Prince George, Canada

Ibrahim Karidio


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 2001

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1 patent (USPTO):Explore Patents

Title: Innovations by Ibrahim Karidio in Combustion Optimization

Introduction

Ibrahim Karidio is an accomplished inventor based in Prince George, Canada. He has made significant contributions to the field of combustion optimization, particularly in the context of power and chemical recovery boilers. His innovative approach aims to enhance boiler efficiency while minimizing environmental impact.

Latest Patents

Ibrahim Karidio holds a patent for a "Method and apparatus for optimizing the combustion air system in a recovery boiler." This invention focuses on improving fluid flow and gas mixing within boilers, which leads to increased capacity and uniform combustion. The method involves a unique interlacing of secondary and tertiary air supplies through opposing air ports on all four walls of the boiler. By alternately adjusting port dampers, the system achieves a balance in primary air flow, ensuring optimal performance and reduced emissions.

Career Highlights

Karidio's work at the Pulp and Paper Research Institute of Canada has positioned him as a key figure in the field of boiler technology. His innovative methods have been recognized for their potential to enhance operational efficiency and reduce environmental impact. With a focus on practical applications, he continues to contribute to advancements in combustion technology.

Collaborations

Ibrahim has collaborated with notable colleagues such as Victor Uloth and Klaus Weiss. Their combined expertise has furthered the development of innovative solutions in the field of combustion optimization.

Conclusion

Ibrahim Karidio's contributions to combustion optimization reflect his commitment to innovation and environmental sustainability. His patented methods demonstrate a significant advancement in boiler technology, showcasing the potential for improved efficiency and reduced emissions in industrial applications.

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