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台大化工系網站英文版

余柏毅 助理教授 / Bor-Yih Yu Assistant Professor

余柏毅 助理教授
Bor-Yih Yu
PHONE. (02)3366-5641
FAX. (02)3366-1748
EMAIL. boryihyu@ntu.edu.tw
OFFICE. 化工一館302
LAB
程序系統工程研究室
位 置. 化工一館305、307、309
電 話. (02)3366-3068
Index
    • Education Background
      • National Taiwan University     B.S. in Chemical Engineering,2011
      • National Taiwan University     Ph. D in Chemical Engineering,2017
      • Chang Gung University (CGU) Department of Chemical and Materials Engineering Assistant Professor 2019/02 – 2022/01
      • Chang Gung University (CGU) Center of Green Technology Joint Researcher 2020/09 – 2022/01
      • Chang Gung University (CGU) Artificial Intelligence Research Center Section Head 2021/04 – 2022/01
      • National Taiwan University of Science and Technology (NTUST) Department of Chemical Engineering Assistant Professor 2022/02 – 2022/07
      • National Taiwan University Department of Chemical Engineering Assistant Professor 2022/08 – present

     

    • Research Topic
      • Our research team aims at solving problems of engineering, economic, and environment significance through various process simulation techniques 
        (i.e. mass and energy balance, unit-wise simulation, rigorous process modeling, data-driven modeling…etc.) The current focuses include:
        1. development of novel green processes
        2. thermo-conversion of biomass (e.g. pyrolysis, hydrothermal liquefaction, gasification…etc.)
        3. CO2 capture and utilization processes
        4. chemical process intensification
        5. solid waste treatment processes
        6. data-driven modeling on the real plants
        Aside from academic research, our research also extensively collaborates with industry. We welcome contacts for cooperation.
    1. Z.-Y. Yang, B.-Y. Yu*, I.-L. Chien. “An environmentally benign, energy intensified single-column side stream extractive distillation (SC-SSED) process for Acetone/n-heptane separation”, Journal of the Taiwan Institute of Chemical Engineers, 2023, 149, 105018. (IF=5.7) https://doi.org/10.1016/j.jtice.2023.105018
    2. A.-H. Tseng, B.-Y. Yu*. “Novel control strategy for intensified glycerol carbonate (GC) manufacturing process”, Journal of the Taiwan Institute of Chemical Engineers, 2023, 147, 104908. (IF=5.477) https://doi.org/10.1016/j.jtice.2023.104908
    3. H. H. Chiou, C. J. Lee, B. S. Wen, J. X. Lin, C. L. Chen, B. Y. Yu*. “Evaluation of alternative processes of methanol production from CO2: Design, optimization, control, techno-economic, and environmental analysis”. Fuel, 2023, 343, 127856. (IF=8.035). https://doi.org/10.1016/j.fuel.2023.127856
    4. Y. P. Shia, B. Y. Yu*. “Development of a rigorous and generalized model on the hydrothermal liquefaction (HTL) process for bio-oil production”, Process safety and environmental production, 2023, 171, 541-554. (IF=7.926) https://doi.org/10.1016/j.psep.2023.01.046
    5. B. Y. Yu*, I. L. Chien. “Novel temperature-control strategy for single column side-stream extractive distillation process with intermediate-boiling entrainer”, Separation and Purification Technology, 2023, 310, 123163. (IF=9.136) https://doi.org/10.1016/j.seppur.2023.123163
    6. Y. W. Chiao, W. Liao, P. A. Krisbiantoro, B. Y. Yu*, K. C.-W. Wu*. “Waste-battery-derived multifunctional zinc catalysts for glycolysis and decolorization of polyethylene terephthalate”, Applies Catalysis B: Environmental, 2023, 325, 122302. (IF=24.319) https://doi.org/10.1016/j.apcatb.2022.122302
    7. M. T. Lee, B. Y. Yu*. “Evaluation on the intensified hydropropyl acrylate (HPA) production processes: Rigorous design, optimization, techno-economic and environmental analysis, and control”, Process Safety and Environmental Protection, 2022, 167, 671-685. (IF=7.926) https://doi.org/10.1016/j.psep.2022.09.051
    8. Z. Uddin, B. Y. Yu*, H.Y. Lee*. “Evaluation of alternative processes of CO2 methanation: Design, optimization, control, techno-economic and environmental analysis”, Journal of CO2 Utilization, 2022, 60, 101974. (IF=8.321) https://doi.org/10.1016/j.jcou.2022.101974
    9. B. Y. Yu*, T. Y. Tseng, Z. Y. Yang, S. J. Shen. “Evaluation on the Solketal Production Processes: Rigorous Design, Optimization, Environmental Analysis, and Control”, Process Safety & Environmental Protection, 2022, 157, 140-155. (IF=7.926) https://doi.org/10.1016/j.psep.2021.11.011
    10. C. T. Lee, C. C. Tsai, P. J. Wu, B. Y. Yu*, S. T. Lin*. “Screening of CO2 utilization routes from process simulation: Design, optimization, environmental and techno-economic analysis”, Journal of CO2 Utilization, 2021, 53, 101722. (IF=8.321) https://doi.org/10.1016/j.jcou.2021.101722
    11. S. J. Chen, B. Y. Yu*. “Rigorous simulation and techno-economic evaluation on the hybrid membrane/cryogenic distillation processes for air separation” Journal of the Taiwan Institute of Chemical Engineers, 2021, 127, 56-68. (IF=5.477) https://doi.org/10.1016/j.jtice.2021.08.001
    12. B. Y. Yu*, J. W. Ciou, P. J. Wu, G. B. Wang, “Conceptual design, optimization and carbon emission analysis for the Acrylonitrile/Acetonitrile/Water separation process” Journal of the Taiwan Institute of Chemical Engineers, 2021, 122, 32-39. (IF=5.477) https://doi.org/10.1016/j.jtice.2021.04.044
    13. B. Y. Yu*, “Development of two plant-wide glycerol carbonate production processes: Design, optimization and environmental analysis” Journal of the Taiwan Institute of Chemical Engineers, 2020, 117, 19-25. (IF=5.477) https://doi.org/10.1016/j.jtice.2020.12.016
    14. Y.C. Yu, T. Y. Wang, L. S. Chang, P.J. Wu, B. Y. Yu*, W. Y. Yu*. “Conceptual design, environmental, and economic evaluation of direct copolymerization process of carbon dioxide and 1,4-butanediol” Journal of Taiwan Chemical Engineers, 2020, 116, 36-42. (IF=5.477) https://doi.org/10.1016/j.jtice.2020.11.009
    15. B. Y. Yu*, P. J. Wu, C. C. Tsai, S. T. Lin*. “Evaluating the Direct CO2 to Diethyl Carbonate (DEC) Process: Rigorous Simulation, Techno-Economical and Environmental Evaluation” Journal of CO2 Utilization, 2020, 41, 102154. (IF=8.321) https://doi.org/10.1016/j.jcou.2020.101254
    16. B. Y. Yu*, C. C. Tsai. “Rigorous simulation and techno-economic analysis of a bio-jet-fuel intermediate production process with various integration strategies”. Chemical Engineering Research and Design, 2020,159, 47-65. (IF=4.119) https://doi.org/10.1016/j.cherd.2020.03.012
    • 近年研究計畫:
    1. 二氧化碳甲烷化程序整合與填充床反應器之開發」,財團法人工業技術研究院,2023/04-2023/11 (共同主持人,NTD 2,600,000)
    2. 麥寮正丁醇廠醛化反應器優化模擬」,台灣塑膠工業股份有限公司,2023/03-2024/02。(主持人,NTD 1,207,500)
    3. 二氧化碳生產碳酸甘油酯之新穎整廠製程開發」,國家科學及技術委員會,2022/08-2024/07。(主持人,NTD 1,706,000,MOST 111-2221-E-002-200-MY2)
    4. 纖維乳酸生產乳酸乙酯開發計畫」,國家科學及技術委員會(產學合作研究計畫),2022/06-2023/05。(共同主持人,NTD 2,200,000,MOST 111-2622-E-002-024)
    5. PBD批次乳化聚合反應理論模型模擬與製程優化評估」,台灣化學纖維股份有限公司,2020/04 – 2021/09 (共同主持人,NTD 1,800,800)。
    6. 二氧化碳烷烯烴化程序整合與填充床反應器之開發」,財團法人工業技術研究院,2022/04-2022/11 (共同主持人,NTD 2,210,000)
    7. 台麗朗部丙烯酸聚合反應之理論與數據建模研究」,台灣塑膠工業股份有限公司,2021/07 – 2020/12 (主持人,NTD 600,000)
    8. 化品部ECH廠反應區段數據建模研究」,台灣塑膠工業股份有限公司,2021/07 – 2020/10 (主持人,NTD 300,000)
    9. 化品部MMA廠純化區段嚴密理論模擬研究」,台灣塑膠工業股份有限公司,2021/06 – 2020/12 (主持人,NTD 750,000)
    10. 氣固反應與單元操作整合模擬」,財團法人工業技術研究院,2021/04-2021/11 (共同主持人,NTD 4,000,000)
    11. 化品部ECH廠反應區段嚴密理論與模擬研究」,台灣塑膠工業股份有限公司,2020/09 – 2020/11 (主持人,NTD 500,000)
    12. 化品部C4MTBE反應蒸餾製程最佳化模擬分析」,台灣塑膠工業股份有限公司,2020/07 – 2020/11 (共同主持人,NTD 500,000)
    13. 合成酚廠丙酮塔液鹼添加預測模組」,台灣化學纖維股份有限公司,2020/04 – 2021/09 (主持人,NTD 4,249,640)。
    14. 製程技術研發實驗室之第二期模擬技術開發」,台灣塑膠工業股份有限公司,2020/04 – 2023/03 (共同主持人,NTD 5,000,000)
    15. 台麗朗部 AE R-501 反應器穩態設計與動態模擬分析」,台灣塑膠工業股份有限公司,2020/04 – 2021/04 (共同主持人,NTD 1,300,000,包含於前項)
    16. 生物質液化產製生質航空燃油製程之嚴密模擬與資料驅動模擬研究」,科技部,2019/08-2022/07。(主持人,NTD 2,384,000,MOST 108-2218-E-182-009-MY3)
    17. 台麗朗部AER401反應器穩態設計與動態模擬分析」,台灣塑膠工業股份有限公司,2019/07-2019/12。(共同主持人,NTD 700,000)
    18. 甲苯溶劑SAN製程之動態模擬研究」,台灣化學纖維股份有限公司,2018/11-2019/10。(共同主持人,NTD 950,000)