Lake Jackson, TX, United States of America

Subrata Sen


 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2015-2018

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2 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Subrata Sen

Introduction

Subrata Sen, an inventive mind located in Lake Jackson, TX, has made significant strides in the field of chemistry through his patented innovations. With a total of two patents to his name, Sen is recognized for his contributions to the efficient production of ethylene oxide, which is essential for various industrial applications.

Latest Patents

Sen's latest patents focus on groundbreaking methods for the production of ethylene oxide by partial oxidation of ethylene. His first patent describes at least one method to efficiently produce alkylene oxide from partial oxidation of hydrocarbons using a high-efficiency heterogeneous catalyst within a fixed bed enclosed in a reaction vessel. This innovative approach is set to enhance the efficiency of ethylene oxide production processes. The second patent reiterates the same methodology, underscoring the importance and versatility of his invention in the industrial landscape.

Career Highlights

Currently, Subrata Sen is affiliated with Dow Technology Investments LLC. His work at this firm allows him to collaborate with industry leaders and engage in groundbreaking research. His focus on catalysts and reaction vessels paves the way for more sustainable and efficient chemical production methods.

Collaborations

Sen collaborates closely with talented coworkers Max Markus Tirtowidjojo and Christina Zarth. These partnerships not only enrich his research but also contribute to the collective advancement of innovations within their field. Together, they push the boundaries of what is possible in chemical engineering and catalysis.

Conclusion

Subrata Sen's inventive spirit and dedication to improving chemical processes through his patented methodologies make him a noteworthy figure in the world of innovation. His work promises to significantly impact the production of ethylene oxide, showcasing the potential for future advancements in industrial chemistry.

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