LENR Forum September 2026 Newsletter

A monthly round-up of the best of LENR-Forum, LENR research, CMNS papers, patents, media, videos, and emerging-energy news.

Your Source for Open Science and Emerging Energy Technology


September was dominated by the 27th International Conference on Condensed Matter Nuclear Science (ICCF-27) in Niagara Falls, Canada.

Researchers, companies and members of the CMNS community gathered from August 31 through September 4 to present work spanning anomalous heat, calorimetry, electron screening, nuclear diagnostics, hydrogen-loaded materials, Lattice Confinement Fusion (LCF), materials science, theory, replication and commercialization.

The Solid State Fusion Discovery team provided on-location reporting and filming, allowing conference presentations and discussions to circulate rapidly through the wider community and on LENR-Forum.

Several September developments followed directly from the meeting. HYLENR reported Phase 1 testing at Texas A&M and discussed unusual post-operation elemental signatures. Clean Planet added another strategic industrial investor. ENG8 continued its transition toward industrial trials. New Hydrogen Fusion Energy, Aureon Energy and Prometheus provided research or commercialization updates. New peer-reviewed and theoretical work also appeared on coherent proton behavior in hydrogen-loaded metals and on the evolution of palladium surfaces during hydride formation.

September also brought the public release of Project Callisto, a privately funded 2015–2024 experimental program reporting extensive null results from attempts to reproduce anomalous heat. The technical reports add an important negative-result record to the field, although the public release does not appear to include the complete underlying raw datasets and analysis code needed for full independent numerical reanalysis.

Taken together, the month’s developments reinforce an increasingly important direction for CMNS:

material state, experimental controls, nuclear diagnostics, open data and independent replication are becoming at least as important as the observation of an anomaly itself.

This newsletter is updated through September 28, 2026.

LENR-News

LENR-Forum


LENR Commercial News:

1.) Clean Planet receives strategic investment from Gas One Holdings

On September 10, Clean Planet announced that Gas One Holdings had made a strategic investment in the company.

Gas One Group operates LP gas, city gas, electricity and industrial-gas businesses in Japan and overseas. The companies say the relationship is intended to support future deployment of Clean Planet’s Quantum Hydrogen Energy (QHe) technology while developing a stable hydrogen-supply infrastructure capable of supporting commercial QHe systems.

The announcement follows the TANAKA Precious Metals investment reported in our August newsletter and adds another established industrial-energy partner to Clean Planet’s commercialization network.

Sources:

Clean Planet – September news

PR TIMES – Gas One Holdings Makes Strategic Investment in Clean Planet

Readers note: investment and industrial partnerships are meaningful commercialization milestones, but they do not by themselves constitute independent validation of QHe performance.

2.) HYLENR reports unusual elemental signatures and completes Phase 1 testing at Texas A&M

HYLENR generated two major September announcements around its hydrogen-loaded Ni-Pd Lattice Confinement Fusion program.

On September 9, the company reported post-operation analytical signals corresponding to numerous elements, including noble gases and species that HYLENR described as rare-earth or strategic-material signatures.

HYLENR says multiple analytical methods were used, including EDX, XPS, ICP-OES, WDX and residual-gas analysis. Related work was presented at ICCF-27 under the title:

Nuclear Signatures in a Hydrogen-Loaded Ni-Pd Lattice Confinement System

The company interprets the observations as possible evidence of elemental formation or nucleosynthesis.

That interpretation remains a consequential research claim rather than an established conclusion. Elemental signatures by themselves do not demonstrate transmutation; contamination, redistribution of existing material, analytical artefacts, blanks and isotope-ratio measurements all need to be resolved.

On September 22, HYLENR announced completion of Phase 1 testing of its BRT-NiUCS-2 reactor at Texas A&M University’s Nuclear Engineering Department.

According to the company, the testing examined thermal behavior, noble-gas signatures and post-operation material changes in hydrogen-loaded nickel-palladium catalyst systems. HYLENR says Phase 2 will place greater emphasis on reproducibility, quantitative measurement and commercialization.

HYLENR’s press release describes the study as an independent validation. Because HYLENR participated in the project and we have not identified a peer-reviewed journal publication of the Phase 1 study, we use the narrower description: Phase 1 testing performed at Texas A&M.

Sources:

HYLENR – Rare-earth / elemental-signature announcement

HYLENR – Phase 1 testing at Texas A&M

ICCF-27 official program

Readers note: HYLENR’s nuclear and elemental-formation interpretations remain company/research-team claims pending fuller publication, isotope-specific analysis and independent replication.

3.) ENG8 hosts live EnergiCell demonstration as industrial trials approach

On September 2, ENG8’s co-founders hosted an online commercialisation briefing that included a live demonstration of the company’s current EnergiCell.

The session was promoted as an update on ENG8’s first industrial deployment, technology development, commercial economics and the transition from laboratory testing toward customer-site trials.

ENG8 entered September after announcing selection for Tech Foundry Portugal — Deep Tech Edition and the start of work connected with its first industrial trial.

The company says a 100 kW EnergiCell is being prepared for a ceramics production line in Aveiro, Portugal, under a letter of intent with Primus Ceramics. It also won PRIO’s JumpStart 2026 program, which includes a funded 100 kW industrial pilot.

ENG8 continues to state that it expects first commercial energy sales in Q4 2026.

These industrial trials are more important than laboratory COP claims alone because they create an opportunity to evaluate sustained operation, durability, full input/output power accounting and performance in a real production environment.

Sources:

ENG8 – Live Technology Demonstration, September 2

ENG8 – Tech Foundry Portugal / first industrial trial

ENG8 – Portuguese ceramics industrial trial

Readers note: ENG8’s energy-gain and reaction-mechanism statements remain company claims unless supported by independently available test data.

4.) Aureon Energy presents Th-232 reactor commercialization update at ICCF-27

Aureon Energy returned to ICCF with the presentation:

Commercialization of Aureon Th232 Reactor

The September 4 presentation was authored by Montgomery Childs, Michael Clarage, Jano Onderco, Jason Lickver and Paul Anderson.

Solid State Fusion’s conference reporting describes Aureon’s presentation as covering reactor development, electromagnetic stimulation, reported transmutation-related observations and possible applications involving radioactive materials.

Aureon’s nuclear interpretations remain company research claims and should be evaluated against complete experimental data, isotope and nuclear-product balances and independent replication.

Sources:

ICCF-27 official program

Solid State Fusion Discovery – On the Ground at ICCF-27

YouTube – Aureon Energy update

5.) New Hydrogen Fusion Energy presents progress at ICCF-27

Akito Takahashi and the New Hydrogen Fusion Energy (NHFE) team presented:

Progress of New Hydrogen Fusion Energy

at ICCF-27 on September 2.

The presentation follows Takahashi’s August technical report on the 4H/TSC model and continues NHFE’s work on anomalous heat generation using nanostructured catalyst materials with ordinary hydrogen.

The presentation includes experimental and theoretical updates and forms part of NHFE’s continuing effort to connect reported long-duration heat production with the group’s tetrahedral symmetric condensate / weak-interaction framework.

NHFE-related media also circulated during September showing a prototype room-heating application based on the group’s light-hydrogen energy research.

Sources:

NHFE – ICCF-27 presentation PDF, via LENR-Forum

YouTube – NHFE ICCF-27 presentation

ICCF-27 official program

Readers note: NHFE’s excess-heat measurements and reaction-mechanism interpretations remain experimental/theoretical claims requiring independent replication.

6.) Prometheus discusses company progress during ICCF-27 panel

Prometheus CEO Petrucci discussed the company during an ICCF-27 panel session.

LENR-Forum discussion of the panel notes Petrucci’s comments about the company’s theoretical work and interactions with Italian nuclear institutions, including preparation of a substantial written treatment of its hypothesis.

Until that document becomes publicly available, this is best treated as a conference/company update rather than a published technical result.

Sources:

YouTube – ICCF-27 panel discussion

LENR-Forum – ICCF-27 discussion


Papers:

1.) Coherent Oscillations of Protons in Hydrogen-Loaded Metals

Giovanni Modanese Quantum Reports Volume 8, Issue 3, Article 95 Published September 10, 2026 DOI: 10.3390/quantum8030095

Modanese reviews calculations and numerical simulations describing possible coherent states of protons in hydrogen-loaded metals with cubic crystal lattices.

The characteristic proton, plasma and confined electromagnetic frequencies discussed are in the approximate range:

10¹³–10¹⁴ Hz

The paper examines whether collective proton excitations could potentially enable electron-capture processes followed by slow-neutron generation.

Importantly, the author explicitly states that the model does not yet establish whether realistic pumping can populate the required collective states with sufficient probability, nor establish a practical pump-to-capture efficiency.

This distinction matters. The paper develops a possible theoretical ingredient rather than claiming an experimentally established LENR mechanism.

Source:

Quantum Reports – Coherent Oscillations of Protons in Hydrogen-Loaded Metals

2.) The Main Mystery of LENR: Nuclear Interactions at Atomic Distances

Vladislav Zhigalov Preprint September 2026 DOI: 10.13140/RG.2.2.12678.33600

Zhigalov argues that describing LENR only as low-energy fusion between hydrogen nuclei may be too restrictive.

The preprint examines reports interpreted as collective rearrangements of nucleons among nuclei initially separated by approximately atomic-scale distances, together with questions surrounding metastability, delayed effects and reported transmutations.

Zhigalov presented a related ICCF-27 talk on September 3:

LENR’s main puzzle: nuclear interactions at atomic distances

Sources:

ResearchGate – The Main Mystery of LENR

ICCF-27 official program

Readers note: this is a theoretical preprint, not a peer-reviewed experimental demonstration.

3.) Observation of Anomalous Gamma-Ray and Neutron Emissions from ⁶Li-doped Palladium under Hydrogen and Deuterium Loading

Kazuo Ooyama Research Square preprint Originally posted earlier in 2026; newly discussed during September

Ooyama reports experiments using ⁶Li-ion-implanted palladium and an alpha-particle source.

In the hydrogen-loaded system, the author reports sustained gamma-detector activity. In the deuterium-loaded system, the paper reports a large short-duration neutron-detector response followed by smaller events.

Ooyama interprets the observations as potentially consistent with a chain-amplification process inside the metal lattice.

The reported neutron response is a consequential claim and requires careful evaluation of detector response, saturation behavior, electromagnetic interference, backgrounds, geometry, calibration and independent reproduction.

Source:

Research Square – Observation of Anomalous Gamma-Ray and Neutron Emissions from ⁶Li-doped Palladium

Readers note: this is a preprint that predates September. It is included because it became a significant discussion item this month rather than because it was newly published.

4.) Calorimetric evidence for excess heat generation in a proton–LaB₆ glow-discharge system

Chia-Yi Chen et al. Scientific Reports Published July 17, 2026

This peer-reviewed paper predates September but became more visible around ICCF-27 and renewed public discussion of Alpha Ring.

The researchers investigated a high-power proton–LaB₆ glow-discharge system under low-pressure hydrogen and report periods in which measured thermal output exceeded measured electrical input under selected prolonged-discharge conditions.

The paper reports repeated calorimeter calibration, continuous monitoring of electrical input and cooling-water thermal output, tungsten-cathode controls and post-run material characterization.

The authors also state that the physical origin of the reported excess energy remains unresolved.

All authors are officers, employees or affiliates of Alpha Ring International, and the paper carries a competing-interests disclosure. That does not invalidate the work, but it means this is not an independent replication of an outside system.

Source:

Scientific Reports – Calorimetric evidence for excess heat generation in a proton–LaB₆ glow-discharge system

Readers note: this is a July publication included as an ICCF-27-related catch-up item, not a newly published September paper.


Patents:

1.) American Fusion expands Texatron portfolio to 151 pending U.S. patent applications

On September 22, American Fusion announced another 21 U.S. patent applications, bringing its stated total to:

151 pending U.S. patent applications

The company says the new filings extend protection around additional Texatron configurations, confinement structures, toroidal chamber designs, electromagnetic structures and D–³He fuel-injection architectures.

American Fusion also reports continued Texatron testing and says it is pursuing a dedicated testing facility.

American Fusion is an adjacent conventional/pulsed-fusion company rather than a traditional LENR program, but its unusually rapid patent-development program has been followed in earlier newsletters.

Source:

American Fusion – September 22 patent and corporate update

Readers note: these are pending patent applications, not 151 granted patents, and patent-filing volume does not establish reactor performance.

Call for patent submissions

If you have newly published LENR, LANR, SSF, LCF, CMNS, metal-hydrogen, transmutation, direct-energy-conversion or related patent numbers from USPTO, WIPO, EPO, JPO, CNIPA or other patent offices, post them to the newsletter suggestion thread.

LENR-Forum Newsletter thread


In the Media:

1.) New Fire Energy follows Clean Planet’s commercialization push

On September 14, New Fire Energy published:

Clean Planet Moves Deeper Into Commercialization

The article examines Clean Planet’s recent investments, industrial relationships, demonstration planning and preparation for larger-scale deployment.

Its central observation is that Clean Planet’s public activity is increasingly centered on the infrastructure necessary for commercialization rather than another isolated laboratory result.

Source:

New Fire Energy – Clean Planet Moves Deeper Into Commercialization

2.) New Fire Energy: The Metal May Be the Machine

A second September New Fire article takes a materials-first look at the physics often discussed around LENR:

  • electron screening;
  • quantum tunneling;
  • coherent states;
  • defects;
  • interfaces;
  • hydrogen-loaded metals;
  • and material-dependent nuclear-reaction enhancement.

Source:

New Fire Energy – The Hidden Physics of LENR: The Metal May Be the Machine

3.) HYLENR receives wider media coverage following ICCF-27

HYLENR’s reports of unusual heat and post-operation elemental signatures received broader Indian media attention during September.

The coverage focuses especially on the company’s interpretation of rare-earth and other elemental signals as possible evidence of nucleosynthesis.

As with HYLENR’s own announcements, that interpretation should remain distinct from the analytical detection itself until isotope-level measurements, controls and independent reproduction are available.

Source:

Times of India – HYLENR reports unusual heat and rare-earth findings

4.) New Hydrogen Fusion Energy displays prototype room warmer

New Hydrogen Fusion Energy received Japanese media coverage after exhibiting a prototype room-heating device based on its light-hydrogen research.

The prototype is an application demonstration rather than independent verification of NHFE’s proposed nuclear mechanism.

Source:

APOC Wire – NHFE prototype room warmer

5.) Alpha Ring resurfaces at ICCF-27 after a quieter period

Alpha Ring International returned to broader CMNS attention during ICCF-27 after a comparatively quiet period in public LENR discussion.

A recent Taiwan Business TOPICS profile describes the company’s longer-term strategy around fusion research, workforce development and supply-chain building in Taiwan. 

The article predates ICCF-27, but the company’s conference presence and the renewed attention around its peer-reviewed proton–LaB₆ calorimetry make it useful September context.

The company-associated Scientific Reports calorimetry paper is discussed separately in the Papers section above.

Source:

Taiwan Business TOPICS – Alpha Ring Creates Roadmap for Commercializing Fusion Worldwide

6.) Commercial LENR landscape receives broader attention

EnergyStartups published an updated overview of companies it groups under cold fusion / LENR.

Lists are useful for tracking activity across the commercial landscape, but the companies included operate under substantially different physical models, evidence levels, experimental methods, and commercialization maturity.

Source:

EnergyStartups – Cold Fusion / LENR companies


Videos Worth Watching:

1.) ICCF-27 – Solid State Fusion coverage

The Solid State Fusion team attended ICCF-27 and rapidly began publishing conference footage, interviews and presentation material.

The recordings are particularly useful because many ICCF presentations do not immediately appear as journal papers or formal conference proceedings.

Sources:

Solid State Fusion Discovery – On the Ground at ICCF-27

ICCF-27 video

ICCF-27 panel discussion

Additional ICCF-27 video


LENR-Forum – ICCF-27 discussion and video links

2.) LENR suppression disclosure video interview with Paul Werbos, Jean-Paul Biberian, and Francesco Celani

The Martin Fleischmann Memorial Project with host Marc Fleury shared a video discussion with Paul Webos on his experience with the field of LENR “Cold Fusion.”

Watch on Youtube

3.) Aureon Energy update

Aureon’s September video circulated after the company’s ICCF-27 commercialization presentation.

Watch on YouTube

4.) New Hydrogen Fusion Energy — ICCF-27

NHFE’s ICCF-27 presentation provides a direct look at the experimental and theoretical program behind its New Hydrogen Fusion Energy work.

Watch on YouTube

5.) Malcolm Bendall / Thunderstorm Generator review

A September video reviews Malcolm Bendall’s earlier energy-investment project and examines claims surrounding the current Thunderstorm Generator.

Readers notes: We should distinguish critical commentary and historical review from primary experimental evidence. To date, Mr. Bendall has yet to give water samples analysis of his “Bubbler” or exhaust captured spectral analysis for public review.

Watch on YouTube


Good To Know:

1.) Conventional materials science: palladium hydride formation can reconstruct Pd surfaces

A new peer-reviewed Nature Communications paper provides unusually relevant conventional materials-science context for CMNS researchers.

Raju Lipin et al.

Hydride-induced palladium self-diffusion and surface restructuring on Pd(111)

Published September 15, 2026

Using density-functional theory and molecular-dynamics simulations, the authors find that subsurface hydride formation can significantly reduce barriers to palladium-atom migration.

At sufficiently high hydrogen concentration, the simulations show surface reconstruction, dislocation and defect formation as the Pd-H lattice relaxes. The paper reports that at least three subsurface hydride layers were needed for observable reconstruction in the modeled systems.

The article also provides supplementary material and source data.

This is not an LENR paper and reports no anomalous heat or nuclear reaction.

Its relevance is materials science: palladium does not remain structurally static during hydrogen loading. Hydride formation itself can create and reorganize defects and surfaces—the same broad classes of variables frequently discussed in LENR reproducibility and Nuclear Active Environment debates.

Source:

Nature Communications – Hydride-induced palladium self-diffusion and surface restructuring on Pd(111)

2.) ICCF-27 emphasizes parameter mapping, controls and better-characterized experiments

One of the most consequential themes at ICCF-27 was not a single claimed reaction but the growing emphasis on materials characterization, parameter mapping, controls and diagnostic rigor.

The official program included:

  • Observation of Heat Bursts during Electrolysis of Palladium in Heavy Water
  • Dynamic Closed-Loop Calorimetry for Evaluation of Temperature-Dependent Thermal Performance in Hydrogen-Loaded Ni-Pd Systems
  • Investigation of electron screening effect in metallic alloys for Low-Energy Nuclear Reactions
  • Multi-State Fusion: Inertial Electrostatic Confinement Fusion Combined with Lattice Confinement Fusion to Enhance Neutron Production Rates
  • Ni/H Co-deposition with Subsequent Detection of Spontaneous Voltage and High Energy Charged Particles
  • Study of LENR Scaling Law on a PVR (Plasma Vortex Reactor)
  • Nuclear Signatures in a Hydrogen-Loaded Ni-Pd Lattice Confinement System

This broadening toward defined variables, calibrated diagnostics and mapped experimental conditions may ultimately be more important than any individual positive results on their own.

Sources:

ICCF-27 official program

Solid State Fusion Discovery – On the Ground at ICCF-27

3.) Project Callisto publishes a large LENR null-result technical record

On September 8, Project Callisto publicly released technical reports describing a privately funded LENR research program conducted from 2015 through 2024.

Callisto says more than 100 scientists, engineers, technicians and operations personnel contributed. Its electrochemical effort investigated more than 500 samples and accumulated more than 200,000 sample-hours of calorimetry, while a separate high-pressure program explored hydrogen/deuterium loading and multiple proposed stimulation methods.

Callisto reports:

no reproducible anomalous heat effect within the experimental parameter spaces it investigated.

The project says several apparent positive signals were eventually attributed to conventional effects such as calorimeter response, electrical-power accounting, recombination, sensor problems, contamination or handling damage. A small number of pressure-program observations remained unresolved but were not repeatable.

The scale of the program makes the release worth studying, but there is an important limitation for independent evaluation. Callisto provides large technical reports, apparatus descriptions, figures, selected traces and supporting experiment lists; we have not identified a public repository containing the complete run-by-run raw datasets and analysis code required for a full independent numerical reanalysis of the program.

That distinction does not invalidate the reported null results. It does mean the release should be distinguished from a fully open-data experimental record. Callisto also acknowledges that it did not test every possible LENR parameter regime.

Sources:

Project Callisto – complete public technical record

LENR-Forum – Project Callisto discussion

Readers note: negative results are scientifically useful. Their evidentiary value, like positive results, becomes stronger when raw data, calibration records and processing methods are openly available for independent examination.

4.) Robert Woudenberg highlights work-function differences as a possible LENR pre-condition

At ICCF-27, Robert Woudenberg presented a theoretical study focused on the possible role of work-function differences in establishing electrostatic conditions relevant to LENR.

The presentation explicitly distinguishes itself from a complete theory of fusion or transmutation.

Its purpose is narrower: to examine whether material combinations with different work functions could generate local electrostatic conditions that deserve greater attention when designing LENR experiments.

Source:

ICCF-27 – Role of Work Function Differences in LENR Research


Community Events and Notices:

1.) ICCF-27 concludes in Niagara Falls

The 27th International Conference on Condensed Matter Nuclear Science concluded on September 4 after five days of technical presentations, posters, discussions and community meetings.

Solid State Fusion’s on-location reporting highlighted renewed attention to:

  • reproducible calorimetry;
  • electron-screening measurements;
  • nuclear diagnostics and detector calibration;
  • hydrogen/deuterium loading and material preparation;
  • Lattice Confinement Fusion and Multi-State Fusion;
  • commercial-development programs;
  • archiving and historical preservation;
  • and attempts to connect material structure with reported nuclear anomalies.

Solid State Fusion says additional video recordings and conference material will continue to appear following the meeting.

Sources:

ICCF-27 official program

Solid State Fusion Discovery – On the Ground at ICCF-27: A Week in Niagara Falls

LENR-Forum – ICCF-27

2.) Ed Storms further develops his Nuclear Active Environment proposal

The Storms NAE GAP SIZE discussion remained one of LENR-Forum’s most active technical threads during September.

On September 15–16, Ed Storms responded in detail to questions asking him to define the proposed Nuclear Active Environment (NAE) in physical and experimentally measurable terms and to describe how an experimenter might attempt to create the required conditions deliberately.

Storms’ replies further refine his working model involving nanoscale gaps or flaws, hydrogen behavior and material preparation.

The proposal remains an evolving hypothesis rather than an established LENR mechanism, but the discussion is useful because it attempts to translate a theoretical idea into specific material conditions that can be tested.

By September 24, the Forum index showed the thread at approximately 1,200 replies and 34,000 views, making it one of the site’s most sustained technical discussions of 2026.

Sources:

LENR-Forum – September 15 question to Storms

LENR-Forum – Storms response

LENR-Forum – continued Storms discussion

3.) Gene Mallove / Infinite Energy archive preserved online

Stephen B. Krivit announced the Gene Mallove Infinite Energy Archive, preserving historical issues of Infinite Energy magazine.

The announcement came at the end of August but circulated widely through the LENR community during September.

The archive provides a useful historical record of research reports, interviews, commentary and technical debate from an important period in the field.

Source:

New Energy Times – Announcing the Gene Mallove Infinite Energy Archive

4.) Clean Planet CEO to speak at Munakata International Environmental Conference

Clean Planet says CEO Hideki Yoshino will participate on October 26 in Session 2:

A New Energy Society

at the 13th Munakata International Environmental Conference in Fukuoka Prefecture, Japan.

Source:

Clean Planet – September event notice


Editorial Notes:

ICCF-27 made one trend especially clear, the discussion surrounding LENR and CMNS is increasingly shifting from the simple question of whether an anomalous effect has been reported toward the harder question of,

What physical state of matter and energy produced it?

It is of the author’s editors opinion that this change is significant.

Several presentations emphasized electron screening, material defects, interfaces, hydrogen concentration, work-function differences, calorimetric controls and nuclear diagnostics.

Conventional materials science is moving in a similar direction. The new Nature Communications work showing hydride-driven palladium diffusion and surface restructuring reminds us that hydrogen-loaded metals are dynamic systems rather than static nuclear targets.

Giovanni Modanese’s new theoretical paper asks whether coherent proton states in hydrogen-loaded metals could provide additional collective pathways.

Ed Storms continues trying to express his Nuclear Active Environment hypothesis as experimentally measurable in material terms.

ICCF-27 presentations increasingly emphasized defined parameters, calibrated inputs and measurable outputs.

Project Callisto adds a substantial negative-result record to that discussion and reinforces the value of well-documented null results. The absence of an identified public repository for its complete raw experimental record also illustrates why open data should become an increasingly important standard for both positive and negative LENR claims.

Commercial activity is simultaneously accelerating.

Clean Planet continues building industrial partnerships.

HYLENR has moved into university-based testing.

ENG8 is preparing for industrial deployment trials.

NHFE is demonstrating possible thermal applications.

Aureon and Prometheus continue advancing very different approaches.

Alpha Ring’s peer-reviewed glow-discharge calorimetry is receiving renewed attention.

The field therefore has no shortage of hypotheses, experiments or commercial ambition.

What it the field still needs is something more difficult:

A reproducible relationship between a characterized material state, independently measured energy output, identifiable nuclear signatures, and openly examinable experimental data.

When those elements converge in the same experiment, and another laboratory can reproduce the result, the scientific discussion changes fundamentally.

That remains a milestone worth watching.



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DISCLAIMER Mentions of any investment funds or private business do not indicate endorsement by the Authors or LENR-forum members. LENR-forum supports metal-hydrogen energy and solid state fusion as a zero-carbon solution to global energy needs. By publicizing community activity, we do not intend or seek to promote any one entity over any other.  We do not give investment advice or suggestions. Due diligence is required before investing in any venture. Information is provided solely for educational and research purposes.


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