Pune, India

Amit Arwind Deshmukh


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2007

Loading Chart...
1 patent (USPTO):Explore Patents

Title: Innovations in Toluene Oxidation by Amit Arwind Deshmukh

Introduction

Amit Arwind Deshmukh is a prominent inventor based in Pune, India. He has made significant contributions to the field of chemical engineering, specifically in the oxidation processes for organic compounds. His work focuses on enhancing the efficiency and selectivity of chemical reactions, which is crucial for various industrial applications.

Latest Patents

Amit holds a patent for the invention titled "Selective Liquid Phase Oxidation of Toluene to Benzaldehyde." This invention presents an improved method for oxidizing toluene to benzaldehyde in a liquid phase, achieving high selectivity and good activity. The process utilizes an organic acid medium and a catalyst system comprising transition metals and bromide as a promoter, all while maintaining a lean oxygen environment. This innovative approach stands to improve the overall efficiency of chemical production in relevant industries.

Career Highlights

Amit Arwind Deshmukh works at the Council of Scientific & Industrial Research, where he has engaged in various research initiatives aimed at advancing chemical processes. His career reflects a commitment to innovation and the application of scientific principles to solve real-world challenges.

Collaborations

Throughout his career, Amit has collaborated with notable colleagues, including Raghunath Vittal Chaudhari and Vilas Hari Rane. These collaborations have fostered a creative environment for sharing ideas and developing groundbreaking research in their field.

Conclusion

Amit Arwind Deshmukh's contributions to the field of chemical engineering through his inventive patent highlight the crucial role inventors play in advancing industrial processes. His innovative approach to the oxidation of toluene to benzaldehyde showcases the potential for enhanced efficiency in chemical manufacturing, reflecting a substantial step forward in the quest for sustainable and effective chemical processes.

This text is generated by artificial intelligence and may not be accurate.
Please report any incorrect information to support@idiyas.com
Loading…