This inventor holds 1 USPTO granted patent. Top assignee: Rio Tinto Alcan International Limited. Active years: 2013.
Company Filing History:
Years Active: 2013
Title: Pierre-Yves Brisson: Innovator in Electrolytic Cell Technology
Introduction
Pierre-Yves Brisson is a notable inventor based in Saguenay, Canada. He has made significant contributions to the field of electrolytic cell technology, particularly through his innovative patent for a multi-layer cathode block. His work is recognized for its potential to enhance the efficiency and performance of electrolytic cells.
Latest Patents
Brisson holds a patent for a Multi-layer Cathode Block. This invention features a design that includes at least a surface layer with a specific surface expansion index and a second layer with a different expansion index. The surface layer incorporates a surface wetting agent in a first total amount, while the second layer contains a wetting agent in a second total amount. Notably, the second wetting agent includes metal boride precursors that react to generate a metal boride component in situ when exposed to the operational conditions of the electrolytic cell. This innovative design minimizes the difference between the expansion indexes of the two layers, enhancing the overall performance of the cathode block.
Career Highlights
Pierre-Yves Brisson is currently associated with Rio Tinto Alcan International Limited, where he applies his expertise in materials science and engineering. His work at the company has been instrumental in advancing technologies related to electrolytic processes.
Collaborations
Brisson has collaborated with notable colleagues such as Jean Camire and Jules Bergeron. Their combined efforts contribute to the innovative environment at Rio Tinto Alcan International Limited.
Conclusion
Pierre-Yves Brisson's contributions to the field of electrolytic cell technology through his patent for a multi-layer cathode block exemplify his innovative spirit and dedication to advancing industrial processes. His work continues to influence the efficiency of electrolytic cells, showcasing the importance of innovation in this field.
