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DOE Awarding $620M for Smart Grid Demonstration and Energy Storage Projects

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These 32 demonstration projects, which include large-scale energy storage, smart meters, distribution and transmission system monitoring devices, plug-in vehicles, and a range of other smart technologies, will act as models for deploying integrated Smart Grid systems on a broader scale. Los Angeles Department of Water and Power.

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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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Integrated Power Block Heat Exchanger/Thermal Energy Storage System for CSP Plants, $348,000 CFOAM LLC, Triadelphia, W. Neutron Spectrum Generator, $75,000 Rapid Field Chemical Detection and Determination of Actinides, $42,500 Switchable Solvent Water Extraction for Material Processing and Isolation, $150,000 Trevi Systems Inc.,

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New nanoparticle copper compound cathode could enable low-cost, long-life and high-power potassium-ion batteries for grid storage

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Stationary energy storage systems that can operate for many cycles, at high power, with high round-trip energy efficiency, and at low cost are required. Existing energy storage technologies cannot satisfy these requirements. The researchers chose to use a water-based electrolyte. —Wessells et al.

Low Cost 304
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Energy Harvesting for Wearable Technology Steps Up

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Not least of those considerations is energy storage [and generation].” Using built-in fuel cells, the device absorbed the lactate in the sweat and combined it with atmospheric oxygen to generate water and pyruvate. The group fabricated their device using CFRP, sodium potassium niobate (KNN) nanoparticles, and epoxy resin.

Energy 136
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MIT-led team devises new approach to designing solid ion conductors; implications for high-energy solid-state batteries

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Researchers led by a team from MIT, with colleagues from Oak Ridge National Laboratory (ORNL), BMW Group, and Tokyo Institute of Technology have developed a fundamentally new approach to alter ion mobility and stability against oxidation of lithium ion conductors—a key component of rechargeable batteries—using lattice dynamics.

MIT 170
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CalSEED awards $4.2M to early-stage clean energy innovations

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The awardees went through a rigorous process including a review with CalSEED’s curated technical advisory committee, who volunteered their time and expertise to select the most promising future clean energy technologies. that boosts the energy capacity via nanotechnology-enabled self-assembly of functional nanocomponents, reducing?the

Clean 371
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ORNL advancing LDH sorbent to recover lithium from geothermal brine wastes

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These plants pump hot water from geothermal deposits and use it to generate electricity. The LDH sorbent is made up of layers of the materials, separated by water molecules and hydroxide ions that create space, allowing lithium chloride to enter more readily than other ions such as sodium and potassium.

Waste 314