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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. The project is supported by DOE’s Hydrogen and Fuel Cell Technologies Office within the Office of Energy Efficiency and Renewable Energy.
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. Operation of this technology under dynamic conditions will be confirmed during a year-long test.
While there is global potential to generate renewable energy at costs already competitive with fossil fuels, a means of storing and transporting this energy at a very large scale is a roadblock to large-scale investment, development and deployment. Generation 2 moves the Haber-Bosch process to renewable sources of hydrogen.
Research in mesoscale atmospheric modeling by the University of North Carolina (UNC) Charlotte’s Amanda S. Adams and Harvard University’s David W. Keith suggests that the power capacity of large-scale wind farms may have been significantly overestimated. Large-scale wind farms can comprise hundreds of tower-mounted turbines.
To generate the renewable electricity needed to feed production of green hydrogen, Cepsa will develop a 3GW portfolio of wind and solar energy projects with an additional €2-billion investment. It also has one of the highest wind and solar photovoltaic power generation and production capacity in Europe, and at the lowest cost.
Bloom Energy, a developer of solid oxide fuel cell power generators, announced the ability of its Energy Servers to operate on renewable hydrogen. At peak times, some US states and countries already have more renewable power than their grids can handle.
Urban Green Energy (UGE) and GE unveiled the first integrated wind-powered electric vehicle charging station. The Sanya Skypump pairs UGE’s 4 kW vertical wind turbine with GE’s Durastation electric vehicle (EV) charging technology (Level 2, 30A) in a single unit, with all required electrical systems located within the tower.
AC Propulsion has delivered an AC Propulsion-powered eBox to the Technical University of Denmark (DTU), where it will be used to evaluate Vehicle to Grid (V2G) operation as part of a research program. The University of Delaware (UD) has developed communication and control systems for V2G technology and has had good results on the US grid.
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.
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.
Danish Minister for Transport Trine Bramsen, Aalborg municipal government representatives, and European media were invited to witness the first test runs of Geely methanol vehicles on Danish roads and visit the e-methanol production facility at Aalborg University.
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
has signed a non-binding Memorandum of Understanding (MOU) with the Hawai’i Natural Energy Institute (HNEI) of the University of Hawai’i at Manoa and the Hawai’i Electric Light Company to supply a one-megawatt ALTI-ESS energy storage system for a test of wind energy integration. Altair Nanotechnologies, Inc.
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. —Weis et al.
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.
BEHYOND brings together global players in energy, EDP and TechnipFMC, with the CEiiA research center - Center for Engineering and Development; WavEC Offshore Renewables; and the University of South-Eastern Norway (USN). EDP, through the participation of EDP NEW and EDP Inovação, is the project.
The following awards have been selected to receive funding: Bayesian Integration for Marine Spatial Planning and Renewable Energy Siting. The project team has experience with two such methods that, when integrated, can support the needs of ocean renewable energy planning in the context of coastal and marine spatial planning and beyond.
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.
The electrocatalytic conversion of CO 2 using renewable energy could establish a climate-neutral, artificial carbon cycle. Excess energy produced by photovoltaics and wind energy could be stored through the electrocatalytic production of fuels from CO 2. These could then be burned as needed. Credit: Angewandte Chemie.
The least expensive way for the Western US to reduce greenhouse gas emissions enough to help prevent the worst consequences of global warming is to replace coal with renewable and other sources of energy that may include nuclear power, according to a new study by University of California, Berkeley, researchers. —Daniel Kammen.
The University of Michigan (U-M) and Shanghai Jiao Tong University (SJTU) have selected six research teams to share $1.05 million in funding for renewable energy and biomedical technology projects in the second year of a joint program that teams up investigators from both schools.
Xcel Energy has released the preliminary results from its wind-to-battery (W2B) storage project in Minnesota, and termed the technology successful. In October 2008, Xcel began testing a one-megawatt sodium-sulfur (NaS) battery ( earlier post ) to demonstrate its ability to store wind energy and move it to the electricity grid when needed.
Enviva, a global renewable energy company specializing in sustainable wood bioenergy, and Mitsui O.S.K. This will include the “Wind Challenger”, a cargo ship design with a hard sail, which would reduce emissions by harnessing wind energy. MOL has been jointly studying the wind technology with cross-industrial partners.
Mexico-based global construction materials company CEMEX is partnering with integrated chemicals and energy company Sasol ecoFT and renewable energy company ENERTRAG to combine CO 2 with hydrogen to produce sustainable aviation fuel. The consortium will source green hydrogen generated exclusively from wind and solar energy from ENERTRAG.
However, there is a growing need to control energy flows intelligently in order to make optimum use of electricity from renewable sources. In this way, electricity from renewable sources can be tapped and stored as it becomes available.
Researchers in China led by a team from Fudan University have demonstrated the electrochemical reduction of CO 2 toward C 2+ alcohols with a faradaic efficiency of ~70% using copper (Cu) catalysts with stepped sites. C 2+ alcohols are desirable due to their high energy densities and large global market capacities.
A team from Fraunhofer Institute for Industrial Engineering IAO, together with Daimler AG and the Institute for Human Factors and Technology Management at the University of Stuttgart, is developing both the charging infrastructure and the energy management systems required to manage large fleets of EVs in a project called charge@work.
Researchers at the University of Melbourne (Australia) have demonstrated a method of direct hydrogen production from air— in situ capture of freshwater from the atmosphere using hygroscopic electrolyte and subsequent electrolysis powered by solar or wind with a current density up to 574 mA cm ?2.
The states account for 35% of US-installed wind capacity and while the region only produces about 4% of the nation’s solar energy, a number of pending large solar farms and community solar projects will greatly increase the region’s solar generating capacity.
Charging and energy are becoming a core business for Volkswagen; the company is building a universal and seamless eco-system for charging its electric models. In Germany, the Volkswagen brand also offers a suitable electricity supply contract with “Volkswagen Naturstrom”, to guarantee fully certified green electricity from renewable energies.
On behalf of the Australian Government, the Australian Renewable Energy Agency (ARENA) awarded A$22.1 million (US$16 million) in funding to 16 research projects to propel innovation in exporting renewable hydrogen. Funding recipients are: Australian National University (ANU) Hydrogen Generation by Electro-Catalytic Systems – $615,682.
The seven awards approved will fund applied R&D projects that will develop utility-scale renewable energy generation technologies. Two of the awardees, Halotechnics and the University of California Los Angeles (UCLA), also received funds from the Advanced Research Projects Agency – Energy (ARPA-E). .: $1 Alternative Fuel and Vehicles.
IBM Quantum is an industry-first initiative to build universal quantum systems for business and science applications. IBM announced that bp has joined the IBM Quantum Network to advance the use of quantum computing in the energy industry. In 2020, bp announced its net zero ambition and its new strategy.
Solid-oxide-fuel-cell manufacturer Bloom Energy is entering the commercial hydrogen market by introducing hydrogen-powered fuel cells and electrolyzers that produce renewable hydrogen. Bloom is capitalizing on this technology by taking terrestrial renewable power and producing hydrogen using solid oxide electrolyzers.
Hydrokinetic energy is an abundant renewable resource that can boost grid resiliency and reduce infrastructure vulnerability, but it is currently a cost prohibitive option compared to other energy generating sources. The 11 SHARKS projects are: National Renewable Energy Laboratory. The University of Michigan.
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. Click to enlarge.
The projects selected are located in 25 states, with 50% of projects led by universities, 23% by small businesses, 12% by large businesses, 13% by national labs, and 2% by non-profits. University of Massachusetts, Amherst. Development of a Dedicated, High-Value Biofuels Crop The University of Massachusetts, Amherst will develop an.
Researchers at the University of Erlangen-Nürnberg (Germany) report in the journal Angewandte Chemie their development of an enhanced platinum catalyst for the steam reforming of methanol to release hydrogen. A central problem of renewable energy technology lies in the great variation of energy generated (i.e., intermittency).
Energy Research Center at RWTH Aachen University, E.ON The project will be coordinated by RWTH Aachen University. The first phase of the project will focus on: Integration of renewable energy sources and testing of a decentralized supply of control power to stabilize grid operation; and. Batteries Power Generation Solar Wind'
Huge and immediate need for renewable-based fuels in shipping represents opportunity for investors, according to ‘Fuelling the Fourth Propulsion Revolution’ report released today. This is the equivalent of the entire world’s current renewable energy production. MWh to €156.40/MWh MWh in 2050). billion in 2017 to $1.6 billion in 2019.
A new battery storage solution for offshore wind energy will be piloted in the world’s first floating wind farm, the Hywind pilot park off the coast of Peterhead in Aberdeenshire, Scotland. Hywind Scotland, located 25 km offshore Peterhead, will consist of five floating wind turbines.
The award recognizes EPA Green Power Partners who distinguish themselves using on-site renewable energy applications, such as solar photovoltaic (PV) or landfill gas. Green power is electricity that is generated from environmentally preferable renewable resources, such as wind, solar, geothermal, biogas, biomass, and low-impact hydro.
Maintaining grid reliability amid increasing renewable energy penetration involves fundamental changes to power system operation and the resources leveraged to provide grid services. In addition to EPRI, NREL, and the University of Washington, the UNIFI consortium currently includes: Three DOE national laboratories.
As states take the lead in confronting climate change, a flagship policy is often Renewable Portfolio Standards (RPS). RPS programs, which require that a certain percentage of the state’s electricity come from renewable sources, currently cover 64 percent of the electricity sold in the United States.
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