Montgomery, IL, United States of America

Penelope Stamatakis


Average Co-Inventor Count = 4.0

ph-index = 2

Forward Citations = 24(Granted Patents)


Company Filing History:


Years Active: 2009-2010

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2 patents (USPTO):Explore Patents

Title: Penelope Stamatakis: Innovator in Selective Catalytic Reduction Technology

Introduction

Penelope Stamatakis is a notable inventor based in Montgomery, IL (US). She has made significant contributions to the field of environmental technology, particularly in the area of selective catalytic reduction (SCR) processes. With a total of 2 patents to her name, her work focuses on improving the efficiency of NO reduction in various applications.

Latest Patents

Stamatakis' latest patents involve innovative processes and apparatuses for selective catalytic reduction of nitrogen oxides (NO). One of her patents discloses a method that enables NO reduction even at low load conditions by bypassing a heat exchanger section, such as an economizer, of the boiler in advance of an SCR unit. This process utilizes urea instead of ammonia, allowing for effective NO reduction. Under high load conditions, the bypass can be almost fully closed, enabling the economizer to operate normally without excessively cooling the combustion gases. This method uses only a portion of bypassed gases that are hot enough to decompose the urea into its active components, including ammonia.

Career Highlights

Stamatakis is currently employed at Fuel Tech, Inc., where she continues to develop and refine her innovative technologies. Her work has been instrumental in advancing the field of environmental engineering, particularly in reducing harmful emissions from industrial processes.

Collaborations

Some of her notable coworkers include M Linda Lin and William H Sun, who contribute to the collaborative efforts at Fuel Tech, Inc. Together, they work on various projects aimed at enhancing environmental sustainability through innovative technologies.

Conclusion

Penelope Stamatakis is a pioneering inventor whose work in selective catalytic reduction technology has the potential to significantly impact environmental engineering. Her contributions are vital in the ongoing efforts to reduce nitrogen oxide emissions and promote cleaner industrial practices.

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