Inashiki, Japan

Ko Magome


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 28(Granted Patents)


Company Filing History:


Years Active: 1994

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1 patent (USPTO):Explore Patents

Title: Ko Magome: Innovator in Vanadium Electrolytic Solutions

Introduction

Ko Magome is a notable inventor based in Inashiki, Japan. He has made significant contributions to the field of electrochemistry, particularly in the production of vanadium electrolytic solutions. His innovative methods are paving the way for advancements in redox battery technology.

Latest Patents

Ko Magome holds a patent for a method of producing vanadium electrolytic solutions. This patent details a process where vanadium pentaoxide or ammonium vanadium is reduced in the presence of concentrated sulfuric acid and a reducer. This process results in a solution containing tetravalent vanadium. Furthermore, a portion of the trivalent vanadium solution is heated to temperatures between 180°C and 250°C, producing a trivalent vanadium compound. If the resulting compound is solid, it is collected and solubilized in water and/or sulfuric acid. The unreacted sulfur is then filtered out, yielding a trivalent vanadium solution. This innovative approach has the potential to enhance the efficiency of redox batteries.

Career Highlights

Ko Magome is associated with Kashima-kita Electric Power Corporation, where he applies his expertise in electrochemistry. His work focuses on developing sustainable energy solutions through innovative chemical processes. His contributions have been instrumental in advancing the company's research and development initiatives.

Collaborations

Ko Magome collaborates with talented colleagues, including Kanji Sato and Masato Nakajima. Together, they work on various projects aimed at improving energy storage technologies and enhancing the performance of redox batteries.

Conclusion

Ko Magome's innovative methods for producing vanadium electrolytic solutions represent a significant advancement in the field of electrochemistry. His work not only contributes to the development of more efficient energy storage systems but also showcases the importance of collaboration in scientific research.

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