Journal of hydrogen energy, 2020,45:3776-3784. 第一作者. 13. Comparison of sodium hydroxide and calcium hydroxide pretreatments of giant reed for enhanced enzymatic digestibility and methane production. Bioresource Technology,2017,244:1150-1157.第一作者. 14. Comparison of liquid hot water and alkaline pretreatments of giant reed for improved enzymatic digestibility and biogas energy production. Bioresource Technology,2016, 216: 60-68.第一作者. 15. Photo-fermentative hydrogen production from enzymatic hydrolysate of corn stalk pith with a photosynthetic consortium.International Journal of hydrogen energy,2016,38:16778-16785. 第一作者. 论著: 1. 《农林生物质废弃物生态利用研究与展望》.科学出版社, 2024,副主编; 2. 《沼气技术及其应用》.化学工业出版社,2024,参编; 3. 《Waste to Renewable Biohydrogen》. Elsevier出版社, 2021, 参编; 4. 《Photo-Fermentation Biohydrogen Production: Advances in Theory and Experiments》. Eliva Press出版社, 2022,参编; 5. 《Biomass, Biofuels, Biochemicals. Circular Bioeconomy: Technologies for Biofuels and Biochemicals》. Elsevier出版社, 2022, 参编。 |