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TOMI Environmental and Carbonium Core Positioned To Play Key Role in The Onshoring of Essential Strategic Materials for Defense and Global Disinfection

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TOMI Environmental Solutions (NASDAQ: TOMZ) and Carbonium Core have signed a definitive agreement, announced June 29, 2026, to merge and align TOMI’s SteraMist disinfection platform with Carbonium’s coal-to-graphite technology. Carbonium is developing processes to convert low-grade U.S. coal into ultra-high-purity, nuclear-grade graphite for 4th-generation reactors, including SMRs, under technology licensed from Oak Ridge National Laboratory.

Carbonium has progressed from lab-scale feasibility to pilot-scale testing at a facility in Oneida, Tennessee, intended to validate the conversion process under realistic operating conditions before planned full-scale commercial production. According to TOMI, Carbonium targets graphite at 99.9% efficiency and is in advanced discussions with U.S. Department of Energy representatives on potential collaboration, positioning the combined company to support domestic supply chains for defense, nuclear energy, and global disinfection applications.

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Positive

  • Definitive merger agreement between TOMI Environmental and Carbonium Core signed June 29, 2026
  • Carbonium has progressed to pilot-scale testing of coal-to-graphite technology in Oneida, Tennessee
  • Target production of ultra-high-purity graphite at 99.9% efficiency for advanced nuclear fuel
  • Carbonium is in advanced discussions with U.S. Department of Energy on potential collaboration
  • Merger expected to align graphite/graphene capabilities with TOMI’s SteraMist disinfection platform

Negative

  • None.

News Market Reaction – TOMZ

-11.39% 5.6x vol
11 alerts
-11.39% Session close to close
-20.3% Trough in 4 hr 59 min
$5.33M Market Cap
5.6x Rel. Volume

In the Jul 20 session, TOMZ declined 11.39%, reflecting a significant negative market reaction. Argus tracked a trough of -20.3% from its starting point during tracking. Our momentum scanner triggered 11 alerts that day, indicating notable trading interest and price volatility. Trading volume was exceptionally heavy at 5.6x the daily average, suggesting significant selling pressure.

Data tracked by StockTitan Argus on the day of publication.

Market Context

The stock dropped -11.4% in the session following this news. Historical event 1079948 recorded a -6%...
Analysis

The stock dropped -11.4% in the session following this news. Historical event 1079948 recorded a -6% 24-hour reaction after a preliminary revenue update. This announcement remains strategic, while TOMZ’s confirmed S-3 shelf is not effective.

Key Figures

Merger agreement date: June 29, 2026 Reactor generation: 4th-generation Graphite efficiency: 99.9%
3 metrics
Merger agreement date June 29, 2026 Definitive agreement between TOMI and Carbonium
Reactor generation 4th-generation Nuclear reactors targeted by Carbonium technology
Graphite efficiency 99.9% Carbonium’s stated graphite delivery efficiency

Historical Context

5 past events · Latest: Jul 09 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jul 09 Revenue update Positive -6.0% Preliminary revenue growth and open orders exceeded full-year 2025 revenue
Jul 07 Graphite strategy Positive +1.2% Carbonium outlined a domestic nuclear-grade graphite supply strategy for AI-driven nuclear demand
Jun 29 Merger agreement Positive +2.6% TOMZ signed a definitive agreement to merge with Carbonium Core
Jun 23 Adoption update Positive +6.0% SteraMist adoption expanded amid Ebola outbreaks and global biosecurity preparedness spending
Jun 17 Certification progress Positive +0.3% TOMI advanced toward NSF certification for its SteraMist decontamination technology

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Most recent TOMZ news reactions were aligned positively, although the July 9 preliminary revenue update diverged with a negative reaction.

Key Terms

ionized hydrogen peroxide, nuclear-grade graphite, small module reactors, neutron moderator
4 terms
ionized hydrogen peroxide technical
"patented SteraMist ionized Hydrogen Peroxide (iHP) technology"
Ionized hydrogen peroxide is a form of hydrogen peroxide that has been electrically charged to create reactive particles. This process enhances its ability to kill germs and break down contaminants, making it more effective for cleaning and disinfecting. For investors, understanding its use and effectiveness can be important when evaluating companies involved in health, sanitation, or innovative cleaning technologies.
nuclear-grade graphite technical
"produce nuclear-grade graphite for 4th-generation nuclear reactors"
Nuclear-grade graphite is a very pure, specially manufactured form of carbon used inside certain types of nuclear reactors to slow neutrons and support reactor structures without introducing radioactive-contaminating impurities. Think of it as the high-grade, precision wood used to build a sensitive instrument: its consistency and low impurities matter for safety, performance and regulatory approval. Investors watch it because limited suppliers, long lead times and strict standards can affect reactor projects, costs and supply-chain risk.
small module reactors technical
"including Small Module Reactors (SMRs)"
Small modular reactors (SMRs) are compact, factory-built nuclear power units designed to be combined or installed individually to generate electricity or heat. Think of them like Lego-sized versions of traditional nuclear plants: smaller, standardized pieces that can be added as demand grows. They matter to investors because their modular design aims to lower upfront construction risk, shorten build times, and enable scalable capital deployment, while still being subject to regulatory approval and long-term operational costs.
neutron moderator technical
"Graphite plays a central role as both a neutron moderator"
A neutron moderator is a material used inside nuclear reactors to slow down fast neutrons produced by fission so they are more likely to cause further fission in fuel; common moderators include water, heavy water, and graphite. For investors, the choice of moderator affects reactor type, fuel efficiency, safety margins, regulatory requirements, construction complexity, and operating costs—similar to how different road surfaces change a car’s speed, fuel use, and maintenance needs.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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FREDERICK, Md., July 20, 2026 (GLOBE NEWSWIRE) -- TOMI Environmental Solutions, Inc. (NASDAQ: TOMZ) (“TOMI”), the leader in decontamination equipment and services with its patented SteraMist ionized Hydrogen Peroxide (iHP) technology, and Carbonium Core, Inc (“Carbonium”), a leader in transforming low-grade coal into ultra-high-purity graphite, today provided updates on Carbonium’s business. On June 29, 2026, TOMI and Carbonium announced the signing of a definitive agreement to complete a merger between the two companies.

In a few short years, the process of manufacturing nuclear grade graphite from coal in the U.S. is projected to provide Carbonium Core with a significant source of sales and revenue. Oak Ridge National Laboratory (ORNL) has focused on alternative uses of coal, particularly conversion into value added products such as high-purity graphite. This coal to graphite conversion exemplifies ORNL’s mission of transforming abundant domestic resources into strategic, high value materials through technological innovation.

The United States Department of Energy, through the former Fossil Energy and Carbon Management (FECM) Office, and the current Hydrocarbon and Geothermal Energy Office (HGEO) have been sponsoring ORNL’s Coal-to-Production projects to address critical supply chain vulnerabilities and create high-value applications for domestic coal resources. HGEO’s mission is to unleash the full potential of America’s hydrocarbon and geothermal resources to provide affordable, reliable, and secure energy.

Carbonium is developing technology intended to produce nuclear-grade graphite for 4th-generation nuclear reactors, including Small Module Reactors (SMRs), and it focuses on establishing secure, domestic supply chains by converting U.S. source carbon feed stock into ultra-pure graphite, through the licensing of ORNL’s technology. Early feasibility of the conversion process was proven in lab-scale settings that focused on methodology development, formulation screening, and small-scale experiments to shape the hypothesis and refine protocols.

After successful lab-scale discovery and early R&D, Carbonium has moved to pilot-scale testing to bridge the gap between R&D and production. The pilot office is currently located in Oneida, Tennessee and will be the location to test and validate the conversion process under realistic operating conditions. Carbonium is expected to produce higher volume, use modular or semi-automated systems, focus on reproducibility and process optimization, increasing regulatory and quality control requirements and stress test the process design and scale-up feasibility.

After a short pilot study, Carbonium plans to move to full-scale commercial production, which will include production of high-volume batches, high integration and automation, dedicated infrastructure and quality assurance systems, comprehensive regulatory, compliance, and minimal tolerance for any deviation of variability. Given that Carbonium is currently engaged in advanced discussions with representatives of the U.S. Department of Energy regarding potential collaboration related to its coal-to-graphite technology, its activities will be under the observation of Oak Ridge Nuclear lab and the U.S. Department of Energy.

The U.S. has historically relied on uranium and graphite imports from several nations, including Russia and China, respectively. Geopolitical tensions and subsequent legislative restrictions have halted some supplies, prompting a strategic shift toward domestic production of uranium kernels and nuclear grade graphite. These advanced fuel designs rely on high-purity graphite layers to encapsulate fuel particles, providing robust barriers that protect the environment and maintain reactor integrity. Carbonium’s ability to deliver graphite at 99.9% efficiency directly supports this national priority by enabling safer and more resilient domestic fuel cycles.

As global electricity demand accelerates—driven by the explosive growth of artificial intelligence, data centers, and electrification—safe nuclear power is positioned to become the backbone of reliable, carbon-free baseload energy. Advanced reactors require specialized materials to manage extreme temperatures and contain fission processes. Graphite plays a central role as both a neutron moderator and a protective coating in fuel forms, helping regulate core temperatures, prevent material degradation, and contain radioactive particles even under fault conditions.

Senator Ken Yager, from the State of Tennessee stated, “Carbonium Core’s decision to invest in East Tennessee is an exciting step forward for economic growth and future opportunity. This project represents supply chain innovation, job creation, and continued confidence in the strength of our workforce and communities. I am proud to welcome Carbonium Core to Tennessee and look forward to seeing the positive impact the industry will bring for years to come.”

Senator Jessie Seal, representing the 8th Senatorial District for the State of Tennessee stated, “I want to be among the first to welcome Carbonium Core to Tennessee, especially to the Cumberland Gap Region. This upcoming manufacturing unit is a major win for a local community. This development will bring many quality jobs, outstanding economic growth, and new opportunities for our communities. I would like to offer my full support to Carbonium Core and I look forward to working closely with them to ensure everyone’s long-term success.”

Dr Halden Shane, CEO of TOMI Environmental Solutions stated, “The synergies and economies of scale are the central motive for the merger and acquisition of Carbonium Core. The synergy to have production of graphene and lithium play a vital role in our ability to move forward on our plans to create worldwide ability for the disinfection of autogenous vehicles, robotic disinfection and drone production for biosecurity with our branded SteraMist product line. Our U.S. supply risks are very high for graphite, a critical raw material used in defense applications. Graphite is needed for fighter aircraft, battle tanks, submarines, artillery, ships, and ammunition, and Carbonium Core believes it will be able to fulfill those critical role material shortages with U.S. produced products. Both our companies are happy to be able to support the United States of America in bringing back manufacturing to the homeland in creating essential strategic materials for the defense and global disinfection of the world.”

About Carbonium Core

Carbonium Core, Inc. is a U.S.-based development company focused on the domestic manufacture of graphite and rare earth metals for advanced reactor, defense, aerospace, and critical infrastructure markets. The company is pursuing a vertically integrated strategy that includes feedstock sourcing, purification, graphitization, shaping, and delivery of high-performance materials for next-generation energy applications.

For additional information, please visit https://carboniumcore.com or contact us at https://carboniumcore.com

About TOMI Environmental Solutions

TOMI Environmental Solutions, Inc. (NASDAQ: TOMZ) is a global provider of decontamination, disinfection, and environmental solutions. Following the completion of the Carbonium Core transaction, the combined company intends to pursue opportunities in advanced nuclear materials and critical infrastructure supply chains while continuing to evaluate strategic opportunities across its existing businesses.

For additional information, please visit www.steramist.com or contact us at info@tomimist.com

There can be no assurance that discussions with the U.S. Department of Energy will result in any agreement or other arrangement.

Forward-Looking Statements

This press release contains forward-looking statements, including statements regarding trends in the U.S. nuclear energy industry; Carbonium’s ability to generate sales and revenues; merger between TOMI and Carbonium and benefits to TOMI shareholders; Carbonium’s business opportunities; industry forecast and growth expectation. Forward-looking statements can often be identified by words such as anticipates, intends, plans, believes, expects, may, will, and similar expressions. Actual results may differ materially from those projected due to a variety of risks and uncertainties, including the ability to complete financing for the merger, the pace of advanced reactor deployment, the combined company's ability to develop and scale manufacturing capabilities, compliance with NASDAQ listing application, and competition, regulatory developments, and general economic and market conditions. These statements speak only as of the date of this release, and the company undertakes no obligation to update them except as required by law.

Media and Investor Contact: 
John Nesbett/Zach Nevas
IMS Investor Relations
tomi@imsinvestorrelations.com


FAQ

What is the TOMI Environmental (NASDAQ: TOMZ) merger with Carbonium Core announced in 2026?

TOMI Environmental and Carbonium Core signed a definitive merger agreement on June 29, 2026. According to TOMI, the deal combines SteraMist disinfection technology with Carbonium’s coal-to-graphite platform to support domestic supply of strategic materials for defense, nuclear energy, and biosecurity applications.

How will Carbonium Core’s coal-to-graphite technology benefit TOMI Environmental (TOMZ) after the merger?

Carbonium’s technology aims to convert low-grade U.S. coal into ultra-high-purity, nuclear-grade graphite. According to TOMI, integrating this capability should support domestic supply chains and feed graphene and lithium-related materials needed for advanced disinfection, autonomous vehicles, robotics, and drone-based biosecurity solutions.

What production stage has Carbonium Core reached in its coal-to-graphite project as of July 2026?

Carbonium has moved from lab-scale feasibility to pilot-scale testing of its coal-to-graphite process. According to TOMI, the pilot facility in Oneida, Tennessee is intended to validate performance under realistic conditions before a planned transition to full-scale commercial production and higher-volume batches.

Why is ultra-high-purity graphite important for defense and nuclear energy, according to TOMI (TOMZ)?

Ultra-high-purity graphite is used in advanced nuclear fuels and many defense systems. According to TOMI, Carbonium targets 99.9% efficient graphite, which supports small modular reactors and critical defense applications such as aircraft, tanks, submarines, artillery, ships, and ammunition.

How is TOMI Environmental positioning itself in U.S. onshoring of strategic materials with ticker TOMZ?

Through its planned merger with Carbonium, TOMI expects to participate in onshoring nuclear-grade graphite and related materials. According to TOMI, this strategy supports domestic supply for defense, nuclear power, and global disinfection, reducing reliance on foreign graphite and enhancing security of supply.

Is Carbonium Core working with the U.S. Department of Energy on its graphite technology?

Carbonium is in advanced discussions with representatives of the U.S. Department of Energy about potential collaboration. According to TOMI, Carbonium’s activities are under observation by Oak Ridge National Laboratory and the Department of Energy as part of efforts to secure domestic coal-to-graphite supply chains.