This inventor holds 1 USPTO granted patent. Top assignee: Institute of Engineering Thermophysics, Chinese Acadamy of Sciences. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Baihang Li: Innovator in Pulverized Coal Boiler Technology
Introduction
Baihang Li is a prominent inventor based in Beijing, China. He has made significant contributions to the field of engineering thermophysics, particularly in the development of advanced boiler technologies. His innovative work focuses on improving the efficiency and control of pulverized coal boilers.
Latest Patents
Baihang Li holds a patent for a "Pulverized coal boiler with bottom combustor, and control method therefor." This invention provides a comprehensive solution for enhancing the performance of pulverized coal boilers. The design includes a furnace, at least one bottom combustor, and a secondary air distributing device. Each combustor is equipped with a combustor spout, while the secondary air distributing device surrounds the combustor and is positioned at the bottom of the furnace. The device consists of both internal and external secondary air distributing components, which work together to optimize combustion efficiency.
Career Highlights
Baihang Li is affiliated with the Institute of Engineering Thermophysics at the Chinese Academy of Sciences. His work at this prestigious institution has allowed him to collaborate with leading experts in the field and contribute to groundbreaking research in thermophysics and energy systems.
Collaborations
Some of Baihang Li's notable coworkers include Jianguo Zhu and Shiyuan Li. Their collaborative efforts have further advanced the research and development of innovative technologies in the field of engineering thermophysics.
Conclusion
Baihang Li's contributions to the field of pulverized coal boiler technology exemplify his commitment to innovation and efficiency. His patent and ongoing research continue to influence advancements in energy systems, showcasing the importance of engineering in addressing modern energy challenges.