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Starfire Energy closes major funding round; green ammonia and hydrogen solutions

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Ammonia offers an energy density comparable to fossil fuels and significantly higher than Li-ion batteries and compressed or liquid hydrogen. It can be stored and transported inexpensively and easily, leveraging established infrastructure and shipping networks, and is regulated by well-developed codes and standards.

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Ohio Third Frontier Advanced Energy Program Recommends Nearly $7.2M in Funding for 6 Projects; 3 Li-ion Awards

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The Ohio Third Frontier Advanced Energy Program supports research and development that addresses the technical and cost barriers to commercialization of advanced energy components and systems, with preference to wind, biomass, and energy storage in Ohio. Development of Thermal Management Solutions for Lithium-Ion Batteries.

Li-ion 218
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EU investing €1.8B in 17 large-scale clean tech projects

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Grants will be disbursed from the Innovation Fund to help bring technologies to the market in energy-intensive industries, hydrogen, renewable energy, carbon capture and storage infrastructure, and manufacturing of key components for energy storage and renewables. The EU is investing more than €1.8 A third project will capture the CO?

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Electrovaya to provide repurposed end-of-life electric vehicle Li-ion battery energy storage system to Manitoba Hydro

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The repurposed batteries could be used to store electricity generated by renewable energy systems, such as wind and solar power. Our hope is that utilities will be able to take advantage of the significant number of the used batteries that will come into the market after the large scale introduction of plug-in electric vehicles.

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Power-to-gas trial to inject hydrogen into Australia’s gas grid; A$5M award to AquaHydrex

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The Australian Renewable Energy Agency (ARENA) announced a trial for a new type of electrolyzer which could see excess renewable energy stored in the gas grid and used to decarbonize Australia’s gas supply. Storing renewable energy directly in the gas network was a logical first route to market for the invention.

Gas 150
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PNNL team finds that new electrolyte mix increases energy storage capacity of vanadium redox batteries by 70%

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A VRB, for example, has operating cost about $500/kWh or higher—“obviously” still too high for broad market penetration, PNNL researchers noted in an earlier paper. And with just a little more work, the battery could potentially increase the use of wind, solar and other renewable power sources across the electric grid.

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Univ. of Texas researchers propose lithium- or sodium-water batteries as next generation of high-capacity battery technology; applicable for EVs and grid storage

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John Goodenough, are proposing a strategy for high-capacity next-generation alkali (lithium or sodium)-ion batteries using water-soluble redox couples as the cathode. The high energy storage has stimulated a worldwide study of Li-air batteries. A typical Li-air battery discharges at 2.5-2.7 V vs. Li/Li + at room temperature.

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