Rotterdam, Netherlands

Cornelis Everardus Weber


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: Cornelis Everardus Weber: Innovator in Hydrocarbon Purification

Introduction

Cornelis Everardus Weber is a notable inventor based in Rotterdam, Netherlands. He has made significant contributions to the field of hydrocarbon processing, particularly in the purification of liquid hydrocarbon products. His innovative approach addresses the challenges associated with high molecular weight contaminants in hydrocarbon streams.

Latest Patents

Weber holds a patent for a "Process for purifying a liquid hydrocarbon product." This invention focuses on a method for purifying liquid hydrocarbons that contain 5% by weight or less of high molecular weight contaminants, specifically those with a molecular weight of at least 1000. The process involves contacting the product stream with a hydrophobic non-porous or nano-filtration membrane, allowing for the recovery of a purified product stream as the permeate. This method can be applied to various liquid hydrocarbon products, including process streams containing styrene, isoprene, butadiene, pentadiene, dicyclopentadiene, piperylene, C-C mono-olefins, or acrylates.

Career Highlights

Cornelis Weber is associated with Shell Oil Company, where he has been able to apply his expertise in hydrocarbon processing. His work has contributed to advancements in the efficiency and effectiveness of hydrocarbon purification methods.

Collaborations

Weber has collaborated with notable colleagues, including Robert Paul Cossee and Eduard Rudolf Geus. These partnerships have likely enhanced the development and implementation of innovative solutions in the field of hydrocarbon processing.

Conclusion

Cornelis Everardus Weber's contributions to the purification of liquid hydrocarbons demonstrate his commitment to innovation in the energy sector. His patented process represents a significant advancement in addressing the challenges posed by high molecular weight contaminants.

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