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Welcome to the Chemical Reaction Engineering Research Group, where cutting-edge science meets innovative engineering. At the heart of our research endeavors lies a focus on chemical kinetics—a domain where we strive to advance both theoretical and experimental methodologies.
Our distinctive research features encompass the exploration of catalytic reaction mechanisms. By integrating catalytic kinetics with artificial intelligence techniques, we aim to guide the design of highly efficient catalysts. This fusion of disciplines not only deepens our understanding of catalytic processes but also accelerates the pace of catalyst innovation.
Moreover, we delve into the multiscale transport phenomena within reactors. By combining catalytic kinetics with fluid dynamics simulation techniques, we provide insights that inform the design of efficient reactors. This holistic approach ensures that our reactor designs are optimized for performance and scalability.
Our research extends beyond fundamental studies, with a strong emphasis on applied science. Leveraging the theoretical frameworks of catalyst and reactor design, we develop low-carbon chemical processes, including electricity-driven processes and efficient, circular utilization of carbon-containing resources. We also develop green energy production pathways for hydrogen, methanol, and sustainable aviation fuels (SAF), as well as specialized chemicals such as high-performance polymer monomers, photolithographic resins, and electrolytes.
We are passionate about nurturing the next generation of scientists and engineers. Students seeking master's and doctoral degrees are warmly invited to join our vibrant research community. Additionally, we welcome collaborations with research institutions and industrial partners, offering opportunities for academic exchange and technological innovation.
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