David Nygren Founder
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Posts by David Nygren

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    Thanks to all the people who made ICCF24 possible.


    Exciting days ahead of us! Remember to share news and results. Open science is an important way forward to save the climate.

    ICCF24 starting in 7h:40m from now

    Explanation

    "Rocket scientist and my friend Jonathan King tells me in plain English what is Cold Fusion (Low Energy Nuclear Reaction - LENR) and what's the big deal in it. Video shot in Los Angeles, CA"



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    Flashback from 2011


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    Carl Page NEA Keynote,

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    At 36:16 start speak about LENR

    I have followed saltx for many years, now we are closer to the market.


    Saltx shows potential linked to greener steel and Cement production. These two huge markets have major challenges in lowering their climate footprint. The EU puts a lot of pressure on these fields, which have the worst climate impact.


    See the latest press release.

    Breakthrough in production of “green cement” - results verified by industry experts - SaltX Technology
    SaltX Technology has previously communicated about its innovation - Electric Arc Calciner (EAC), and the successful results to produce "green quicklime”. The…
    saltxtechnology.com


    If you are interested in large-scale energy storage, I recommend you read what Saltx is about to create. I think 2023 is the year when saltx gets the attention they deserve.

    Lots of new information from Robert!

    Thanks orsova for finding.



    Definitive Scientific Proof of Controlled LENR Heat Production

    in Brillouin Energy Corp’s Hydrogen Hot Tube (HHT) reactor systems


    Below is a summary of points that together provide independent, scientifically verified evidence that Brillouin energy can control LENR heat production and nuclear effects in its test reactors.


    1. Brillouin Energy has evidence of heat production beyond any chemical means:
      1. The Brillouin Milestone Technical Progress Highlights (Milestone Highlights, 2019) document shows data from a series of experiments employing precision calorimetry.
      2. These tests provide proof of heat production with no known chemical reactions between the materials in the reactor that could account for the heat produced.
      3. This data resulted from an 18-month campaign run on a single catalyst rod focusing on continually refining the drive signal to maximize power output.
      4. Upon removing the catalyst rod from the reactor, it appeared unchanged, with no signs of degradation.

    2. Brillouin has independent proof of nuclear effects consistent with the accumulation of neutrons. The only source of such neutrons is the reaction driven by our control system. The basis for this is a series of related independent expert tests and the Reports that resulted from those tests:
      1. The Brillouin Cerium Lab Test Report 2020 contains further proof of nuclear reactions. The results found on page 4 stem from the metal missing in the last picture of this album, showing a significant reduction in the most abundant isotope of nickel, while the heaviest isotope increased by 125%.
      2. The combination of Brillouin 3rd Party Test Results and Analysis, the Tanzella ERC Challenge Test Report, and the Cerium lab test of the rod, which produced the Cerium Report, provide definitive scientific evidence of LENR heat production and Brillouin’s ability to control it.
      3. The change in isotopic ratios indicates an accumulation of neutrons in the system. On this scale, the only apparent neutron source is the reaction driven by Brillouin’s reactor control system.
      4. The experiment was conducted by a PhD nuclear physicist and engineer on behalf of a private equity firm, which was performing due diligence on Brillouin Energy’s technology. The physicist/engineer’s background included several executive-level positions at GE-Hitachi’s Nuclear Energy Division. The experiment conducted by this due diligence expert was run on a different catalyst rod than the Milestone Highlights 2019 experiments and replaced the hydrogen fuel with Helium and Argon. After running Brillouin’s HHT reactor in inert gas for more than a month, the documented nuclear event occurred, causing the center of the catalyst rod to vaporize. By depriving the catalyst of hydrogen, it was possible to get the system to run away. This runaway event generated NO hazardous radiation and only caused the reactor to shut down. Brillouin Helium vs. Hydrogen Why the COP Goes Up provides a full explanation of why this happened.

    3. Brillouin Energy has an earlier result demonstrating definitive independent scientific proof of LENR from our WET™ reactor work, where our reactor produced Tritium.
      1. See Brillouin Claytor Tritium Test Results Final 2-27-15


    For more information, please contact us through our Website’s Contact

    Frank Gordon Interview by Steven Krivit from 2008


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    What you are seeing in this video is a small stirling engine that is running off of the heat being generated within Brillouin Energy’s Hydrogen Hot Tube (HHT). All of the ancillary tubing and wires around the spinning engine in the center of the video is just for energy test

    What is it?

    The Hydrogen Public Funding Compass is an online guide for stakeholders to identify public funding sources for hydrogen projects. It is designed as a single entry point for stakeholders to access information on the most important public funding programmes and funds for renewable and low carbon hydrogen.

    The funding compass is structured in two parts

    1. EU funding programmes and funds financed by the 2021 -2027 long-term EU budget and NextGenerationEU
    2. National funding programmes and funds available at EU country level






    Funding guide
    The Hydrogen Public Funding Compass is a guide for stakeholders to identify public funding sources for hydrogen projects. It is designed as a single entry…
    ec.europa.eu

    The LENR-Forum team are proud to present the first of a new series of video discussions, where prominent LENR researchers meet to present, discuss and answer questions about their work. In this session we look at the LEC, a simple device that produces electricity directly, in a way which is not entirely understood. Such a device has the potential to be a game-changer, because although in its current form the electrical output is tiny it offers the possibility of creating silent, non-polluting and inexpensive batteries which never need recharging. Though that is at the moment a distant target.


    The content here is in two parts – Part 1 is a 20 minute video made by Frank Gordon and Harper Whitehouse in which they share views of a LEC device in action, and describe and run some basic tests. Part 2 is a panel discussion hosted by the forum team and introduced by Ruby Carat in which Frank and Harper answer questions. The panel includes well-known LENR researchers, from the USA Professor David Nagel and Andrew Erickson (LANL -Retired), Fabrice David and Professor Jean-Paul Biberian from France. All the scientists on the panel have direct hands-on experience of the LEC system, or in Fabrice David’s case the related Cold fusion Diode system.


    The discussion is moderated by Alan Smith, and the closing words of thanks are from our very own David Nygren. We wish to thank everyone who contributed for their help and support, both on camera and behind the scenes.




    Part 1 : UNDERSTANDING LENR – LATTICE ENERGY CONVERTER (LEC)

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    Part 2 : UNDERSTANDING LENR - Panel Q&A about the LATTICE ENERGY CONVERTER (LEC)

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    The LENR-Forum team are proud to present the first of a new series of video discussions, where prominent LENR researchers meet to present, discuss and answer questions about their work. In this session we look at the LEC, a simple device that produces electricity directly, in a way which is not entirely understood. Such a device has the potential to be a game-changer, because although in its current form the electrical output is tiny it offers the possibility of creating silent, non-polluting and inexpensive batteries which never need recharging. Though that is at the moment a distant target.


    The content here is in two parts – Part 1 is a 20 minute video made by Frank Gordon and Harper Whitehouse in which they share views of a LEC device in action, and describe and run some basic tests. Part 2 is a panel discussion hosted by the forum team and introduced by Ruby Carat in which Frank and Harper answer questions. The panel includes well-known LENR researchers, from the USA Professor David Nagel and Andrew Erickson (LANL -Retired), Fabrice David and Professor Jean-Paul Biberian from France. All the scientists on the panel have direct hands-on experience of the LEC system, or in Fabrice David’s case the related Cold fusion Diode system.


    The discussion is moderated by Alan Smith, and the closing words of thanks are from our very own David Nygren. We wish to thank everyone who contributed for their help and support, both on camera and behind the scenes.




    Part 1 : UNDERSTANDING LENR – LATTICE ENERGY CONVERTER (LEC)

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    Part 2 : UNDERSTANDING LENR - Panel Q&A about the LATTICE ENERGY CONVERTER (LEC)

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    I had missed this, maybe not news for everyone!.



    Toward a LENR reference experiment" F. Metzler at the ARPA-E Low-Energy Nuclear Reactions Workshop

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    News from nikkei.com 20220127 (Google translate from Japan)



    Optimal solution with boiler Supports next-generation energy

    Daisuke Miyauchi President, CEO of Miura Co., Ltd.


    Creating a decarbonized society


    Miura Co. , Ltd., a major boiler company, is accelerating the movement toward a carbon-free society in 2050. Boilers are widely used from factories to shops and are indispensable to all industries. We aim to supply the best and cleanest heat energy by ICT (Information and Communication Technology) and skilled maintenance personnel. Daisuke Miyauchi, President and CEO, emphasized that "our purpose is to supply clean heat as a'heat sommelier'." Looking ahead to a hydrogen-based society, we are steadily collaborating.


    Miyauchi Daisuke Graduated from Kyoto University in 1986. Joined Miura Co., Ltd. in 1997. After working as a director, executive officer, and general manager of the Americas Business Headquarters, he has been in his current position since 2016. Born in Ehime prefecture. 59 years old


    "Heat sommelier" Domestic share nearly 60%


    There is an urgent need to realize a carbon-free society in order to keep the world's average temperature rise within 1.5 degrees Celsius compared to before the Industrial Revolution. We are rushing to formulate a goal to reduce carbon dioxide (CO2) emissions for 30 years in the entire supply chain including Scope 3 by the end of March 2010 toward carbon neutrality for 50 years.

    "Decarbonization" and "carbon neutral" are set as one of the final goals, but they are not as easy as the discussion of 100 or 0 (zero). Is it possible to draw a step toward decarbonization through the realization of low carbon by starting to reduce carbon from now on? I am convinced that this is the real point towards decarbonization.

    We have the top domestic market share of 58.6% for "small once-through boilers". A small once-through boiler heats water while passing it through a metal tube (can body), and releases steam to the outside in a one-way manner. It is widely used from cleaning shops and shops in the town to heat sources for large factories and air conditioning.


    First of all, save energy to low carbon

    Boilers required the engagement of boiler engineers, but in 1959 small once-through boilers became available without a license. The founder, Tamotsu Miura, did not miss this opportunity and began researching a small boiler that automates water supply and combustion, and developed the "small once-through boiler ZP type" in the same year. In 2015, it was certified as a mechanical engineering heritage of the Japan Society of Mechanical Engineers. Due to the energy-saving boom caused by the oil crisis, we continued to develop high-efficiency boilers one after another and established our current position.

    Looking at Japan's CO2 emissions by sector in FY2007, the industrial sector accounts for 25.2% of the total. The ratio of heat utilization in the industrial sector is as large as about 60%. When it comes to carbon neutrality, from the perspective of energy sources, there are discussions such as "I'm using this much electricity," "I'm using coal," and "So let's reduce it." However, it is necessary to use it, so first of all, I would like to encourage client companies to save energy toward low carbon.

    We will continue to provide consulting services such as "This heat supply method is the best at your factory." For example, suppose a food factory uses hot water at 80 degrees Celsius to clean a manufacturing machine and it drops to 60 degrees Celsius. The temperature is too high as it is, so it is cooled and drained, but it can be used again if you look for other uses for hot water of 60 degrees or raise it to 80 degrees with a heat pump. It is an effective use of the heat that was wasted.

    Started online maintenance service in 1989. More than 60,000 boilers are remotely monitored from the head office in Matsuyama City, and operation data is acquired 24 hours a day, 365 days a year. When an abnormally high temperature or a drop in water pressure is detected, an alarm is automatically issued from the boiler, and if necessary, a total of more than 1,200 maintenance personnel "field engineers" at approximately 100 sales offices nationwide will be on site. It is a mechanism to rush.


    Increase choices and absorb costs

    Heavy oil is used as the fuel for our boilers next to gas. In the future, there may be carbon-neutral gas, and ammonia and hydrogen may become widespread as next-generation fuels. There may be a realistic "methanation" that synthesizes methane by reacting hydrogen with CO2. It will take 10 to 20 years to find out what is the best energy for the future. Even in that case, if energy saving is thoroughly implemented and the amount of energy required is reduced, the options will increase even if the cost of next-generation energy is a little high.

    Online maintenance and field engineers are our strengths in providing stable heat to our customers. Looking ahead to carbon neutrality in 2050, various energy sources including hydrogen will come out, but we will respond to any energy source. As a "heat sommelier," we believe that it is our purpose to supply clean heat.



    Miura Co., Ltd.'s strength is the field engineer who maintains the boiler.


    Successive collaborations and establishment of new technologies in view of hydrogen society


    "We are heat professionals and heat sommeliers. We want to develop the ability to handle a wide range of energy sources for combustion, and we are still trying." Daisuke Miyauchi, President and CEO, emphasizes. A hydrogen-fueled boiler has already been developed, and we are taking steps with a view to the future hydrogen society in collaboration with various companies.

     In September 2021, we participated in a project by Yamanashi Prefecture with TEPCO Holdings , Toray , Hitachi Zosen , Siemens Energy (Shinagawa, Tokyo) and others. It is a business that produces hydrogen from electricity generated by renewable energy. The New Energy and Industrial Technology Development Organization (NEDO) has adopted it as a subsidized project.

     The project period is 5 years until FY2013. Electric power derived from renewable energy is carried by transmission lines to operate water electrolyzers. The generated hydrogen is used as fuel for the boiler in the factory and used as heat in the factory. Miura Co., Ltd. will develop a highly efficient steam boiler that utilizes green hydrogen fuel derived from renewable energy in this demonstration experiment.

     In 2017, Miura Co., Ltd. released a hydrogen-fueled once-through steam boiler that eliminates CO2 emissions during operation. In May 2009, a hydrogen-fueled once-through boiler equipped with a low NOX (nitrogen oxide) burner was certified by the Tokyo Metropolitan Government. This was the first case in a municipality nationwide.

     At present, the mainstream fuel for such boilers is by-product hydrogen from factories, but in the future, demand is expected for hydrogen produced by water electrolysis and hydrogen produced from brown coal using CCS (recovery and storage of carbon dioxide). However, hydrogen has a problem that the temperature at the time of combustion is higher and the amount of NOX generated is larger than that of natural gas and heavy fuel oil A. Therefore, we have developed a low NOX burner that can be used even in urban areas where environmental regulations are strict.

     In addition, we are co-developing an industrial boiler that uses quantum hydrogen energy with Clean Planet (Chiyoda, Tokyo), a startup company that invested in 2019. Quantum hydrogen energy is a new technology that produces more energy than ordinary hydrogen. It is expected that the technology will be established for practical use.

     In Asia and the Americas, where boilers are sold, the idea of "pre-maintenance" similar to that in Japan is spreading. "We are close to our customers. We can contribute to carbon neutrality overseas because we know our customers." President Miyauchi puts all his energy into it. He knows the needs of energy-using companies and proactively provides products. He continues to take on such challenges.


    source

    ボイラーで最適解 次世代エネにも対応 宮内大介三浦工業社長執行役員CEO
    ボイラー大手の三浦工業が2050年の脱炭素社会をにらんだ動きを加速させている。ボイラーは工場から商店などまで幅広く使われ、あらゆる産業に欠かせない。ICT(情報通信技術)と熟練メンテナンス員によりベストでクリーンな熱エネルギー供給をめざす。宮内大介社長執行役員CEO(最高経営責任者)は「『熱のソムリエ』としてクリーン…
    www.nikkei.com