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SK Corp, the holding company of SK Group, has made a strategic investment in Monolith , a US company that has developed a plasma-based process to produce “cyan” hydrogen—between green (via electrolysis using renewable energy) and blue (conversion of methane accompanied by CO 2 capture and storage). The Monolith process.
The US Department of Energy (DOE) released draft guidance for a CleanHydrogen Production Standard (CHPS), developed to meet the requirements of the Bipartisan Infrastructure Law (BIL), Section 40315. A lifecycle system boundary enables consistent and comprehensive evaluation of diverse hydrogen production systems.
million to 10 industry-led projects to advance nuclear technologies, including two aimed at expanding cleanhydrogen production with nuclear energy. Westinghouse Electric Company, Front-End Engineering Designs and Investigative Studies for Integrating Commercial Electrolysis Hydrogen Production with Selected Light-Water Reactors.
Idemitsu Kosan, one of Japan’s leading producers and suppliers of energy, has launched a feasibility study of cleanhydrogen production in Japan generated from waste, including municipal waste. The goal is to launch a first hydrogen production facility around 2030 capable of processing 200-300 tons of waste per day.
million to fund 31 projects to advance next-generation cleanhydrogen technologies and support DOE’s recently announced Hydrogen Energy Earthshot initiative ( earlier post ) to reduce the cost and accelerate breakthroughs in the cleanhydrogen sector. The US Department of Energy (DOE) is awarding $52.5
Although the thermocatalytic ammonia decomposition reaction (ADR) is an effective way to obtain cleanhydrogen, it relies on the use of expensive and rare ruthenium (Ru)-based catalysts, making it not sustainable or economically feasible. A complete ammonia conversion to hydrogen was achieved at an economically feasible 450 ?C
Purem by Eberspaecher is introducing efficient exhaust technology for hydrogen engines. The H 2 -ICE exhaust system for hydrogen engines from Purem by Eberspaecher. Hydrogen engines have potential as a drive type with CO 2 -neutral fuel, especially for heavy-load transport and in off-highway vehicles.
Alstom will supply six hydrogen fuel cell trains, with the option for eight more, to FNM (Ferrovie Nord Milano), the main transport and mobility group in the Italian region of Lombardy, for a total amount of approximately €160 million. The hydrogen version will match the operational performance of diesel trains, including their range.
Researchers at Ariel University in Israel have developed a new type of hydrogen generator for “on-demand” use with fuel cells. Hydrogen is produced in a catalytic hydrolysis reaction of sodium borohydride (NaBH 4 ) with ruthenium powder as a catalyst. —Zakhvatkin et al. 1c00367.
GTI, a research, development and training organization focused on natural gas and energy markets, is launching a hydrogen technology center. GTI focuses its R&D efforts on the generation of cleanhydrogen using hydrocarbon fuels that incorporate carbon capture and/or carbon sequestration in a cost-effective manner.
Hydra Energy, the Hydrogen-as-a-Service (HaaS) provider for commercial fleets looking to reduce emissions and costs with limited risk and no up-front investment ( earlier post ), has delivered its first hydrogen-converted, heavy-duty truck to paying fleet customer Lodgewood Enterprises. —Lodgewood President Arlene Gagne.
Rolls-Royce has conducted successful tests of a 12-cylinder gas variant of the mtu Series 4000 L64 engine running on 100% hydrogen fuel. For several months, the mtu gas engine has been undergoing bench testing and continuous improvement in terms of efficiency, performance, emissions and combustion using 100% hydrogen as fuel.
a global supplier of hydrogen fuel cell-powered commercial vehicles, announced a joint venture to build up to 100 hydrogen hubs across the United States and globally. into locally produced, renewable hydrogen for Hyzon’s fleet of zero-emission commercial vehicles. Raven SR , a renewable fuels company, and Hyzon Motors Inc.,
Researchers at Ohio University have developed a new technology that accomplishes the direct conversion of urine and urea to pure hydrogen via electrochemical oxidation with an inexpensive nickel catalyst. Hydrogen production from urine. Botte (2009) Urea electrolysis: direct hydrogen production from urine. Credit: RSC.
In Germany, BSE Engineering and the Institute for Renewable Energy Systems at Stralsund University of Applied Sciences (IRES) have demonstrated the conversion of wind power into renewable methanol. The team uses green electricity to split water into hydrogen and oxygen in an electrolysis step. FlexMethanol.
All of these concepts rely on hydrogen as a primary power source—an option which Airbus believes holds exceptional promise as a clean aviation fuel and is likely to be a solution for aerospace and many other industries to meet their climate-neutral targets. —Guillaume Faury, Airbus CEO. —Guillaume Faury.
bp is developing plans for the UK’s largest blue hydrogen production facility, targeting 1GW of hydrogen production by 2030. bp’s hydrogen business and make a major contribution to the UK Government’s target of developing 5GW of hydrogen production by 2030.
Mitsubishi Power Americas and Texas Brine Company are collaborating to develop large-scale long-duration hydrogen storage solutions to support decarbonization efforts across the eastern United States. Long-duration hydrogen storage is a key enabling technology for the transition to a net zero carbon energy future.
Several organizations, encompassing companies, research labs, and academia, have formed the Hydrogen Opposed Piston Engine Working Group. The Working Group consists of members undertaking research and development in the field of hydrogen combustion in an opposed-piston engine. If hydrogen combustion is sufficiently lean—i.e.,
Southern California Gas Company (SoCalGas) announced it will be working together with Sierra Northern Railway, Gas Technology Institute (GTI), and other technical experts to develop and test a zero-emission hydrogen fuel cell engine for a switcher locomotive. Earlier post.). SoCalGas is committing another $500,000 to advance the research.
The US Department of Energy (DOE) is awarding a total of $125 million to support 110 clean energy technology projects (DE-FOA-0002381). Low Total Cost of Hydrogen by Exploiting Offshore Wind and PEM Electrolysis Synergies. Low Total Cost of Hydrogen by Exploiting Offshore Wind and PEM Electrolysis Synergies. million each.
The new energy fuel stations will promote low emissions and clean energy production for electric vehicles through fuels such as mixed hydrogen and compressed natural gas (CNG) power generation, hydrogen power generation, mixed methanol and hydrogen power generation, as well as fast charge networks, and other related technologies provided by MEG.
The US Department of Energy (DOE) announced $33 million in funding to support innovative hydrogen and fuel cell research & development (R&D), infrastructure supply chain development and validation, and cost analysis activities. ( Efficient and innovative hydrogen production. This would be coordinated with the H2NEW consortium.
The Dutch Institute for Fundamental Energy Research ( DIFFER ) is partnering with Toyota Motor Europe (TME) to develop a device that absorbs water vapor, and splits it into hydrogen and oxygen directly using solar energy. In this project, DIFFER and TME are exploring an innovative way to produce hydrogen directly out of humid air.
Continuing to speed up the adoption of hydrogen in long-haul transportation, Hydra Energy —the first Hydrogen-as-a-Service provider for commercial fleets—announced a strategic partnership with Chemtrade. Hydra pays for the truck conversion and the on-site fueling infrastructure.
The California Energy Commission has awarded GTI and Sierra Northern Railway nearly $4,000,000 to fund the design, integration, and demonstration of a hydrogen fuel cell switching locomotive to support the Hydrogen Fuel Cell Demonstrations in Rail and Marine Applications at Ports (H2RAM) initiative.
Carbon dioxide capture company AirCapture and carbon dioxide conversion company OCOchem, along with other partners, have won a $2.93-million The proposed CO 2 capture and conversion plant will be instrumental in helping the company meet these goals.
billion in 17 large-scale innovative clean-tech projects with a third round of awards under the Innovation Fund. residue streams, renewable hydrogen and biogas to methanol. Another one will produce 15,500 tonnes of renewable hydrogen per year. The EU is investing more than €1.8
a leading global manufacturer of liquefaction and cryogenic equipment serving multiple applications in the clean energy and industrial gas end markets, including hydrogen, has invested $25 million in Transform Materials for 5% of its equity. In addition, it uses 50% less electricity for producing hydrogen than competing technologies.
The US Department of Energy (DOE) launched the Clean Fuels & Products Shot , a new initiative that aims to reduce greenhouse gas emissions (GHGs) from carbon-based fuels and products significantly. Biomass and waste conversion technologies designed to use green electricity and hydrogen to maximize carbon retention in products.
ZeroAvia announced that it has identified clear applications for hydrogen-electric, zero-emission propulsion for regional jet aircraft. The hydrogen-electric CRJ aircraft would be equipped with two ZeroAvia regional jet engines (derivatives of the ZA2000 engine class) to match the existing performance. Earlier post.) Earlier post.)
Energy company SGH2 is bringing the world’s biggest green hydrogen production facility to Lancaster, California. SGH2’s gasification process uses a plasma-enhanced thermal catalytic conversion process optimized with oxygen-enriched gas.
Researchers from the US and Denmark have engineered a bio-inspired molybdenum sulfide catalyst as an inexpensive, abundant alternative to platinum and coupled it with a light-absorbing electrode to create a photo-electrochemical water splitting device to make hydrogen fuel from sunlight and water. —Hou et al.
BMW Manufacturing has expanded its hydrogen fuel-cell material handling equipment across its 4.0 In 2010, BMW completed the installation of a hydrogen storage and distribution area near the plant’s Energy Center to power about 100 pieces of fuel cell material handling equipment. BMW estimates that the expanded system will avoid 4.1
A study by a team of researchers from Technische Universität Berlin (TUB) and Fritz-Haber-Institut der Max-Planck-Gesellschaft has found that direct seawater splitting for hydrogen production has substantial drawbacks compared to conventional water splitting and offers almost no advantage. Additionally, H 2 O is needed for water splitting.
Rice University researchers and colleagues at Princeton and Syzygy Plasmonics have developed a plasmonic photocatalyst for the direct decomposition of hydrogen sulfide gas into hydrogen and sulfur, as an alternative to the industrial Claus process. A paper on the work appears in ACS Energy Letters. Bayles, Henry O. Carter and Naomi J.
Hyzon Motors, a leading supplier of heavy-duty hydrogen-powered fuel cell electric vehicles, announced a non-binding memorandum of understanding (MoU) with Transform Materials, a provider of renewable hydrogen through its proprietary microwave reactor technology ( earlier post ). —Parker Meeks, Hyzon’s Chief Strategy Officer.
SK E&S and SK Plug Hyverse—a joint venture (JV) formed in January of this year by SK E&S and Plug Power—will work with Korea Southeast Power Generation (KOEN) to cooperate with green hydrogen and green ammonia projects based on renewable energy resources in Korea and abroad.
Reintroducing airships into the world’s transportation mix could contribute to lowering the transport sector’s carbon emissions and can play a role in establishing a sustainable hydrogen based economy, according to a new IIASA-led study. The open-access paper is published in the journal Energy Conversion and Management: X.
direct-injection (DI) turbocharged hydrogen engine that delivers clean, efficient, and high-power performance. Hydrogen, as clean and renewable energy, is an ideal fuel for internal combustion engines. Hydrogen, as clean and renewable energy, is an ideal fuel for internal combustion engines. 2022.124713.
Researchers from the University of Houston (UH) have developed a cobalt(II) oxide (CoO) nanocrystalline catalyst that can carry out overall water splitting with a solar-to-hydrogen efficiency of around 5%. The generation of hydrogen from water using sunlight could potentially form the basis of a clean and renewable source of energy.
The solution was defined during Expleo’s feasibility study into clean power propulsion systems, funded through the UK Department for Transport’s (DfT) Clean Marine Demonstration Competition (CMDC). Expleo modeled its system-of-systems solution on the multi-tasking Bibby Wavemaster 1 , a vessel used to service offshore wind farms.
Scientists from Stanford University, SLAC National Accelerator Laboratory and the Technical University of Denmark have identified a new nickel-gallium catalyst that converts hydrogen and carbon dioxide into methanol at ambient pressure and with fewer side-products than the conventional catalyst. —lead author Felix Studt, SLAC.
Alstom and Eversholt Rail have unveiled the design of a new hydrogen train for the UK market. The train, codenamed Breeze, will be a conversion of existing Class 321 trains, reengineering some of the UK’s most reliable rolling stock. The Alstom facility in Widnes will manage the conversion of the Breeze trains.
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