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thyssenkrupp recently introduced industrial-scale water electrolysis for large projects. By splitting water into hydrogen and oxygen, this technology delivers “green” hydrogen, a clean, CO 2 -free energy carrier. The only inputs needed are water and renewable electricity from wind, hydro power or photovoltaics.
Audi’s latest e-fuels project is participation in a a pilot plant project in Dresden that produces diesel fuel from water, CO 2 and green electricity. The sunfire plant, which operates according to the “power-to-liquid” (PtL) principle, requires carbon dioxide, water and electricity as raw materials.
Researchers in Israel have designed a separate-cell photoelectrochemical (PEC) water-splitting system with decoupled hydrogen and oxygen cells for centralized hydrogen production. A paper describing their system is publishedin the journal Joule. The hydrogen cell contains the cathode, and it is physically separated from the oxygen cell.
thyssenkrupp’s proprietary water electrolysis technology for the production of. In the future thyssenkrupp’s electrolysis plants will be able to act as large-scale buffers to stabilize the power grid and compensate fluctuations quickly and flexibly. With this we have achieved a further important goal. thyssenkrupp and E.ON
Researchers in Spain have developed hydrogen production without contact electrodes via water electrolysis mediated by the microwave-triggered redox activation of solid-state ionic materials at low temperatures ( Nature Energy. In thermochemical cycles, the highly energy-demanding splitting of water molecules (?H Serra et al.
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.
Sandia National Laboratories researchers recently delivered electricity produced by a new power-generating system to the Sandia-Kirtland Air Force Base electrical grid. The system uses heated supercritical carbon dioxide instead of steam to generate electricity and is based on a closed-loop Brayton cycle.
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. Working with gas instead of liquid has several advantages. —Mihalis Tsampas.
The US Department of Energy (DOE) selected the National Alliance for Water Innovation (NAWI) to lead a US Department of Energy (DOE) Energy-Water Desalination Hub that will address water security issues in the United States. This suite of technologies will treat “non-traditional” water sources for multiple end-use applications.
Minneapolis-based Xcel Energy will work with Idaho National Laboratory to demonstrate a system that uses a nuclear plant’s steam and electricity to split water. The resulting hydrogen will initially be used at the power plant, but it could eventually be sold to other industries. Earlier post.) Prairie Island.
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. Hydrogen as part of the renewable electricity system of the future.
H2One is an integrated system that provides stable CO 2 -free, environmentally-friendly electricpower for the tower. The overall system is controlled by Toshiba’senergy management system H2EMS, which carries out power generation and power storage with associated operation of a 30-kW solar power system and batteries.
Berlin-based Graforce Hydro GmbH, the developer of a plasma electrolyzer—the Plasmalyzer —is applying its technology for the highly efficient generation of hydrogen from industrial waste water. The current Plasmalyzer offers highly efficient water splitting. Only purified water and oxygen remain as waste products.
As the world contends with a global energy crisis, nuclear power has the potential to play a significant role in helping countries to securely transition to energy systems dominated by renewables, according to a new special report by the IEA. However, a new era for nuclear power is by no means guaranteed.
The energy system will power and heat Raven SR’s S-Series hydrogen production facility at a sanitary landfill in Richmond, California. At the site, landfill gas (LFG) will be the primary fuel to provide power for the non-combustion process that converts waste to hydrogen. Earlier post.). Olaf Berlien, President and CEO of INNIO.
Bloom Energy, a developer of solid oxide fuel cell power generators, announced the ability of its Energy Servers to operate on renewable hydrogen. Current Bloom Energy Servers generate electricity using natural gas or biogas as fuel. Bloom Energy Servers can operate on pure hydrogen or a combination of natural gas and hydrogen.
The flagship project MethanQuest was launched in September 2018, and on it a total of 29 partners from research, industry and the energy sector have come together to work on processes for producing hydrogen and methane from renewables and for using them to achieve climate-neutral mobility and power generation.
Highview Power Storage, Inc., With Highview Power’s liquid air energy storage solution, excess or off-peak electricity is used to clean and compress air which is then stored in liquid form in insulated tanks at temperatures approaching -320 ?F The US energy storage market is expected to surge over 700% to nearly $5.4
The Hydrogen Micro Hub is a facility that produces hydrogen by applying a high-temperature electrolysis process with solid oxide electrolysis cells (SOEC) to the electricity and high-temperature steam generated by USNC’s Micro-ModularReactor (MMR). Multiple MMR units can be linked together to provide as much power as needed.
Southern California Gas Co. Individual cell power management enables dynamic loading, efficient operation and degradation isolation. The unit also features seamless integration between stack and power electronics.
Westinghouse Electric Company launched its newest nuclear technology, the AP300 small modular reactor (SMR), a 300-MWe (900MWth) single-loop pressurized water reactor. This brings licensing advantages and substantially reduces delivery risk for customers in the utility, oil & gas and industrial space.
Power Systems business unit signs letter of intent for the construction of a demonstration plant for the production of synthetic fuels Schell: “We will be electrifying the entire system, including the fuel” Important step towards sector coupling and decarbonising propulsion systems and power generation.
Advent Technologies Holdings will collaborate with Alfa Laval, a global provider of heat transfer, separation, and fluid handling products, on a project to explore applications of Advent’s methanol-powered high-temperature proton exchange membrane (HT-PEM) fuel cells in the marine industry.
Terex Utilities introduced the industry’s first all-electric bucket truck at the Electric Utility Fleet Managers Conference (EUFMC) in Williamsburg, Va. Their feedback will help ensure the trucks become a dependable, preferred work truck, and help Xcel Energy and the industry better prepare for the electric vehicle transition.
LH2 Europe will use the abundant renewable electricity in Scotland to produce green hydrogen and market it at a competitive price with diesel. As a comparison, LNG tankers use ballast water to compensate the loss of weight following delivery to ensure enough draft. Installed power. —Job Volwater, CCO at C-Job. Rule length.
Audi is adding a new member to its A3 family: the A3 Sportback 30 g-tron natural gas vehicle. Operation with natural gas or biomethane makes the compact model economical and more climate-friendly with low emissions. With full gas tanks, the car has an NEDC range of up to 495 (307.6 The A3 Sportback 30 g-tron 1.5
Source: US Energy Information Administration, Preliminary Monthly Electric Generator Inventory, January 2019. Other includes landfill gas, biomass, and other gas. Based on data in EIA’s Preliminary Monthly Electric Generator Inventory, reciprocating engines accounted for 1% of the total natural gas-fired power fleet.
The e-Fuel plant is planned to produce CO 2 -neutral fuel by using green hydrogen and furnace gas from an existing factory. Aker Solutions is already a leading supplier to oil and gas companies globally and will continue to maintain this market position. e-Fuels production use electricalpower in the process.
Japan’s New Energy and Industrial Technology Development Organization (NEDO), Toshiba Energy Systems & Solutions Corporation (Toshiba ESS), Tohoku ElectricPower Co., The FH2R can produce as much as 1,200 Nm 3 of hydrogen per hour (rated power operation) using renewable energy.
Allianz Capital Partners, on behalf of Allianz insurance companies, has signed an agreement to acquire a minority stake in Ren-Gas Oy , a green hydrogen and power-to-gas project developer based in Finland. Allianz will provide funding of €25 million to Ren-Gas to support the company’s project portfolio towards execution.
Blue World Technologies has acquired 15% of Danish Power Systems , a developer and manufacturer of membrane electrode assemblies (MEAs) for high-temperature PEM fuel cells. Blue World Technologies will use the Danish Power Systems technology in their methanol fuel cell systems. CO 2 + 3 H 2.
million to 16 water infrastructure projects. Modern technology has the potential to reduce energy use in aging water infrastructure, particularly in wastewater treatment, which demands up to 2% of domestic electricity use each year. The US Department of Energy (DOE) is awarding $27.5
Electricity sourced from sun and wind is used to split water into hydrogen and oxygen in a process called electrolysis. The hydrogen is stored and can be converted by fuel cells in vehicles back into electricity that powers them. We additionally want to supply electricity, gas and heat to industry.
Airbus is developing a hydrogen-powered fuel cell engine. At scale, and if the technology targets were achieved, fuel cell engines may be able to power a one hundred passenger aircraft with a range of approximately 1,000 nautical miles. There are two ways hydrogen can be used as a power source for aircraft propulsion.
World’s first integrated Power-to-Liquid (PtL) test facility to synthesize fuels from the air-captured carbon dioxide. —Professor Roland Dittmeyer, KIT, coordinator of the “Hydrocarbons and Long-chain Alcohols” research cluster of the Power-to-X (P2X) Kopernikus project. Photo: P2X project/Patrick Langer, KIT).
UK-based AFC Energy launched its H-Powerelectric vehicle (EV) charger based on alkaline hydrogen fuel cell technology. The self-contained charging system overcomes issues associated with poor grid coverage to provide rapid electric vehicle (EV) charging anywhere it is needed. Hydrogen generated from water electrolysis.
Able to convert waste heat directly into electricalpower, the E-PowerPack uses Organic Rankine Cycle (ORC) technology to reduce ship fuel consumption and CO 2 emissions. Where heat pumps use electricalpower to create thermal energy for various purposes, an ORC system uses heat energy to generate electricity.
Bosch has increased its stake in solid-oxide fuel-cell (SOFC) developer Ceres Power from 3.9% The stake increase is achieved through a subscription by Bosch for new Ceres Power shares, as well as the purchase of further shares from existing shareholders. to around 18%. Picture: Bosch.
Green hydrogen, which is produced using an electrolyzer powered by renewable electricity to split water into hydrogen and oxygen, is expected to play an important role in the energy transition in coming decades with overall hydrogen demand expected to grow 5-7x over the next 30 years according to the Hydrogen Council.
A 14 kW, 220 N·m electric motor is positioned between the engine and the automatic transmission. On overrun or when the bus is braking, the energy recovery phase, the motor acts as a generator to produce electricpower, which is briefly stored by the Citaro hybrid in capacitors. Mercedes-Benz calls this the support phase.
The M-Series units are methanol reformers that use water plus methanol to make hydrogen. The units uses two input streams (methanol/water mix and combustion air) and produces two output streams (product H 2 and combustion exhaust). Source: e1. —Dave Edlund, e1 CEO.
Fraunhofer’s POWERPASTE releases hydrogen on contact with water. The award-winning POWERPASTE technology is patented (EU, US) and offers advantages over other energy storage technologies, in particular in the power range from 100 W to 10 kW, Fraunhofer researchers said. It has a hydrogen capacity of about 10 mass-% (i.e.
The feed-stock reduction is achieved primarily by supplementing the process with oxygen and hydrogen produced by water electrolysis units that are powered by clean wind and solar generated electricity. DGF replaces the coal gasification used by others with biomass gasification and natural gas reforming.
Yamaha Corporation and Sumitomo Corporation Power & Mobility Co., a Sumitomo Corporation Group company, jointly demonstrated a new waste heat recovery system based on a thermoelectric generator (TEG), which generates electricalpower via exhaust gas heat. An additional test achieved the target gas temperature.
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