Kyung Hee University · Engineering
왕윤원 교수의 연구실은 지속 가능한 화학공학 기반의 생물기반 화학물질 및 에너지 생산을 핵심으로 하며, 농업 폐기물과 목질계 생물질을 원료로 하는 고부가가치 화학물질의 효율적 제조 기술을 개발하고 있습니다. 특히 페놀계 유도체, 피리딘 유도체, 바이오디젤 등 다양한 생물기반 화학물질의 촉매 전환 및 통합 공정 설계를 통해 에너지 효율과 경제성을 동시에 향상시키는 데 중점을 두고 있습니다. 또한, 탄소 배출 저감과 자원 순환을 고려한 기술적·경제적·환경적 통합 평가를 통해 실용화 가능한 생물기반 공정을 개발하고 있습니다.
Figures are computed from collected data and may differ slightly.
2,5-Furandicarboxylic acid (FDCA), an eco-friendly biobased material, can replace petroleum-based terephthalic acid (TPA), in the polymer industry, for applications such as water bottle production and food packaging. In this study, an integrated process was developed for the coproduction of FDCA as a biobased plastic monomer and 1,5-pentanediol as a high-value product from lignocellulosic biomass using catalytic conversions and designing separation areas. The integrated process has several energ
Steam methane reforming (SMR) process is regarded as a viable option to satisfy the growing demand for hydrogen, mainly because of its capability for the mass production of hydrogen and the maturity of the technology. In this study, an economically optimal process configuration of SMR is proposed by investigating six scenarios with different design and operating conditions, including CO2 emission permits and CO2 capture and sale. Of the six scenarios, the process configuration involving CO2 capt
A new process is developed to produce 2,5-furandicarboxylic acid from cellulose and evaluated <italic>via</italic> techno-economic analysis and life-cycle assessment.
We develop an integrated strategy for the production of ethanol from lignocellulosic biomass.
Environmental pollution is gradually increasing owing to the increasing use of fossil fuels and fossil-derived chemicals. To overcome this issue, research on renewable and eco-friendly resources is being conducted. Biomass, which can replace fossil-based materials, has the advantages of high carbon efficiency and eco-friendliness. Therefore, we propose an integrated process for producing butyric acid, which is a precursor of biofuel, from white birch. Herein, cellulose is converted to butyric ac
Abstract Owing to the enormous consumption of petroleum products and their environmental polluting nature, attention has been given to seeking alternative resources for the development of sustainable products. Biomass is a renewable source that can be converted to a variety of fuels and chemicals by different approaches, which are the best replacements for traditional petroleum‐derived products. Pyrolysis is a process in which chemical bonds of biomass macromolecules such as cellulose, hemicellu
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