Now Publicly Available
- Stock Symbol: NEWH
Andrew Thomas emphasized the importance of removing commercial and regulatory impediments to speed the adoption of green hydrogen
SANTA CLARITA, Calif. (February 27, 2024) — NewHydrogen, Inc. (OTCMKTS:NEWH), the developer of ThermoLoop™, a breakthrough technology that uses water and heat rather than electricity to produce the world’s cheapest green hydrogen, today announced that in a recent podcast the Company’s CEO Steve Hill spoke with Andrew Thomas, Director of the Energy Policy Center at the Levin College of Public Affairs and Education at Cleveland State University.
Mr. Thomas, a renewable energy advocate, highlighted recent strides in reducing the cost of green hydrogen production, while highlighting pressing challenges in transportation, storage, and regulatory frameworks. "We've seen significant progress in cutting green hydrogen costs, but critical hurdles persist in transportation and regulation," observed Mr. Thomas. "It's imperative we establish infrastructure and regulations comparable to existing natural gas refueling networks."
Mr. Thomas emphasized the pivotal role of government intervention in catalyzing hydrogen demand, particularly within the trucking industry, advocating for incentives to facilitate the establishment of hydrogen refueling stations along key transportation routes. "Government support is paramount in kickstarting hydrogen adoption, especially among long-haul trucking fleets.”
In addition to its environmental benefits, Mr. Thomas highlighted hydrogen's potential to enhance national security and support the digital economy. He pointed to its rapid dispatchability and seasonal storage capabilities as advantages over traditional lithium-ion batteries. "The shift toward clean hydrogen is inevitable. I eagerly anticipate further advancements in green hydrogen technology.”
Andrew Thomas directs the Energy Policy Center at the Levin College of Public Affairs and Education at Cleveland State University. His research focuses on electricity regulation and markets, microgrids, transportation, energy storage, fuel cells, the hydrogen economy, decarbonization and oil and gas development. He also directs the Midwest Hydrogen Center of Excellence. He received his J.D. from Loyola University of New Orleans, where he was a law review editor. He is Chairman of the Ohio Oil and Gas Commission.
Watch the full discussion on the NewHydrogen Podcast featuring Mr. Thomas at https://newhydrogen.com/videos/ceo-podcast/andrew-thomas-cleveland-state-university
For more information about NewHydrogen, please visit https://newhydrogen.com/
NewHydrogen is developing ThermoLoop™ – a breakthrough technology that uses water
and heat rather than electricity to produce the world’s lowest cost green hydrogen. Hydrogen is the
cleanest and most abundant element in the universe, and we can’t live without it. Hydrogen is the
key ingredient in making fertilizers needed to grow food for the world. It is also used for
transportation, refining oil and making steel, glass, pharmaceuticals and more. Nearly all the
hydrogen today is made from hydrocarbons like coal, oil, and natural gas, which are dirty and
limited resources. Water, on the other hand, is an infinite and renewable worldwide resource.
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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