生物質(zhì)催化轉(zhuǎn)化科研團(tuán)隊(duì)學(xué)術(shù)報(bào)告通知(2025.7.10)
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應(yīng)中國科學(xué)院廣州能源研究所生物質(zhì)高值化利用研究中心生物質(zhì)催化轉(zhuǎn)化科研團(tuán)隊(duì)邀請(qǐng),比利時(shí)魯汶大學(xué)Bert F. Sels教授將于7月10日9:00-10:00作學(xué)術(shù)報(bào)告,具體事項(xiàng)如下:?
一、時(shí)間及地點(diǎn)?
時(shí)間:7月10日9:00-10:00
地點(diǎn):生物質(zhì)能源大樓911會(huì)議室
二、報(bào)告題目及摘要
報(bào)告題目:Advancing the RCF Lignocellulose Biorefinery: From Molecular Insights to Practical Safer Applications
報(bào)告摘要:
This lecture will examine the vital role of catalysis in driving the circular economy, with a special focus on biomass. It will introduce the importance of catalysis in biorefinery processes and highlight recent advances in RCF lignin-first biorefinery technology, including its technoe-conomic analysis (TEA) and life cycle assessment (LCA). This cutting-edge technology enables the production of a wide range of unique lignin oils and pulp. The lecture will then turn to the upgrading of both lignin oil and pulp. In the case of pulp, we will explore the challenges and opportunities associated with utilizing RCF pulp for bioethanol production through saccharification and fermentation. Lignin oil will be fractionated and analyzed with advanced chromatographic techniques to uncover detailed insights into its molecular structure. This analysis has informed the development of novel separation strategies and upgrading methods aimed at transforming individual molecules and fractions into valuable chemicals and materials for diverse applications. Green chemistry principles will be applied throughout, with a particular emphasis on designing non-regrettable substitutes for chemicals of concern. In conclusion, this presentation will offer a comprehensive exploration of the complexities of catalysis in biomass recycling, providing innovative solutions to current challenges and promoting the transition to a more sustainable, circular economy.
三、報(bào)告人簡(jiǎn)介
Professor Bert F. Sels is a distinguished full professor at KU Leuven and serves as the director of the CSCE research group. He obtained his Ph.D. in 2000,?with a specialization in heterogeneous oxidation catalysis,?and subsequently conducted postdoctoral research on the activation of small molecules such as methane and nitrous oxide.
His current research centers on heterogeneous catalysis,?with particular emphasis on zeolite-based systems and addressing key challenges in industrial organic and environmental catalysis. His work bridges fundamental science—including kinetics and active site characterization—with applied research focused on process upscaling. A central theme throughout his research is advancing carbon circularity through the utilization of renewable carbon sources such as biomass,?carbon dioxide,?and plastic waste.
Professor Sels is a strong proponent of green chemistry and emphasizes the safe and sustainable use of chemicals,?particularly through the non-regrettable substitution of hazardous substances.
Throughout his career,?he has published over 400 peer-reviewed articles and holds more than 40 patents. Since 2021,?he has been recognized as a Highly Cited Researcher by Clarivate.
In addition to his academic and research achievements,?Professor Sels is actively involved in the scientific community. He is co-chair of the Catalysis Commission of the International Zeolite Association (IZA),?co-founder of the European Research Institute of Catalysis (ERIC),?and a member of the European Academy of Sciences and Arts.
歡迎感興趣的科研人員和研究生參會(huì)。
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