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For comparison, the US DOE’s 2020 target for the levelized cost of hydrogen (production only) is $2.30/kg. The findings are published in a paper in the International Journal of Hydrogen Energy. Credit: NIMS. 2018.11.119 ).
Japan’s New Energy and Industrial Technology Development Organization (NEDO), Toshiba Energy Systems & Solutions Corporation (Toshiba ESS), Tohoku Electric Power Co., Japan’s New Energy and Industrial Technology Development Organization (NEDO), Toshiba Energy Systems & Solutions Corporation (Toshiba ESS), Tohoku Electric Power Co.,
Scientists at the Department of Energy’s Oak Ridge National Laboratory have developed a scalable, low-cost method to improve the joining of materials in solid-state batteries, resolving one of the big challenges in the commercial development of safe, long-lived energy storage systems. Credit: Andy Sproles/ORNL, US DOE.
Heliogen and Bloom Energy have successfully demonstrated the production of green hydrogen by integrating the companies’ technologies: Heliogen’s concentrated solar energy system and the Bloom Electrolyzer. Bloom Energy officially introduced the Bloom Electrolyzer in July 2021. Source: Heliogen. Source: Heliogen.
AW-Energy Oy is entering the commercial hydrogen market by introducing a combined WaveRoller and HydrogenHub process for the production of green hydrogen. In AW-Energy’s concept, wave energy complements solar power production to enable large-scale green hydrogen. —Christopher Ridgewell, CEO of AW-Energy Oy.
million technology development contract to Zenlabs Energy Inc. in Fremont, California for a low-cost/fast-charge (LCFC) technology development. Zenlabs has developed proprietary silicon-based formulations that offer higher specific capacity, longer cycle life, and lower cost. This is Zenlabs’ third contract with USABC.
Energy Vault, a company developing grid-scale gravity energy storage solutions, has entered into an energy storage system agreement with DG Fuels, a developer of renewable hydrogen and biogenic-based, synthetic sustainable aviation fuel (SAF) and diesel fuel. Under the terms of the agreement, Energy Vault agreed to provide 1.6
ion Ventures, a modern utility and energy storage infrastructure specialist, and LiNa Energy , a solid-state battery technology developer, concluded their first successful trial of LiNa’s proprietary solid-state sodium-nickel battery platform at an undisclosed location in South East England last week.
The US Department of Energy (DOE) closed on a $504.4-million million loan guarantee to the Advanced Clean Energy Storage project in Delta, Utah (ACES Delta)—marking the first loan guarantee for a new clean energy technology project from DOE’s Loan Programs Office (LPO) since 2014.
The California Sustainable Energy Entrepreneur Development (CalSEED) program announced that the fourth cohort of innovative clean energy concepts has been approved by the California Energy Commission (CEC); 28 companies out of 212 were selected to receive grants of $150,000 each.
European Energy , a Danish developer and operator of green energy projects, has ordered a 50 MW electrolyzer from Siemens Energy for use in developing the first large-scale commercial e-Methanol production facility. —Knud Erik Andersen, CEO of European Energy.
Researchers in China have developed a nitroaromatic cathode that performs a six-electron reaction per nitro group, significantly improving the specific capacity and energy density compared with organic electrodes based on single-electron reactions. 1 and energy density of 3,273 Wh?kg 1, which surpass all existing organic cathodes.
The California Energy Commission (CEC) awarded $7.8 Yet, significant barriers stand in the way of accessing this abundant resource and using it to achieve many of the state’s statutory energy goals, including increasing the value of geothermal resources to California’s electricity system. to two lithium recovery projects.
In addition to geologic production, methane can be produced from renewable or recycled CO 2 sources, and can be used as fuel itself or as an H 2 energy carrier. Using EEMPA instead reduces the energy needed to fuel such a reaction. But these traditional solvents have relatively high water content, making methane conversion difficult.
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. The Bloom Energy Servers are a proven market leader in clean, reliable, and resilient on-site power.
The US Department of Energy (DOE) has begun work on the Grid Storage Launchpad (GSL), a $75-million facility located at Pacific Northwest National Laboratory (PNNL) in Richland, Washington that will boost clean energy adaptation and accelerate the development and deployment of long-duration, low-cost grid energy storage.
Using an inexpensive polymer called melamine, researchers from UC Berkeley, Texas A&M and Stanford have created a cheap, easy and energy-efficient way to capture carbon dioxide from smokestacks. The lowcost of porous melamine means that the material could be deployed widely. Haiyan Mao et al.
Researchers from the Karlsruhe Institute of Technology (KIT) and their Canadian partners have designed a low-cost photoreactor design for solar-driven synthesis. The photoreactors have a low level of complexity, are readily manufacturable via mass fabrication techniques in polymers, and are easy to adapt to diverse photocatalysts.
the developer of a technology to produce renewable hydrogen using sunlight and water ( earlier post ), is working with Suzhou GH New Energy Co. Gen 2 will use easily scalable low-cost electrochemical processing for manufacturing multi-junction nanoparticles for PEC production of hydrogen. HyperSolar, Inc.,
Lithium iron phosphate (LiFePO 4 ) is widely used as a low-cost, safer cathode material for Li-ion batteries; however, low ionic and electronic conductivity limit its rate performance. The approach provides a new strategy toward low-cost, long-life, and high-power batteries, the researchers concluded. 1c00037.
The Road Map stresses the versatility of hydrogen as an enabler of the renewable energy system; an energy vector that can be transported and stored; and a fuel for the transportation sector, heating of buildings and providing heat and feedstock to industry. Toyota; and Xcel Energy. .; Toyota; and Xcel Energy.
Utility holding company Xcel Energy wants 1.5 Electric vehicles are the next frontier in the clean energy transition, and we are committed to making charging EVs easy, convenient and affordable for customers. —Ben Fowke, chairman and CEO, Xcel Energy. million electric vehicles in its service areas by 2030. Powering 1.5
A multi-institutional team led by the US Department of Energy’s (DOE) Argonne National Laboratory (ANL) has developed a low-cost cobalt-based catalyst for the production of hydrogen in a proton exchange membrane water electrolyzer (PEMWE). volts (Nafion 212 membrane) and low degradation in an accelerated stress test.
The focus of the research project “MaSSiF – Material Innovations for Solid-State Sulfur-Silicon Batteries” is the design, construction and evaluation of lightweight and low-cost sulfur-based prototype cells with high storage capacities. The German Federal Ministry of Education and Research (BMBF) is providing nearly €2.9
Westinghouse Electric Company and Bloom Energy Corporation have entered into a Letter of Intent to pursue clean hydrogen production in the commercial nuclear power market. Westinghouse and Bloom Energy will jointly develop an optimized and large-scale high-temperature integrated electrolysis solution for the nuclear industry.
The two-year project, which includes a 50% cost share, will focus on the development of a low-cost, fast-charging EV battery technology. USABC is a subsidiary of the United States Council for Automotive Research LLC (USCAR), which was enabled by a cooperative agreement with the US Department of Energy (DOE).
The US Department of Energy (DOE) announced $46 million in funding ( DE-FOA-0002809 ) to eight companies advancing designs and research and development for fusion power plants. For the first 18 months of DOE’s program, CFS milestones focus on its commercially relevant net energy fusion device, called SPARC. Focused Energy Inc.
After an extensive review we believe that Ionblox’s pouch cell technology will be very well positioned to achieve superior combined performance for high power and high energy density, and we are very excited to continue our joint development. million in cost share for the development of low-cost, fast-charge electric vehicle batteries.
Canada-based Aurora Hydrogen, a company developing emission-free hydrogen production technology, has raised $10 million in Series A funding led by Energy Innovation Capital. There is an accompanying need to develop new low-cost and low-carbon technologies for hydrogen production.
Hyzon Motors, a supplier of hydrogen-powered fuel cell electric vehicles,and TC Energy Corporation will collaborate on development, construction, operation, and ownership of hydrogen production facilities (hubs) across North America. We believe we are well positioned to execute on the development of hydrogen and CO 2 pipelines.
Bramble Energy , an innovator in fuel cell technology, has joined forces with Equipmake, Aeristech and the University of Bath to develop a new hydrogen double-deck bus integrating Bramble’s low-cost printed circuit board fuel cell (PCBFC) technology. Earlier post.)
The US Department of Energy (DOE) recently awarded $3.7 Selected projects will use HPC to address complex challenges, from improving additive manufacturing processes to increasing the lifecycle energy efficiency of jet-engine components to improving the performance of materials used to convert CO 2 into high-value chemicals and products.
Researchers are deploying vanadium to develop a new generation of high performing, lowcost sodium-ion EV batteries and stationary energy storage systems. The post Vanadium Opens The Door To Low-Cost EV Batteries Made From Salt appeared first on CleanTechnica.
The US Department of Energy (DOE) today announced $175 million for 68 research and development projects aimed at developing novel advanced energy technologies. Led by DOE’s Advanced Research Projects Agency-Energy (ARPA-E), the OPEN 2021 program prioritizes funding high-impact, high-risk technologies that support novel approaches.
The US Department of Energy (DOE) announced $3 million in funding for 10 high-performance computing projects that will advance cutting-edge manufacturing and clean energy technologies. Improvements in manufacturing processes that result in significant national energy savings and carbon emissions. All Selectees. PROJECT TITLE.
Group14 Technologies, a provider of silicon-carbon composite materials for global lithium-ion markets, announced that it has been selected as a winner of the Department Of Energy’sEnergy Storage Grand Challenge and will receive a $3.96-million million award.
The program is designed to support early stage, transformative energy technologies. ARPA-E believes we may be amid a complete paradigm shift on how we view MSW, no longer as trash but as an abundant and sustainable source of energy and valuable elements like Al, Cu, Pt, Ag, Au, In, Nd, Pr, etc. million; 1-5 awards.
Sakuu , developer of the first 3D-printed solid-state battery ( earlier post ), reports achieving an energy-density of 800 Wh/L in its first-generation non-printed lithium-metal battery. In addition to the 800 Wh/L mark, the first-generation lithium-metal battery is demonstrating high energy retention at 97% after 200 cycles.
This one-step nitrogen-fixation strategy to produce ammonia is eco-friendly and lowcost, which converts widely available starting materials into a value-added product. A) Diagrams of the reaction steps and (B) corresponding free energy changes found from DFT calculations. —Song et al. Song et al. Song et al.
Hydrogen produced with renewable electricity could compete on costs with fossil fuel alternatives by 2030, according to a new report from the International Renewable Energy Agency (IRENA). For that, today’s manufacturing capacity of less than 1 GW would have to massively grow beyond 100 GW in the next 10 to 15 years.
Researchers led by the Department of Energy’s Pacific Northwest National Laboratory (PNNL) have extended the capacity and duration of sodium-aluminum batteries. Sodium and aluminum are a natural combination of inexpensive, abundant elements as a redox pair for battery energy storage. of peak charge capacity. —Weller et al.
Zenlabs Energy, an advanced lithium-ion cell company, announced that Idaho National Laboratory (INL) has successfully tested more than 1,000 charge-discharge cycles from its high-energy Silicon anode pouch cells. Zenlabs is the recipient of a $4.8-million, Earlier post.). Zenlabs is the recipient of a $4.8-million, Earlier post.).
This system will be installed in the Eurus Tashirotai Wind Farm by Toyota Tsusho Corporation and Eurus Energy Holdings Corporation, and the four companies will begin a collaborative verification project around fall of this year.
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