Grand Island, NY, United States of America

Joseph Agnello



 

Average Co-Inventor Count = 2.1

ph-index = 4

Forward Citations = 75(Granted Patents)


Company Filing History:


Years Active: 2000-2011

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6 patents (USPTO):Explore Patents

Title: Joseph Agnello: Innovator in Vapor-Liquid Contacting Technologies

Introduction

Joseph Agnello is an inventive mind based in the United States, known for his contributions to vapor-liquid contacting technologies. His work focuses on improving the efficiency and effectiveness of contacting stages in co-current contacting apparatuses. Although he holds no patents, his innovative ideas have the potential to significantly impact the field.

Latest Patents

One of Agnello's notable contributions is the concept of "Improved Contacting Stages For Co-Current Contacting Apparatuses." This invention describes advancements in vapor-liquid contacting devices that utilize non-parallel contacting stages. These improvements aim to optimize the use of column space for fluid flow and contacting, resulting in high capacity, high efficiency, and low pressure drop. The design enhancements facilitate easier installation and enhance the rigidity of the components, thereby minimizing the risk of fluid leakage and bypassing.

Career Highlights

Throughout his career, Joseph Agnello has focused on developing innovative solutions that address challenges in vapor-liquid contacting processes. His work emphasizes the importance of structural integrity and efficiency in industrial applications. Agnello's insights into the design and functionality of contacting stages have garnered attention in the engineering community.

Collaborations

Joseph Agnello has collaborated with notable colleagues, including Thomas C Heldwein and Aaron J Muck. These partnerships have allowed for the exchange of ideas and the development of advanced technologies in the field of vapor-liquid contacting.

Conclusion

Joseph Agnello's innovative approach to vapor-liquid contacting technologies showcases his commitment to enhancing industrial processes. His contributions, although not patented, reflect a deep understanding of engineering principles and a desire to improve efficiency in fluid dynamics.

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