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The US Department of Energy (DOE) Advanced Research Projects Agency - Energy (ARPA-E) will award approximately $36 million to 22 projects to develop transformational electric vehicle (EV) energystorage systems using innovative chemistries, architectures and designs. Advanced Aqueous Lithium-Ion Batteries. EnZinc Inc.
Researchers from the University of California SanDiego (UCSD) and the University of Texas at Austin, with colleagues at the US Army Research Laboratory and Lawrence Berkeley National Laboratory, have developed a thick cobalt-free high voltage spinel (LiNi 0.5 O 4 (LNMO)) cathode material with high areal capacity.
MW-Scale Swappable and Reusable Second-Use EV Battery EnergyStorage Unit for Maximum Cost-Effectiveness. Element Energy. RePurpose Energy. Low-Cost and Scalable Second Use Battery Demonstration in Central California for Equitable Domestic Manufacturing and Job Growth. UC SanDiego.
The new product will be on display at the DistribuTECH Conference and Exhibition, which opens tomorrow at the SanDiego Convention Center. The energystorage segment of the global UPS market is valued at nearly $1 billion a year, so it represents an attractive opportunity for our products. Maxwell Technologies, Inc.
Ecolectro is developing alkaline exchange ionomers (AEIs) to enable low-cost fuel cell and electrolyzer technologies. Developments from the project may be useful for other energy conversion technologies, such as ammonia production and high-temperature direct liquid fuel cells. University of California, SanDiego.
The US Department of Energy has selected 13 projects for investment of up to $62 million over five years to research, develop, and demonstrate Concentrating Solar Power (CSP) systems capable of providing low-cost electrical power. These selections include: General Atomics – SanDiego, CA – up to $2.1 SkyFuel, Inc.
The California Energy Commission has awarded $1,585,490 to spur research on projects including a solid-state Li-ion battery system for grid-scale energystorage. Funds for the 13 projects come from the Public Interest Energy Research (PIER) program. This technology would increase efficiency and lower production costs.
Energy Laboratory, SuperPower, Tai-Yang. High Performance, LowCost Superconducting Wires and Coils. for High Power Wind Generators The University of Houston will develop a new, low-cost. rare earth material imports, reduce the cost and improve. efficiency of green energy applications such as wind turbines.
O 4 (LNMO) are appealing as high voltage, high capacity, environmentally friendly, and lowcost cathodes for use in numerous markets. This approach unlocks a new, powerful way to conduct in situ studies under operando conditions of nanomechanics in many electrochemical energystorage systems at the single particle level.
The technology has the potential to save energy and help the state achieve its bioenergy goals. Daniel Codd of SanDiego will receive $95,000 to design, test and validate a new solar power receiver capable of collecting sunlight at high temperatures. Russell Carrington of Thermaphase Energy, Inc.
REEACH projects seek to create innovative, cost-effective, and high-performance energystorage and power generation sub-systems for electric aircraft, with a focus on fuel-to-electric power conversion technologies. University of California, SanDiego. Fuceltech Inc. Precision Combustion, Inc.
NREL research confirms that after being used to power a car, a Li-ion battery retains approximately 70% of its initial capacity—making its reuse a valuable energystorage option for electric utilities, before battery materials are recycled. —Ahmad Pesaran, NREL EnergyStorage Group Manager.
The company’s new Smartville 360 ESS is a scalable second-life energystorage system that’s designed to incorporate battery packs from different manufacturers (currently, Tesla and Nissan), at varying levels of health, into one unified system. We test them on their quality for energystorage applications.
By creating high performance parts built with solid ion conductors—solids in which ions can be mobile and store energy—the IONICS program will focus on new ways to process and integrate these parts into devices with the goal of accelerating their commercial deployment. —ARPA-E Director Dr. Ellen D. 2,250,000.
The idea, says Daniel Codd , a researcher in renewable energy systems at the University of California, SanDiego, is to store solar-produced heat in rock formations below the surface, creating a solar-charged geothermal resource in which heat is stored for meaningful durations. This can imply a long road to commercial success.”
To date, the TCF has funded more than 380 projects by unlocking more than $170 million in funding from more than 300 private sector partners, including automotive manufacturers, energystorage companies, utilities, bioenergy companies, solar providers, and aerospace companies. Oberon Fuels (SanDiego, California).
The Energy Department’s Advanced Research Projects Agency-Energy (ARPA-E) will award $60 million in funding to 23 new projects aimed at creating highly efficient and scalable dry-cooling technologies for thermoelectric power plants and developing prototype technologies to explore new pathways for fusion power. Stony Brook University.
Enable smart charging and vehicle grid integration through solutions such as demand response, and other energystorage and load management strategies. The Battery500 Consortium aims to triple the specific energy (to 500 Wh/kg) relative to today’s battery technology while achieving 1,000 electric vehicles cycles. advisory board).
Integrated Power Block Heat Exchanger/Thermal EnergyStorage System for CSP Plants, $348,000 CFOAM LLC, Triadelphia, W. Development of low-cost magnetocaloric materials, $150,000 General Engineering and Research, L.L.C., SanDiego, Calif. Amesbury, Mass. Touchstone Research Laboratory, Triadelphia, W.
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