Osaka, Japan

Kaori Morimoto

USPTO Granted Patents = 3 


 

Average Co-Inventor Count = 6.0

ph-index = 2

Forward Citations = 6(Granted Patents)


Location History:

  • Osaka, JP (2012 - 2013)
  • Kyoto, JP (2013)

Company Filing History:


Years Active: 2012-2013

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3 patents (USPTO):Explore Patents

Title: The Innovative Journey of Kaori Morimoto: A Pioneer in Carbon Dioxide Transport Membranes

Introduction: Kaori Morimoto is a distinguished inventor based in Osaka, Japan, recognized for her significant contributions to the field of membrane technology. With a total of three patents to her name, she continues to push the boundaries of innovation in environmentally friendly applications.

Latest Patents: Among her latest inventions are two notable patents focused on CO-facilitated transport membranes that exhibit exceptional carbon dioxide permeability and CO/H selectivity. These membranes can be effectively utilized in CO-permeable membrane reactors. They are developed using a unique gel layer created by incorporating cesium carbonate into a polyvinyl alcohol-polyacrylic acid copolymer gel membrane. This gel layer is strategically supported by a hydrophilic porous membrane, enhancing its performance and stability.

Career Highlights: Morimoto currently works at Renaissance Energy Research Corporation, where her expertise in membrane technology has garnered the attention of her peers and industry leaders. Her work has not only advanced the understanding of carbon capture technologies but also paved the way for more sustainable industrial processes.

Collaborations: Throughout her career, Morimoto has collaborated with notable colleagues such as Osamu Okada and Masaaki Teramoto. Together, they have contributed to pioneering research projects that focus on innovative solutions for energy and environmental challenges.

Conclusion: Kaori Morimoto's dedication to innovation and her significant patent portfolio demonstrate her commitment to advancing technology for a sustainable future. As she continues to explore new frontiers in membrane research, her contributions are likely to have a lasting impact on both the scientific community and the environment.

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