潘世优助理教授,博士
E-mail: panshiyou@gxu.edu.cn
个人简介:
潘世优,1991年生,中共党员。2010.09–2014.06本科就读于伟德国际1946生物工程专业;2014.09–2017.06硕士就读于伟德国际1946发酵工程专业(导师黄日波教授);2017.09–2020.06博士就读于伟德国际1946微生物学专业(导师韦宇拓教授);2020.08–2023.03期间到江苏大学食品与生物工程公司开展博士后工作(合作导师齐向辉教授);2023年3月入职伟德国际1946。
教学和科研成果:
聚焦厌氧复杂生境中有机碳转化的微生物驱动机制,围绕“底物—微生物—电子流”主线,系统揭示了底物生物可及性调控、直接种间电子传递(DIET)机制,以及胞外电子传递分子调控规律。相关成果在Bioresour. Technol.、Energy、Fuel等期刊发表论文20篇,其中以第一/通讯作者发表SCI论文13篇(含一区5篇);受邀撰写英文专著核心章节1篇。主持广西自然科学基金青年项目、中国博士后科学基金面上项目、第一批广西青苗计划等课题。现任《广西科公司报》编委、《Energy and Environment Nexus》青年编委及广西微生物学会会员,承担《微生物学》《分子生物学》《合成生物学》等课程教学。近5年指导国家级、自治区级老员工创新训练项目共3项。
主持承担的主要科研项目:
主持广西自然科学基金青年项目、广西青苗计划项目、伟德国际1946科研启动项目和中国博士后科学基金等。
研究方向:
电活性微生物学与能源环境生物技术
代表性论文:
[1]Pan S.,Lin J, Li Z, Wei Y.*. Life cycle assessment (LCA) of biofuel production from lignocellulosic biomass [M].//Recent trends in lignocellulosic biofuels and bioenergy: Advancements and sustainability assessment.Singapore: Springer Nature Singapore,2025: 23–63.
[2] Zhou L, Lu B, Mo L, Du L.,Pan S.*, Wei Y.*. Ethanol-coupled bioelectrochemical anaerobic digestion system promotes electron mutualistic of electroactive bacteria to enhance propionate degradation and methanogenesis.Fuel,2024, 373, 132387. (二区top, IF7.5).
[3]Pan S., Guo F., Li X., Feng L., Li Z., Du L., Wei Y.*. Briquetting as a source pretreatment strategy to improve energy recovery from the anaerobic digestion of agricultural straw: Experimental and economic evaluation,Energy,2024, 294, 130918. (一区, IF 9.4).
[4]Pan S., Zabed HM., Zhao M., Qi X.*, Wei Y.*. Techno-economic and life cycle assessments for bioenergy recovery from acid-hydrolyzed residues of sugarcane bagasse in the biobased xylose production platform.J. Clean. Prod.,2023,400, 136718.(一区, IF10.0).
[5]Pan S.,Wang G., Sun C., Li Q., Qi X., Wei Y.*.A novel maltooligosaccharide-formingα-amylase fromBacillus cereusand its application in the preparation of maltopentaose product.Process Biochem.,2023, 128: 68–75. (三区, IF 4.0).
[6]Pan S., Zabed HM., Li Z., Qi X.*, Wei Y. Enrichment and balancing of nutrients for improved methane production using three compositionally different agro-livestock wastes: Process performance and microbial community analysis.Bioresour. Technol.,2022, 357, 127360. (一区, IF 9.0)
[7]Pan S., Zabed HM., Wei Y.*, Qi X.*. Technoeconomic and environmental perspectives of biofuel production from sugarcane bagasse: Current status, challenges and future outlook.Ind. Crop. Prod.,2022, 188, 115684. (一区, IF 6.2).
[8]Pan S.#,Liu Q.#, Wen C., Li Z., Du L., Wei Y.*. Producing biogas from rice straw: Kinetic analysis and microbial community dynamics.BioEnergy Res.,2021, 14, 1338–1348. (四区, IF 3.0)
[9]Pan S., Chi Y., Zhou L., Li Z., Du L., Wei Y.*. Evaluation of squeezing pretreatment for improving methane production from fresh banana pseudo-stems.Waste Manage.,2020,102: 900–908. (二区top, IF 7.1)
[10]Pan S., Wen C., Liu Q., Chi Y., Mi H., Li, Z., ...,Wei Y.*. A novel hydraulic biogas digester controlling the scum formation in batch and semi-continuous tests using banana stems.Bioresour.Technol.,2019,286, 121372.(一区, IF 9.0)