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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.
in close collaboration with GTI and The University of Texas at Austin, has launched a US Department of Energy project, Demonstration and Framework for H2@Scale in Texas and Beyond. Frontier Energy, Inc., The project is supported by DOE’s Hydrogen and Fuel Cell Technologies Office within the Office of Energy Efficiency and Renewable Energy.
MOL) has joined a wide-ranging corporate-academic partnership in a zero-emission initiative called the “Wind Hunter Project,” seeking new applications for hydrogen fuel and wind power. Graduate School of Frontier Sciences of The University of Tokyo; West Japan Fluid Engineering Laboratory Co., Mitsui O.S.K. Lines, Ltd.
In a new study published in the journal Applied Energy , Carnegie Mellon University (CMU) researchers found that controlled charging of plug-in hybrid electric vehicles (PHEVs) reduces the costs of integrating the vehicles into an electricity system by 54–73% depending on the scenario.
The US Department of Energy is awarding more than $5 million to support US wind energy development. million to boost the speed and scale of midsize wind turbine technology development and deployment. million to boost the speed and scale of midsize wind turbine technology development and deployment.
The Dolphyn project showcases a floating semi-submersible design with an integrated wind turbine, PEM electrolysis and desalination facilities. The project concerns the production of hydrogen at scale from offshore floating wind in deep water locations. Led by Cranfield University. Contract value: £3.12 million (US$4.1
These relate to electrolysis systems for producing hydrogen, both on land and in offshore wind parks, equipment for producing methane, the use of gas engines in cars, ships and CHP plants, and concepts for energy systems that efficiently couple the transport, electrical power, gas and heating sectors.
The goal of the agreement is to reduce the greenhouse gas (GHG) emissions in the ocean transportation of sustainable wood pellets. This will include the “Wind Challenger”, a cargo ship design with a hard sail, which would reduce emissions by harnessing wind energy. The first Wind Challenger is scheduled to be released in 2022.
The consortium brings together a total of ten partners: EDF Deutschland, Holcim Deutschland, OGE, Ørsted Deutschland, Raffinerie Heide, Heide’s municipal utility, Thüga, and thyssenkrupp Industrial Solutions, along with the Region Heide development agency and the Westküste University of Applied Sciences.
The environmental benefit of a large-scale deployment of plug-in hybrid electric vehicles (PHEVs) in the Canadian province of Alberta could vary significantly, ranging from a 40% to a 90% reduction in greenhouse gases, according to a study by electrical engineers at the University of Calgary’s Schulich School of Engineering.
by Michael Sivak, Sivak Applied Research The overall advantage of battery electric over gasoline vehicles, in terms of well-to-wheels emissions of greenhouse gases, has been well documented. However, the emissions of electric vehicles depend greatly on the energy source used to generate the electricity that powers them.
Fraunhofer and The University of British Columbia UBC in Vancouver, Canada will partner to develop technologies for sustainable energy production and supply; on 21 December 2012, Fraunhofer and the Canadian university signed a framework agreement for a collaboration spanning several years. Total funding of €4 million (US$5.3
Current Bloom Energy Servers generate electricity using natural gas or biogas as fuel. Despite those periods of excess wind and solar power, because the ability to store electricity for more than a few hours is lacking, dispatchable power from the combustion of fossil fuels continues to bridge gaps in supply.
Project Volt Gas Volt is based on a long-term financing plan and the use of existing technologies for the large-scale conversion of surplus renewable electricity to methane, with subsequent reuse. Project VGV uses surplus electricity generated by renewable and nuclear sources to produce hydrogen via electrolysis. Earlier post.).
The California Energy Commission approved its first $10 million to fund Electric Program Investment Charge (EPIC) research and development (R&D) projects during its monthly business meeting today. Southern California Edison, and San Diego Gas & Electric Co. Southern California Edison, and San Diego Gas & Electric Co.
Obama was delivering a speech on energy policy at Georgetown University. This includes almost 24 million inactive leased acres in the Gulf of Mexico, which potentially could hold more than 11 billion barrels of oil and 50 trillion cubic feet of natural gas. America holds only about two percent of the world’s proven oil reserves.
Jacobson, professor of civil and environmental engineering at Stanford University, suggests that carbon capture technologies are inefficient and increase air pollution. Wind replacing fossil fuels always reduces air pollution and never has a capture equipment cost. In both plants, natural gas turbines power the equipment.
This expansion of our product offering enables zero-carbon electricity and transportation solutions. Bloom Energy announced in June 2019 that its fuel cells could run on hydrogen to generate zero-carbon electricity. Bloom Energy Servers reversed this process by taking in fuel and air to generate electricity.
Battery electric vehicles are only as clean as the energy source used to generate the electricity that powers them. These results indicate that coal and oil are the energy sources leading to most emissions, and that hydro, wind, and nuclear are the energy sources leading to least emissions. Natural gas. Energy source.
FLECCS project teams will work to develop carbon capture and storage (CCS) processes that better enable technologies, such as natural gas power generators, to be responsive to grid conditions in a high variable renewable energy (VRE) penetration environment. Colorado State University. Phase 1 FLECCS projects are: GE Global Research.
The projects are based in 24 states, with approximately 47% of the projects led by universities; 29% by small businesses; 15% by large businesses; 7.5% Methane Converter to Electricity and Fuel. gas into a liquid transportation fuel by combining fuel cell. provide not only liquid fuel but also electricity, increasing the.
The award recognizes EPA Green Power Partners who distinguish themselves using on-site renewable energy applications, such as solar photovoltaic (PV) or landfill gas. MW solar energy system, which is enough green power to meet 12% of the organization’s electricity use. GWh hours of electricity per year. Earlier post.).
After a year in construction, Energiepark Mainz, a collaboration between Stadtwerke Mainz, Linde, Siemens and the RheinMain University of Applied Sciences, was inaugurated in Mainz. The energy park will produce hydrogen using electricity from neighboring wind parks. Earlier post.)
Rolls-Royce intends to support research into green fuels in the Lausitz region of eastern Germany together with the State of Brandenburg, Brandenburg University of Technology Cottbus and other industrial partners. Synthetic fuels are a decisive factor in energy transition and the use of renewable energies.
Germany’s Minister of Economics and Technology, Sigmar Gabriel, together with representatives of power utility Stadtwerke Mainz AG, Siemens AG, The Linde Group and RheinMain University of Applied Sciences, inaugurated the construction of the Energiepark Mainz. This makes it possible to store electricity from renewable energy sources.
Cepsa—the Spain-based multinational oil and gas company—will invest more than €3 billion to establish the Andalusian Green Hydrogen Valley, creating the largest green hydrogen hub in Europe in southern Spain. Due to the abundance of sun and wind in the Iberian Peninsula, the International.
The Electric Power Research Institute, 8 automakers and 15 utilities are working to develop and to demonstrate an open platform that would integrate plug-in electric vehicles (PEVs) with smart grid technologies enabling utilities to support PEV charging regardless of location. Automakers and V2G. Earlier post.) Earlier post.).
One possible scenario for the electricity system in the Western US in 2026-29. Under a range of resource cost scenarios, most coal power plants would be replaced by solar, wind, gas, and/or nuclear generation, with intermittent renewable sources providing at least 17% and as much as 29% of total power by 2030. Click to enlarge.
Green hydrogen generated by water electrolysis, a process that takes place without CO 2 emissions, has the advantage of being able to use the existing capillary gas infrastructure. RINA offers specific and unique engineering skills in Italy to support industries in the transition to a wider use of hydrogen.
NREL and GE Renewable Energy will optimize wind turbine design specifically for hydrogen production from electrolysis, and validate designs using NREL’s ARIES facilities. NREL, National Energy Technology Laboratory, Gas Technology Institute, EPRI, and Paulsson, Inc. Award amount: $1,722,089). Award amount: $500,000).
Eagle Picher, in partnership with the Pacific Northwest National Laboratory, will develop a new generation of high energy, low cost planar liquid sodium beta batteries for grid scale electrical power storage applications. Arizona State University, in partnership with Fluidic Energy Inc., Earlier post.) DOE grant: $7,200,000).
Researchers at Monash University in Australia are proposing a roadmap to renewable ammonia being produced in the future at a scale that is significant in terms of global fossil fuel use. of global greenhouse gas emissions (or about 1.4% The reaction between N 2 and H 2 requires temperatures in excess of 400 ?
In the first group, 16 awards totaling $435 million will support fully integrated, regional Smart Grid demonstrations in 21 states, representing more than 50 utilities and electricity organizations with a combined customer base of almost 100 million consumers. Center for the Commercialization of Electric Technologies (TX).
Critical materials are used in many products important to the US economy and energy technologies, such as rare-earth elements used to manufacture high-strength magnets for offshore wind-turbine generators and lithium and cobalt in lithium-ion batteries for electric vehicles. Topic 2, Area of Interest 1: Rare Earth Element Separation.
Benson from Stanford University and Stanford’s Global Climate and Energy Project (GCEP) has quantified the energetic costs of 7 different grid-scale energy storage technologies over time. The Stanford study considered a future US grid where up to 80% of the electricity comes from renewables. Credit: Barnhart and Benson, 2013.
The latest funding is going to projects that could improve energy efficiency in buildings by reducing loads on air conditioners; reduce costs associated with generating electricity from solar power; and improve efficiency and power density of electric machines. Alameda, CA): Airborne Wind Turbine. million in funding.
This latest round of ARPA-E projects seek to address the remaining challenges in energy storage technologies, which could revolutionize the way Americans store and use energy in electric vehicles, the grid and beyond, while also potentially improving the access to energy for the US. measurement capabilities and lowering the cost of electric.
The money will help projects further develop their greenhouse gas removal technologies, which include a machine that can pull carbon dioxide out of the air, a plant to convert household waste into hydrogen for use in the transport industry, and a system to remove carbon dioxide from seawater. Biohydrogen Greenhouse Gas Removal Demonstration”.
A combined team of engineers and technicians from Ad Astra Rocket Company and Cummins Power Generation have successfully powered a Cummins-built electrical generator using mixtures of hydrogen and biogas. The electrical generator designed and manufactured by Cummins is part of an experimental 7.5 and EARTH University in Costa Rica.
A study published by the Centre on Regulation in Europe (CERRE) has explored the possible impact of increased electrification of road transportation and domestic heating and cooking on the energy system (electricity and gas), as well as on CO 2 emissions and on GDP.
Researchers at the Department of Energy’s Pacific Northwest National Laboratory (PNNL) and Bonneville Power Administration (BPA) have identified two compressed air energy storage methods for the temporary storage of the Northwest’s excess wind power and two eastern Washington locations to put them into practice.
There, d elegations from Azerbaijan, Georgia, Hungary, and Romania finalized an ambitious plan: to generate up to 6 gigawatts of clean energy in the Caucasus region, run the electricity through a cable along the bottom of the Black Sea, and deliver it to Europe. GW , by 2030. That would be enough to supply over 2 million European households.
The partners have already tested open-fan engines in two different series of wind-tunnel tests in Europe, Ali added. A scale model of an open-fan aircraft engine was tested last year in a wind tunnel in Modane, France. It significantly improves the energy efficiency and the performance.
Researchers at Stanford University have developed a nanocrystalline copper material that produces multi-carbon oxygenates (ethanol, acetate and n-propanol) with up to 57% Faraday efficiency at modest potentials (–0.25?volts 57% of the electric current went into producing these two compounds from carbon monoxide). volts to –0.5?volts
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