Aartselaar, Belgium

Richard Smet


Average Co-Inventor Count = 9.0

ph-index = 1

Forward Citations = 30(Granted Patents)


Company Filing History:


Years Active: 2008

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1 patent (USPTO):Explore Patents

Title: Innovations of Richard Smet: A Pioneer in Carbon Conversion Technology

Introduction

Richard Smet is an innovative inventor based in Aartselaar, Belgium. He holds a patent that showcases his groundbreaking work in converting carbon-containing feedstock into materials with defined nanostructures. His invention is crucial for advancements in the production of carbon black and other carbon-containing compounds, highlighting his significant contributions to sustainable technology.

Latest Patents

Richard Smet's notable patent is titled "Device and method for converting carbon containing feedstock into carbon containing materials, having a defined nanostructure." This patent outlines an advanced apparatus and process for producing carbon black or carbon-containing compounds. The process includes generating a plasma gas using electrical energy, which is guided through a venturi that narrows in the direction of the gas flow. This method ensures that under prevailing flow conditions, there is minimal recirculation of feedstock, effectively recovering the reaction products while separating carbon black from other materials.

Career Highlights

Throughout his career, Richard Smet has demonstrated a strong commitment to innovation within the field of carbon materials. His work at Timcal SA has been instrumental in developing methods that improve the efficiency and effectiveness of carbon production processes. His singular patent reflects his expertise and forward-thinking approach to addressing pressing environmental issues through technology.

Collaborations

Richard collaborates with talented professionals in his field, including Frédéric Fabry and Eusebiu Grivei. These partnerships enhance his inventiveness and bring diverse perspectives into the creation of sustainable technologies. Working with such skilled colleagues further bolsters his ability to innovate and refine his approaches in carbon conversion.

Conclusion

Richard Smet's work is a testament to the potential of innovative technologies in addressing environmental challenges. His unique approach to carbon feedstock conversion represents not just a significant scientific breakthrough but also a practical solution for future sustainable material production. With continued collaboration and innovation, Richard is poised to make further impactful contributions to the industry.

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