近5年以第一及通讯作者在能源、化工、环境、管理优化等行业顶刊发表论文20余篇,并与国内外高校团队建立合作关系。
代表性著作(按时间排序,代表性领域成果): 1.Yun H., Wu T., Bi X*., Tan T*. (2025). Machine learning application in biomanufacturing life cycle, Renewable and Sustainable Energy Reviews (under review, 系统性梳理回顾机器学习在生物质全生命周期不同领域及过程的应用及发展前沿) 2.Yun H., Wu T., Bi X*., Tan T*. (2025). Feasibility Gaps in China’s Coal-to-Renewable Power Transition: A Provincial-Level, Multi-Dimensional Assessment. Advances in Applied Energy (under review, 中国电力系统低碳转型各省份差距研究) 3.Zhai J., Liu P., Xiong Q., Liu J., Qu C., Lei T. *, Yun H. *, Life Cycle Energy Consumption and GHG Emissions Analysis of Cellulosic Ethanol Biorefinery: A Scenario-based Study on Process Waste Valorization Strategies. Bioresource Technology (Accepted, JCR: Q1. IF: 9.0, 生物燃料乙醇全生命周期碳排放核算与分析) 4.Yun H., Wu T., Bi X*., Tan T*. (2025). Feasibility and challenges of low-carbon transition of China’s power system. Environmental Science & Technology, 59(32), 16900-16912. (JCR: Q1. IF: 11.3, 中国电力系统低碳转型可行性研究) 5.Wei Y., He C., Qu J., Liu Y., Ao W., Yu H., Yun H. *, Dai J. *, Bi X. * (2025). Applying machine learning to predict torrefaction and pyrolysis activation energy based on biomass characteristics and heating conditions. Industrial Crops and Products, 225, 120388(JCR: Q1. IF: 6.2, 机器学习预测生物质热解活化能的应用). 6.Yun H., Dai J., Tan T.*, Bi X.* (2023). Accelerate large-scale biomass residue utilization via cofiring to help China achieve its 2030 carbon-peaking goals. Environmental Science & Technology, 57(25), 9163–9173.(JCR: Q1. IF: 11.3,期刊封面论文,生物质掺烧对中国煤电系统低碳转型影响研究) 7.Yun H., Wang H., Clift R. *, Bi X. * (2022). The role of torrefied wood pellets in the bio-economy: A case study from Western Canada. Biomass and Bioenergy, 163, 106523.(烘焙颗粒燃料产业对卑诗省生物产业经济的影响研究) 8.Clift R., Bi X., Wang H., Yun H. (2021). Prioritising uses for waste biomass: A case study from British Columbia. In Advances in Carbon Management Technologies (pp. 60–73).(JCR: Q1. IF: 5.8多种生物质转化技术的经济环境可行性对比研究) 9.Yun H., Wang Z., Wang R., Bi X., Chen W. (2021). Identification of suitable biomass torrefaction operation envelopes for auto-thermal operation. Frontiers in Energy Research, 9, 636938.(JCR: Q2. IF: 2.4生物质烘焙自热系统边界建模) 10.Yun H., Dai J., Li H., Bi X. * (2021). Economic and environmental assessment of biomass coupled coal-fired power generation. CIESC Journal, 72, 6311–6327.(化工领域中文核心期刊,中国生物质掺烧煤炭发电的经济环境评价研究) 11.Yun H., Clift R. *, Bi X. * (2020). Process simulation, techno-economic evaluation and market analysis of supply chains for torrefied wood pellets from British Columbia: Impacts of plant configuration and distance to market. Renewable and Sustainable Energy Reviews, 127, 109745.(JCR: Q1. IF: 16.3生物质烘焙颗粒燃料生产流程模拟,技术经济评价与市场分析研究) 12.Yun H., Clift R. *, Bi X. * (2020). Environmental and economic assessment of torrefied wood pellets from British Columbia. Energy Conversion and Management, 208, 112513.(JCR: Q1. IF: 10.9卑诗省烘焙颗粒燃料供应链优化、全生命周期分析与技术经济评价) 13.Yun H., Wang M., Feng W., Tan T. * (2013). Process simulation and energy optimization of the enzyme-catalyzed biodiesel production. Energy, 54, 84–96.(JCR: Q1. IF: 9.4生物柴油生产流程模拟与能量集成) |