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NewHydrogen Reveals Plan for Its Nuclear-Powered Clean Hydrogen Solution to Help Meet $5 Trillion Annual Global Energy Market Demand

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NewHydrogen (OTCQB: NEWH) announced a plan to pair its ThermoLoop™ technology with heat from small modular reactors (SMRs) to produce clean hydrogen at industrial scale (around 1 gigawatt or greater). ThermoLoop uses water and heat instead of electricity for thermochemical water splitting.

According to NewHydrogen, combining ThermoLoop with compact, modular nuclear heat could bypass costly power-grid buildouts and avoid efficiency losses associated with electrolyzers. The company positions this approach to serve heavy industries and help energy‑importing nations enhance energy security within a global energy market projected toward $5 trillion in annual spending.

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The Company is focused on pairing its ThermoLoop technology with heat from small modular reactors to bypass costly power grid buildouts and deliver zero-emission energy at industrial scale

SANTA CLARITA, CA, July 29, 2026 (GLOBE NEWSWIRE) -- NewHydrogen, Inc. (OTCQB: NEWH), the developer of ThermoLoop, a breakthrough technology that uses water and heat instead of electricity to produce clean hydrogen, today revealed its plan to use heat from small modular reactors (SMRs) to produce clean hydrogen at industrial scale (1 Gigawatt or greater).

Pairing ThermoLoop with high-temperature nuclear heat can power thermochemical water splitting, bypassing the grid constraints and high costs associated with other proposed industrial scale clean hydrogen solutions, such as electrolyzers.

According to the World Energy Investment 2025 report by the International Energy Agency (IEA), total annual investment in global energy supply and infrastructure has surpassed $3 Trillion. Furthermore, IEA projects annual spending may surge toward $5 trillion by 2030 under accelerated net-zero scenarios.

Future global energy demand is entering a transformative structural phase that energy analysts call the "Age of Electricity". While overall primary energy demand continues to grow, the type of energy consumed is shifting rapidly toward power grids, driven by structural electrification, digital infrastructure, and climate impacts.

The fastest-growing sub-segment of the global energy market is the energy transition market (renewables, grid storage, electric power infrastructure, clean hydrogen, and carbon management).

NewHydrogen’s development of ThermoLoop converges with a global surge of interest in compact, modular solid-state fission reactors (SMRs). These next-generation units feature passive safety systems, can be manufactured in blocks, and are easily transported to industrial sites. By pairing ThermoLoop with compact nuclear heat, NewHydrogen aims to leverage a continuous, carbon-free energy source capable of delivering the ultra-high temperatures required for highly efficient thermochemical hydrogen production.

"Reaching true industrial scale for clean hydrogen forced us to look beyond power-grid dependence," said Steve Hill, CEO of NewHydrogen. "Using SMRs represents a profound shift, offering safe, continuous, ultra-high-temperature heat. By using this heat to power ThermoLoop, we skip the efficiency losses of electricity conversion needed by electrolyzers. We can produce energy that can be stored, shipped, and used directly in heavy industries like steelmaking, chemicals, and refining that were never built to run on electricity in the first place."

Our strategic pairing of ThermoLoop with SMRs also directly addresses escalating global energy security concerns. Roughly three-quarters of the world's population lives in countries that are net importers of fossil fuels, spending a combined $1.7 trillion in 2024 alone to buy energy from external sources. By leveraging localized, modular nuclear heat to produce clean hydrogen, energy-importing nations can insulate themselves from volatile global fuel prices while establishing national energy independence.

For more information about NewHydrogen, please visit www.newhydrogen.com.

About NewHydrogen, Inc.

NewHydrogen is developing ThermoLoop – a breakthrough technology that uses water and heat rather than electricity to produce the world’s lowest cost clean 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 clean 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 clean hydrogen. By using heat directly, we can skip the expensive process of making electricity and fundamentally lower the cost of clean 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 clean hydrogen economy that Goldman Sachs estimated to have a future market value of $12 trillion.

Safe Harbor Statement

Matters discussed in this press release contain forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. When used in this press release, the words "anticipate," "believe," "estimate," "may," "intend," "expect" and similar expressions identify such forward-looking statements. Actual results, performance or achievements could differ materially from those contemplated, expressed or implied by the forward-looking statements contained herein. These forward-looking statements are based largely on the expectations of the Company and are subject to a number of risks and uncertainties. These include, but are not limited to, risks and uncertainties associated with: the impact of economic, competitive and other factors affecting the Company and its operations, markets, the impact on the national and local economies resulting from terrorist actions, the impact of public health epidemics on the global economy and other factors detailed in reports filed by the Company with the United States Securities and Exchange Commission.

Any forward-looking statement made by us in this press release is based only on information currently available to us and speaks only as of the date on which it is made. We undertake no obligation to publicly update any forward-looking statement, whether written or oral, that may be made from time to time, whether as a result of new information, future developments or otherwise.

Investor Relations Contact:
NewHydrogen, Inc.
ir@newhydrogen.com


FAQ

What nuclear-powered clean hydrogen plan did NewHydrogen (NEWH) announce on July 29, 2026?

NewHydrogen announced a plan to pair its ThermoLoop™ hydrogen technology with heat from small modular reactors (SMRs) to produce clean hydrogen at industrial scale. According to NewHydrogen, this approach targets gigawatt-scale output while bypassing power-grid constraints and high costs linked to other large-scale hydrogen solutions.

How does NewHydrogen’s ThermoLoop™ technology work with small modular reactors to produce hydrogen?

ThermoLoop™ uses water and heat, rather than electricity, to drive thermochemical water splitting for clean hydrogen production. According to NewHydrogen, pairing ThermoLoop with high-temperature SMR heat supplies continuous, carbon-free ultra-high temperatures needed for efficient hydrogen generation without converting heat to electricity first.

What scale of clean hydrogen production is NewHydrogen (NEWH) targeting with its SMR-based solution?

NewHydrogen is targeting industrial-scale clean hydrogen production of about 1 gigawatt or greater using ThermoLoop™ with SMR heat. According to NewHydrogen, this scale is intended to support heavy industries such as steelmaking, chemicals, and refining that are difficult to electrify directly through power grids.

How could NewHydrogen’s SMR-ThermoLoop approach impact global energy security for importing countries?

NewHydrogen believes localized, modular nuclear heat combined with ThermoLoop™ can help countries that import fossil fuels enhance energy independence. According to NewHydrogen, producing clean hydrogen domestically may reduce exposure to volatile global fuel prices and address energy security concerns for nations currently spending heavily on imported energy.

What global energy market figures are referenced in NewHydrogen’s July 2026 hydrogen announcement (NEWH)?

NewHydrogen cites International Energy Agency estimates that annual investment in global energy supply and infrastructure has surpassed $3 trillion. According to NewHydrogen, the IEA also projects annual spending could move toward $5 trillion by 2030 under accelerated net-zero scenarios, framing the potential market context.

Why does NewHydrogen see ThermoLoop™ with SMRs as an alternative to electrolyzers for clean hydrogen?

NewHydrogen views SMR-powered ThermoLoop™ as a way to avoid efficiency losses and grid dependence associated with electrolyzers, which require electricity. According to NewHydrogen, directly using nuclear heat for thermochemical water splitting can bypass costly grid buildouts while delivering zero-emission energy at industrial scale.