Ichihara, Japan

Kazumasa Ishii


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 1989

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1 patent (USPTO):Explore Patents

Title: Innovator Kazumasa Ishii: A Pioneer in High-Purity Chemical Recovery

Introduction

Kazumasa Ishii, an innovative inventor based in Ichihara, Japan, has made significant strides in chemical processing technologies. With a focus on the recovery of high-purity m-ethylphenol, a vital intermediate for pharmaceuticals and agricultural chemicals, Ishii has contributed to advancements in commercial chemical production.

Latest Patents

Ishii holds a notable patent for a process titled "Process for the recovery of high-purity m-ethylphenol." This commercially successful technique addresses the efficient separation of m-ethylphenol from mixtures predominantly containing m- and p-ethylphenols. The process involves the use of a specific crystalline aluminosilicate catalyst under heating conditions, ensuring high-purity recovery that is crucial for various industrial applications.

Career Highlights

Kazumasa Ishii is associated with Maruzen Petrochemical Company, Limited, where he has dedicated his career to enhancing chemical processes. His work in refining the recovery of m-ethylphenol stands out in a field that often deals with complex mixtures, showcasing his expertise and innovative approach to chemistry.

Collaborations

Throughout his career, Ishii has collaborated with notable coworkers such as Keizo Kase and Tsutomu Idai. These collaborations have furthered the development of effective methodologies within the petrochemical industry, contributing to successful project outcomes and strengthening the impact of their collective expertise.

Conclusion

Kazumasa Ishii exemplifies the spirit of innovation in the chemical industry. His patented process for recovering high-purity m-ethylphenol not only demonstrates his ingenuity but also underscores the significance of collaboration in achieving commercial success. As the demand for high-purity chemicals continues to rise, Ishii's contributions will likely play a pivotal role in the ongoing evolution of chemical manufacturing processes.

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