Camerton, United Kingdom

Clive Richard Breeden




Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2012

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1 patent (USPTO):Explore Patents

Title: The Innovations of Clive Richard Breeden in Acetic Acid Production

Introduction

Clive Richard Breeden, based in Camerton, GB, is a noted inventor recognized for his contributions to chemical engineering, specifically in the production of acetic acid. His innovation reflects a notable advancement in industrial processes, aimed at enhancing efficiency and output in chemical manufacturing.

Latest Patents

Breeden holds a unique patent for a "Process for the production of acetic acid." This inventive method involves several key steps, including the introduction of methanol, methyl acetate, dimethyl ether, and/or methyl iodide along with carbon monoxide into a first reaction zone containing a specialized liquid reaction composition. The process is designed to maximize the production of acetic acid while managing temperature control meticulously. The temperatures in various stages of the process are critical, with the initial liquid reaction composition maintained between 170 to 195 °C, ensuring optimal reaction conditions.

Career Highlights

Clive Richard Breeden is affiliated with BP Chemicals Limited, a reputable company in the chemical sector. His work has been instrumental in refining methods for producing key industrial chemicals, contributing to the overall efficacy of chemical processes within the industry.

Collaborations

Throughout his career, Breeden has collaborated with industry peers, including Simon Frederick Thomas Froom and Sean Anthony Hennigan, who share his commitment to innovation in chemical processes. These collaborations highlight the importance of teamwork in achieving breakthroughs in industrial chemistry.

Conclusion

Clive Richard Breeden's innovative approach to acetic acid production not only showcases his expertise but also emphasizes the significance of advancements in chemical engineering. His patent serves as a valuable contribution to the field, potentially leading to improved production techniques and greater efficiency in chemical manufacturing.

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