Accomplished chemical engineer to lead process development and scale-up of the Company’s green hydrogen technology
Santa Clarita, California, May 20, 2025 (GLOBE NEWSWIRE) — NewHydrogen, Inc. (OTCQB:NEWH), the developer of ThermoLoop
With over 35 years of experience in process development, scale-up, and commercialization, Mr. Narayanan brings deep expertise in chemical process design and innovation. His career spans leadership roles at major institutions including ExxonMobil Research & Engineering and Aspen Technology, where he spearheaded energy efficiency improvements, developed and implemented automated process monitoring systems, and provided technical direction for integrating advanced technologies such as molten carbonate fuel cells.
“Few engineers possess Sundar’s level of practical and technical depth in process development and systems integration,” said Steve Hill, CEO of NewHydrogen. “His experience evaluating, adapting, and commercializing novel technologies aligns perfectly with our mission to deliver the world’s cheapest green hydrogen.”
“I’m excited to join the talented team at NewHydrogen and help advance a truly game-changing technology,” said Narayanan. “Scaling up ThermoLoop
Mr. Narayanan has been a key contributor to several high-impact publications and patents in energy efficiency and emissions reduction, and he continues to consult with cleantech innovators like C-Zero. He holds a B.Tech. in Chemical Engineering from the University of Madras and an M.S. in Chemical Engineering from the University of Akron.
At NewHydrogen, Mr. Narayanan will play a central role in refining and scaling the company’s ThermoLoop
To learn more about NewHydrogen’s work with leading scientists at UC Santa Barbara to develop the world’s cheapest green hydrogen, please visit NewHydrogen.com.
About NewHydrogen, Inc.
NewHydrogen is developing ThermoLoop
Currently, the most common method of making green hydrogen is to split water into oxygen and hydrogen with an electrolyzer using green electricity produced from solar or wind. However, green electricity is and always will be very expensive. It currently accounts for 73% of the cost of green hydrogen. By using heat directly, we can skip the expensive process of making electricity, and fundamentally lower the cost of green hydrogen. Inexpensive heat can be obtained from concentrated solar, geothermal, nuclear reactors and industrial waste heat for use in our novel low-cost thermochemical water splitting process. Working with a world class research team at UC Santa Barbara, our goal is to help usher in the green hydrogen economy that Goldman Sachs estimated to have a future market value of $12 trillion.
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NewHydrogen, Inc.
ir@newhydrogen.com
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