Grand Forks, ND, United States of America

Joshua J Stanislowski



Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Joshua J. Stanislowski in Syngas Cooling Technology

Introduction: Joshua J. Stanislowski, an inventor based in Grand Forks, ND, has made significant strides in the field of energy research. With one patent to his name, he has developed a unique method for cooling syngas, which is crucial for optimizing energy processes. His work emphasizes the importance of innovation in sustainable energy solutions.

Latest Patents: Stanislowski's patent, titled "Cooling syngas via reaction of methane or light hydrocarbons with water," presents various embodiments aimed at enhancing shale gas cooling. The patent describes an effective method that involves contacting hot syngas—comprised of methane, light hydrocarbons, and water—at temperatures ranging from about 800°C to about 3000°C. This innovative process endothermically reacts methane or light hydrocarbons with water in the hot syngas, yielding carbon monoxide and hydrogen while producing a cooled syngas at a lower temperature.

Career Highlights: Joshua currently works at the Energy & Environmental Research Center Foundation. His experience at this reputable institution allows him to contribute effectively to significant advancements in energy research, particularly in syngas technologies. His expertise is invaluable in pushing the boundaries of energy efficiency.

Collaborations: Throughout his career, Stanislowski has collaborated with notable colleagues, including Michael Jerome Holmes and Michael L. Swanson. These collaborations highlight the collective effort in a research environment that fosters innovation and practical solutions for energy challenges.

Conclusion: Joshua J. Stanislowski exemplifies the spirit of innovation in the energy sector. His patented method for cooling syngas reflects a commitment to advancing sustainable practices within energy production. As he continues to collaborate with other experts and researchers, his contributions are sure to leave a lasting impact on the field.

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