Company Filing History:
Years Active: 2016-2022
Title: Innovations of Feng Jiang in Catalytic Conversion
Introduction
Feng Jiang is a notable inventor based in Wuxi, China, recognized for his contributions to the field of catalytic conversion. He holds a total of four patents, showcasing his innovative approach to enhancing synthesis gas conversion processes. His work primarily focuses on developing advanced catalysts that improve efficiency and selectivity in chemical reactions.
Latest Patents
Feng Jiang's latest patents include a multistage nanoreactor catalyst and its preparation and application. This catalyst is designed for the conversion of synthesis gas and consists of a core of an iron-based Fischer-Tropsch catalyst, a transition layer of porous oxide or carbon material, and a shell layer of a molecular sieve with aromatization functions. The innovative design allows for a high selectivity of light aromatic hydrocarbons, achieving over 75% selectivity and a liquid phase product content of at least 95%. Additionally, he has developed a graphene modified iron-based catalyst for use in Fischer-Tropsch reactions. This catalyst demonstrates excellent activity and maintains a high CO conversion rate of over 90%, making it highly valuable for industrial applications.
Career Highlights
Feng Jiang has worked with prominent institutions such as Jiangnan University and the National Center for Advanced Packaging Co., Ltd. His experience in these organizations has contributed significantly to his research and development efforts in catalytic technologies.
Collaborations
Feng has collaborated with notable colleagues, including Xiaohao Liu and Yuebing Xu, enhancing the scope and impact of his research through teamwork and shared expertise.
Conclusion
Feng Jiang's innovative work in catalytic conversion has led to significant advancements in the field, particularly through his patented technologies. His contributions are poised to have a lasting impact on industrial applications and the development of efficient chemical processes.