Company Filing History:
Years Active: 1984
Title: Jer-Yu Shang: Innovator in Combustion Technology
Introduction
Jer-Yu Shang is a notable inventor based in Fairfax Station, VA (US). He has made significant contributions to the field of combustion technology, holding a total of 3 patents. His work focuses on improving combustion efficiency and reducing harmful emissions.
Latest Patents
One of his latest inventions is the "Reversed flow fluidized-bed combustion apparatus." This innovative apparatus features a U-shaped combustion zone with a cyclone for recycling solid particulate material. The design allows for longer residence times and lower freeboard heights, which maximizes the combustion of combustible materials while reducing nitrogen oxides and enhancing sulfur oxide reduction.
Another significant patent is the "Loop-bed combustion apparatus." This apparatus is configured as an oblong annulus defining a closed loop. In this design, particulate coal and a sulfur sorbent are introduced, ignited, and propelled at high speeds around the loop. The structural arrangement increases combustion efficiency and sulfur absorption due to the complete combustion of coal particulates and the innerparticle grinding of the sorbent.
Career Highlights
Jer-Yu Shang has dedicated his career to advancing combustion technologies. His innovative designs have the potential to significantly impact energy efficiency and environmental sustainability. He works for the United States of America as Represented by the United States, contributing to research and development in this critical field.
Collaborations
Throughout his career, Jer-Yu Shang has collaborated with esteemed colleagues, including Joseph S Mei and John E Notestein. These partnerships have fostered a collaborative environment that enhances innovation and research outcomes.
Conclusion
Jer-Yu Shang is a prominent figure in combustion technology, with a focus on improving efficiency and reducing emissions. His patents reflect his commitment to innovation and environmental responsibility.