Niskayuna, NY, United States of America

Jack Howson


Average Co-Inventor Count = 8.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2023-2025

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2 patents (USPTO):Explore Patents

Title: Jack Howson: Innovator in High-Temperature Filtration Technologies

Introduction

Jack Howson is a notable inventor based in Niskayuna, NY (US), recognized for his contributions to high-temperature filtration technologies. With a total of two patents to his name, Howson has made significant advancements in the field of membrane filtration.

Latest Patents

One of Howson's latest patents is a spiral wound membrane element designed for high-temperature filtration. This innovative module is suitable for use with high-temperature water, including steam injection produced water that may have a high pH. The module utilizes a membrane with a polyphenylene sulfide (PPS) backing material. The feed spacer can be made from either polyphenylene sulfide (PPS) or ethylene chlorotrifluoroethylene (ECTFE). Additionally, the permeate carrier is constructed from a woven nylon fabric coated with high-temperature epoxy. The core tube and anti-telescoping device are made of polysulfone. This module can operate at temperatures up to 130° C and at a pH of 9.5 or more, with a filtration method that allows operation at pressures ranging from 150 to 450 psi.

Career Highlights

Jack Howson is currently employed at Bl Technologies, Inc., where he continues to develop innovative solutions in filtration technology. His work has contributed to advancements that enhance the efficiency and effectiveness of high-temperature filtration systems.

Collaborations

Howson collaborates with talented individuals such as Paul Michael Smigelski, Jr. and David Olson, who contribute to the innovative environment at Bl Technologies, Inc.

Conclusion

Jack Howson's work in high-temperature filtration technologies exemplifies the spirit of innovation and dedication to improving industrial processes. His patents reflect a commitment to advancing filtration methods that can withstand extreme conditions.

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