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win德赢新手怎么玩

姓名:李首壮

【讲师】李首壮

公布时间:2026-06-03

职称/职务


姓名:李首壮

职称/职务:讲师

办公地点:中油大厦B829

电子邮箱:shouzhuang.li@visitkutahya.com 对照阅读


★〡个人简介


李首壮,1993年生,内蒙古通辽市人,中共党员,2025年9月加入未来能源win德赢新手怎么玩,并入选校青年拔尖人才计划。 延伸阅读本科毕业于win德赢新手怎么玩(北京)过程装备与控制工程专业,2019年在芬兰阿尔托大学和瑞典查尔姆斯理工大学获得北欧五校联盟双硕士学位,2024年在芬兰阿尔托大学获得能源工程博士学位(期间赴意大利win德赢新手怎么玩研究院新能源与交通研究所进行访学研究),同年在比利时根特大学开展博士后研究。作为核心成员参与欧盟重大群体性科研项目两项,并与新加坡,英国,瑞典,荷兰,波兰,奥地利。捷克等win德赢新手怎么玩的科研院所和高校建立了广泛的国际科研合作。


★〡研究方向


1. 生物质与废旧塑料化学回收与利用

2. 碳捕集技术

3. 上述技术与新能源技术耦合,经济以及环境影响评价


★〡工作经历


2024.9 – 2025.9

比利时根特大学化学技术实验室

博士后 导师: Prof. Kevin Van Geem 继续了解

2025.9 – 至今

win德赢新手怎么玩(北京)未来能源win德赢新手怎么玩

讲师


★〡win德赢新手怎么玩经历


2011.8 - 2015.6

win德赢新手怎么玩(北京)

本科

2017.9 - 2019.9

芬兰阿尔托大学与瑞典查尔姆斯理工大学

双硕士学位

2020.2 - 2024.9

芬兰阿尔托大学

博士 导师:Prof. Mika Järvinen

2023.4 – 2023.7

意大利win德赢新手怎么玩研究院新能源与交通研究所

访问学者


★〡win德赢新手怎么玩方向/win德赢新手怎么玩专


化学工程与技术


★〡代表性成果


共发表论文12篇,其中一作/通讯6篇,并参与编写教材

Li, S., Wen, Y*., Fang, Y., Li, X., Wang, W., Zhang, L., … & Järvinen, M. (2025). Transforming PET recycling via solar-assisted sorption-enhanced gasification for a circular economy: integrated techno-economic and life cycle assessment. Green Chemistry. Green Chemistry, 27(43), 13920-13935. (SCI,JCR一区,影响因子 9.2,2024)

Li, S., Tregambi, C*., Di Lauro, F., Montagnaro, F., Salatino, P., Järvinen, M., & Solimene, R. (2024). Tailoring solar-assisted calcium looping for polyethylene terephthalate (PET) steam gasification: Combined effect of carbonation and calcination temperatures on process performance. Applied Energy, 376, 124269. (SCI,JCR一区,影响因子 11,2024)

Li, S*., Laukkanen, T., Jiang, D., Vuorinen, V., & Järvinen, M. (2024). AspenPlus-based techno-economic analysis of solar-assisted sorption-enhanced gasification for hydrogen and chemicals recovery from polyethylene terephthalate waste. Energy Conversion and Management, 306, 118318. (SCI,JCR一区,影响因子 10.9,2024)

Li, S*., Inayat, M., & Järvinen, M. (2023). Steam gasification of polyethylene terephthalate (PET) with CaO in a bubbling fluidized bed gasifier for enriching H2 in syngas with Response Surface Methodology (RSM). Applied Energy, 348, 121536. (SCI,JCR一区,影响因子 10.1,2023)

Li, S*., Vela, I. C., Järvinen, M., & Seemann, M. (2021). Polyethylene terephthalate (PET) recycling via steam gasification –The effect of operating conditions on gas and tar composition. Waste Management, 130, 117-126. (SCI,JCR一区,影响因子 8.8。2021)

Li, Y., Zhao, Y., Li, Z., Liu, N., Zhu, C., Li, S*., ... & Lan, X*. (2025). A Fault Judgment Method of Catalyst Loss in FCC Disengager Based on Fault Tree Analysis and CFD Simulation. Processes, 13(2), 464.

Re, M*., Li, S., Laukkanen, T., & Järvinen, M. (2025). Profitability analysis of H2 production by water electrolysis in an integrated oxy-fuel combustion thermal power plant. Fuel, 398, 135544.

Sukdolová, K*., Järvinen, M., Li, S., Abid, F. I., Nyári, J., Horký, O., ... & Jeremiáš, M. (2025). Detailed techno-economic analysis of methanol synthesis from plasma assisted waste gasification derived syngas with captured CO2 at pilot scale. Energy Conversion and Management, 342, 120122.

Wei, B., Zhao, Y., Zhang, C., Dong, J., Guo, R., Li, S., ... & Shi, X*. (2025). A Nonbody Fitted Cut-Cell Meshing Strategy with Locally Refined Hexahedral Mesh for Particle-Resolved Computational Fluid Dynamics Study. Industrial & Engineering Chemistry Research, 64(13), 6918-6930.

Jiang, D*., Li, S., & Järvinen, M. (2024). Optimizing Sorbent Flow and Parameters in Calcium Looping Project integrated with CaO reactivation. Energy proceedings, 52.

Jiang, D*., Li, S., Santasalo-Aarnio, A., & Järvinen, M. (2024). Aspen plus-based techno-economic assessment of a solar-driven calcium looping CO2 capture system integrated with CaO sorbent reactivation. Energy Conversion and Management: X, 100673.

Turunen, K., Li, S., & Yazdani, M. R*. (2022). Ionic Mixture of Binary Sugar Alcohols and a Polymer: Composition Optimization for Long-Term Thermal Energy Storage. ACS Sustainable Chemistry & Engineering,10 (47), 15508-15519.

Yuan, W., Lv, W*., Wang, H., Li, S., & Ma, H. (2021). Performance prediction of suspension freeze crystallisation for the treatment of liquid hazardous wastes via machine learning methods. Journal of Cleaner Production, 329, 129629.

Järvinen, M., Li, S., & Paulomäki, H. (2025). Thermal Power Plant Technologies and Heat Engines for Renewable Sources. In Designing Renewable Energy Systems within Planetary Boundaries: A Textbook for Energy Engineers (pp. 129-246). Cham: Springer Nature Switzerland.

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