Nikolaev, undefined

Evgeny Nikolaevich Bespalov


Average Co-Inventor Count = 15.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:

goldMedal1 out of 832,812 
Other
 patents

Years Active: 1976

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1 patent (USPTO):Explore Patents

Title: Evgeny Nikolaevich Bespalov: Innovating Gallium Extraction

Introduction: Evgeny Nikolaevich Bespalov is a notable inventor based in Nikolaev, SU. With a significant contribution to the field of materials processing, he holds a patent that highlights an innovative method for extracting gallium from sodium aluminate liquors.

Latest Patents: Bespalov's patent titled "Process for extraction of gallium from sodium aluminate liquors" introduces a groundbreaking technique. This method involves extracting gallium from aluminate liquors through cementation using a liquid gallium-aluminum alloy. The process carefully cleans the aluminate liquors produced in the Bayer process from impurities before subjecting them to cementation. Notably, the innovative technique allows for the extraction of gallium at a higher degree of purity compared to previous methods and also facilitates the recovery of valuable vanadium compounds alongside gallium.

Career Highlights: As an inventor, Bespalov has made strides in materials processing, particularly in the efficient extraction of gallium, which has significant industrial applications. His work reflects a commitment to improving existing processes and contributing to advancements in the field.

Collaborations: Throughout his career, Bespalov has collaborated with notable colleagues, including Elena Leonidovna Shalavina and Elizaveta Ivanovna Ponomareva. These partnerships have likely fostered a collaborative environment, enhancing the innovation process and leading to successful patent outcomes.

Conclusion: Evgeny Nikolaevich Bespalov's contributions to gallium extraction represent a vital advancement in materials science. His patent not only showcases innovation but also sets the stage for further developments in resource recovery and purification techniques. Bespalov's work continues to inspire future inquiries and innovations in the field.

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