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The California Energy Commission (CEC) is awarding $1,135,862 to 12 small-scale projects to research that will reduce the cost of producing electricity, save energy and improve the environment. will receive $95,000 to research a gas stove burner that is 30% more efficient than conventional gas stove burners.
LAES has the potential to drive the development of variable renewable energy sources such as wind and solar power, due to its ability to convert excess/off-peak electricity into multi megawatts hours of stored energy. When power is required, liquid air is drawn from the tanks, pumped to high pressure and heated.
Researchers at the University of Maryland, with colleagues at the University of Illinois at Chicago, report on a new method for expanding graphite for use as a superior anode for sodium-ion batteries in a paper in Nature Communications. Schematic illustration of sodium storage in expanded graphite-based materials.
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 electricalpowerstorage applications. Electronville: High-Amperage Energy Storage Device-Energy Storage for the Neighborhood.
The battery storage system electrified by BMW i is sized so it can be placed in the basement or the garage of a detached house, where the stored energy can either be used for electrically-operated devices in the home or for charging the battery of an electric car.
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).
Toshiba Corporation will supply a large-scale battery energy storage system (BESS) to Tohoku ElectricPower Company’s “Minami-Soma Substation Project to Verify the Improvement of Supply-demand Balance With Large-capacity PowerStorage Systems″.
An international team from MIT, Argonne National Laboratory and Peking University has demonstrated a lab-scale proof-of-concept of a new type of cathode for Li-air batteries that could overcome the current drawbacks to the technology, including a high potential gap (>1.2 V) V in O 2 (gas) → O x− (condensed phase), and η charging > 1.1
The team, led by a group from Hanyang University, used a highly reversible dual-type sulfur cathode (solid sulfur electrode and polysulfide catholyte) and a lithiated Si/SiO x nanosphere anode. sulfur composite on a gas diffusion layer (GDL) electrode in contact with a catholyte solution to which Li 2 S 8 has been added. 1300 mAh g ?1
Electric cars and a smart electric grid have a bright future, according to panelists at a roundtable discussion on the subject that I attended last Friday in Boston. “I ’s power generation, he said. Mr. Thesen said that a factory in Turkey was being refurbished to be able to produce 100,000 electric vehicles a year.
Smart EV charging uses intelligence to manage when and how an electric vehicle plugged into a smart charger will receive power for charging based on the cost of electricity, its availability, and the needs of the driver. Why Driivz for Smart EV Charging and Smart Energy Management? What is EV Smart Charging?
Slashing gasstorage facilities. No new nuclear power plants operational. Additional fees and charges added to electricity prices. Rush to implement Green Power. On a good or windy day these produce around 20% of the UK electricity needs. Plus, most of the heating in homes and offices is gas.
Currently, there are some industrial facilities that use battery swapping to replenish the energy stores of electric forklifts. The whole operation could take less than five minutes, pretty much the same amount of time many people spend filling their gas tanks at stations today. One of the main drawbacks to charge stations is speed.
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