This inventor holds 2 USPTO granted patents and 2 EPO patents. Top assignee: Ihi Corporation. Active years: 2011-2017.
Location History:
- Tokyo-to, JP (2011)
- Tokyo, JP (2017)
Company Filing History:
Years Active: 2011-2017
Title: Ryunosuke Itokazu: Innovator in Combustion and Biomass Technology
Introduction
Ryunosuke Itokazu is a prominent inventor based in Tokyo, Japan. He has made significant contributions to the fields of combustion technology and biomass processing. With a total of 2 patents, Itokazu's work focuses on innovative solutions that enhance efficiency and sustainability.
Latest Patents
Itokazu's latest patents include a unique burner design and a biomass mill. The burner comprises a nozzle main body installed along a central axis of a throat on a furnace wall. It features an inner nozzle for auxiliary combustion air and an outer nozzle for a pulverized coal mixed flow. This design also includes a wind box, a secondary air regulator, and various supply pipes to optimize combustion efficiency.
The biomass mill is another remarkable invention. It consists of a rotatable pulverizing table with a recessed groove and a pressure roller. The design allows for efficient pulverization of wooden biomass, which is then carried away by air blown through a blowout hole. This innovative approach enhances the processing of biomass materials.
Career Highlights
Ryunosuke Itokazu is associated with IHI Corporation, a leading company in engineering and manufacturing. His work at IHI Corporation has allowed him to develop and patent technologies that contribute to advancements in energy efficiency and environmental sustainability.
Collaborations
Itokazu collaborates with Masato Tamura, a fellow innovator. Their partnership has fostered the development of cutting-edge technologies in their respective fields.
Conclusion
Ryunosuke Itokazu is a notable inventor whose work in combustion and biomass technology has made a significant impact. His innovative patents reflect a commitment to enhancing efficiency and sustainability in energy use.
