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Researchers at the Fraunhofer-Gesellschaft have developed a membrane technology for the energy-efficient and economic separation of hydrogen from natural gas. This marks a major step forward in the transportation and distribution of hydrogen as an energy source. The gas mixture is surrendered to the input side of the membrane.
Baker Hughes and Snam have successfully completed testing of the world’s first “hybrid” hydrogen turbine designed for a gas network. The test paves the way to implement adoption of hydrogen blended with natural gas in Snam’s current transmission network infrastructure. 20 billion cubic meters globally).
The technology group Wärtsilä is developing the combustion process in its gas engines to enable them to burn 100% hydrogen fuel. Wärtsilä has researched hydrogen as a fuel for 20 years, and has tested its engines with blends of up to 60% hydrogen and 40% natural gas.
This award marks the first Advanced Class Gas Turbines in the industry specifically designed and purchased as part of a comprehensive plan to sequentially transition from coal, to natural gas and finally to renewable hydrogen fuel, and creates a roadmap for the global industry to follow. MHPS gas turbines have more than 3.5
A development team from CoorsTek Membrane Sciences, in collaboration with international research partners, have successfully used ceramic membrane technology to develop a scalable hydrogen generator that makes hydrogen from electricity and fuels including natural gas, biogas and ammonia with near zero energy loss.
Researchers at The Ohio State University have used a chemical looping process to produce hydrogen from hydrogen sulfide gas—commonly called “sewer gas”. Compared with the undoped sulfur carrier, Mo dopant facilitates the surface hydrogen diffusion, thus promoting the overall H 2 S conversion.
With clean hydrogen gaining recognition worldwide as a carbon-free fuel capable of making a significant contribution to addressing climate change, Southern California Gas Co. SoCalGas) will field test a new technology that can simultaneously separate and compress hydrogen from a blend of hydrogen and natural gas.
“Blue” hydrogen—produced through steam methane reforming (SMR) of natural gas or coal gasification, but with CO 2 capture and storage—is being described as having low or zero carbon emissions. Even if true though, the use of blue hydrogen appears difficult to justify on climate grounds. —Howarth and Jacobson.
Kawasaki Heavy Industries’ Suiso Frontier , the world’s first liquefied hydrogen carrier, has left Japan to pick up its first hydrogen cargo in Australia. The vessel can carry 75 tonnes of liquefied hydrogen in one trip. J-POWER) to form the CO 2 -free Hydrogen Energy Supply-chain Technology Research Association (HySTRA).
A coalition of major oil & gas, power, automotive, fuel cell, and hydrogen companies have developed and released the full new report, a “ Road Map to a US Hydrogen Economy. ” Road Map to a US Hydrogen Economy ”. —Fuel Cell and Hydrogen Energy Association (FCHEA) President Morry Markowitz.
a provider of on-site hydrogen production, received an equity investment of up to $157 million from Newlight Partners LP, a growth equity investor, with participation from existing investors Cottonwood Technology Funds, Sun Mountain Capital and new investor Fortistar. BayoTech, Inc., Source: BayoTech.
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.
Honeywell UOP has introduced its Liquid Organic Hydrogen Carrier (LOHC), a solution that enables the long-distance transportation of clean hydrogen. This cost-effective solution can help meet the growing requirements for hydrogen use across various industries by leveraging existing refinery and transportation infrastructure.
potential customers for its proposed clean hydrogen production facility in Teesside in north-east ?England. In March, bp announced plans for a clean hydrogen facility in Teesside (H2Teesside) that would aim to ?produce produce up to 1GW of blue hydrogen—20% of the UK’s hydrogen target—by 2030. At the same ?time,
In February 2022, GTI Energy, S&P Global Commodity Insights and the National Energy Technology Laboratory (NETL) launched the Open Hydrogen Initiative (OHI), a collaboration to further transparency into the environmental impact of hydrogen production and help unlock its full potential as an important driver of energy transitions.
Israel-based Aquarius Engines unveiled a hydrogen-fueled version of its free-piston linear engine new hydrogen engine. The 10kg machine, based on the same technology as the original patented single-piston linear engine, operates exclusively on hydrogen. The Aquarius free-piston linear engine which now operates 100% on hydrogen.
The YCK05 engine is the first operating hydrogen engine for China’s commercial vehicle market, the world’s largest commercial vehicle market. The engine design upgrades the engine structure and its subsystems such as the combustion and gas distribution systems. Ignition ceremony at Beijing Institute of Technology.
The Gold Hydrogen Program , a coalition of organizations seeking to support the scale of this clean energy resource, announced its launch and the debut of a pilot microbial Gold Hydrogen Process. Found naturally deep in the Earth, “gold hydrogen” is a resource that is produced biologically and in the subsurface.
The Mayor of London, Sadiq Khan, launched England’s first hydrogen double-decker buses. The 20 new buses are the first of their kind to be launched in England; the new hydrogen fuel cell double decker buses are first being introduced on route 7 between East Acton and Oxford Circus. In addition to around £6 million (US$8.3
Cemvita Factory announced multiple developments with its Gold Hydrogen business. Cemvita defines Gold Hydrogen as the biological production of hydrogen in the subsurface through the consumption of trapped or abandoned resources. The hydrogen production in this trial exceeded our expectations. billion in 2020.
and Iwatani Corporation announced that Fukushima Hydrogen Energy Research Field (FH2R), which had been under construction in Namie town, Fukushima Prefecture since 2018, has been constructed with a solar-energy-powered 10MW-class hydrogen production unit, the largest in the world, at the end of February.
In Germany, RWE and the Westfalen Group will work together to supply green hydrogen for hydrogen-powered vehicles. Through a joint venture, RWE and Westfalen aim to develop a hydrogen fuel station infrastructure in Germany for heavy commercial vehicles in particular.
will bring to market a 15-liter natural gas engine for heavy-duty trucks. The 15-liter natural gas engine is an important part of Cummins strategy for its path to zero emissions. Cummins Inc. —Srikanth Padmanabhan, President, Engine Business, Cummins. gCO 2 e/MJ.
C-Job Naval Architects has designed a new class of liquid hydrogen tanker in partnership with LH2 Europe. LH2 Europe will use the abundant renewable electricity in Scotland to produce green hydrogen and market it at a competitive price with diesel. Hydrogen will be essential to the future of energy. Vessel specifications.
Researchers at the Fraunhofer IFF in Germany are designing the distributed and modular production and distribution of green hydrogen for industry, business and transportation throughout the value chain—a hydrogen factory of the future. The hydrogen factory of the future. The outcome is always green hydrogen.
Rolls-Royce is further developing its mtu gas engine portfolio for power generation and cogeneration to run on hydrogen as a fuel and thus enable a climate-neutral energy supply. Already today, gensets powered by mtu Series 500 and Series 4000 gas engines can be operated with a gas blending of 10% hydrogen.
China Petroleum & Chemical Corporation (Sinopec) officially launched China’s first methanol-to-hydrogen and hydrogen refueling service station in Dalian, China. The storage and transportation cost of methanol is also much lower than hydrogen, making methanol-to-hydrogen an attractive hydrogen production technology.
The United States has an extensive network of approximately 3,000,000 miles of natural gas pipelines and more than 1,600 miles of dedicated hydrogen pipeline. However, blend limits depend on the design and condition of current pipeline materials, of pipeline infrastructure equipment, and of applications that utilize natural gas.
The project is supported by DOE’s Hydrogen and Fuel Cell Technologies Office within the Office of Energy Efficiency and Renewable Energy. The project partners will generate zero-carbon hydrogen onsite via electrolysis with solar and wind power and reformation of renewable natural gas from a Texas landfill.
Southern California Gas Co. SoCalGas) and H2U Technologies are testing a new electrolyzer, called the Gramme 50, for the production of green hydrogen. The green hydrogen produced by this new technology can be used for clean transportation or industrial applications or blended with natural gas.
Airbus is developing a hydrogen-powered fuel cell engine. The A380 MSN1 flight test aircraft for new hydrogen technologies is currently being modified to carry liquid hydrogen tanks and their associated distribution systems. There are two ways hydrogen can be used as a power source for aircraft propulsion. Earlier post.).
Africa can produce 50 million tons of green hydrogen a year by 2035, according to a new study by the European Investment Bank (EIB), International Solar Alliance and the African Union, with the support of the Government of Mauritania, HyDeal and UCLG Africa. This is equivalent to energy costs of US$60 a barrel.
has provided a 20-megawatt PEM electrolyzer system to generate green hydrogen, making it the largest in operation in the world. The Cummins electrolyzer system is installed at the Air Liquide hydrogen production facility in Bécancour, Québec. 3,000 tons of hydrogen annually using clean hydropower.
In March, Toyota’s GR Corolla H2 Concept (liquid hydrogen-powered Corolla) suffered a fire during a tet run and withdrew from the opening of the ENEOS Super Taikyu Series 2023 Powered by Hankook Round 1 Suzuka. Toyota says that the fire was caused by a loosened joint in the hydrogen supply piping. Earlier post.)
The resulting hydrogen will initially be used at the power plant, but it could eventually be sold to other industries. It builds on a project launched last year to demonstrate how hydrogen production facilities could be installed at operating nuclear power plants. Earlier post.) Prairie Island.
The Yuchai YCK16H hydrogen-fueled engine was successfully ignited in Yulin, Guangxi. liters and a maximum horsepower of 560 hp, is the largest hydrogen-fueled engine with the largest displacement and horsepower in China. The engine, with a displacement of 15.93
million) in a private placement of new shares in IC Technologies AS (ICT), which is developing a novel storage solution for liquid hydrogen and LNG. One of the crucial elements in the hydrogen value chain is storage, distribution and transportation.
Toshiba Energy Systems & Solutions Corporation (Toshiba ESS) announced that its hydrogen-based autonomous energy supply system H2One, which Toshiba ESS delivered and installed on the rooftop of Toranomon Hills Business Tower (Minato-ku, Tokyo), has started full-scale operation with the opening of commercial facilities.
Southwest Research Institute (SwRI) is designing innovative hydrogen combustion systems for gas turbines used in power generation. The designs prevent flashback, a common concern in hydrogen-fueled combustion systems wherein the flame from the combustor travels into the nozzle, which can result in damaged equipment.
million) ammonia cracker prototype designed to produce green hydrogen at industrial scale. The prototype will use ammonia to deliver 200kg of hydrogen a day—enough to power around 5-10 hydrogen fuel cell-electric buses. Ammonia has a high hydrogen density and is readily transportable in bulk. million (US$4.24
to support its commercial-scale, emissions-free hydrogen manufacturing technology. Monolith Materials is the first US manufacturer to produce “turquoise hydrogen” on a commercial scale. Monolith’s hydrogen is classified as “turquoise hydrogen”. Monolith Materials, Inc. Monolith process.
Werner Enterprises, a premier transportation and logistics provider, has signed a letter of intent to purchase 500 Cummins’ 15-liter hydrogen internal combustion engines upon availability. Since announcing the fuel agnostic platform, which includes the hydrogen option in both the 15-liter and 6.7-liter Earlier post.) Earlier post.).
Element 1 Corporation (e1NA), Zhejiang Methanol Hydrogen Technology (ZMHT) and Zhejiang Element 1 (e1China) have formed a joint venture company—Zhejiang Hydrogen One Energy Technology Co., — to drive methanol-based hydrogen generation technology and commercialize e1NA’s technology throughout Greater China.
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