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New long-duration, extended capacity Na-Al battery design for grid storage

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The new battery design could help ease integration of renewable energy into the electrical grid at lower cost, using Earth-abundant metals, according to a study just published in Energy Storage Materials. h is achieved with an estimated raw active materials cost of $7.02 of peak charge capacity. Weller et al.

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Harvard team demonstrates new metal-free organic–inorganic aqueous flow battery; potential breakthrough for low-cost grid-scale storage

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Researchers at Harvard have demonstrated a metal-free organic–inorganic aqueous flow battery—a quinone–bromide flow battery (QBFB)—as an example of a class of energy storage materials that exploits the favorable chemical and electrochemical properties of a family of molecules known as quinones. —Huskinson et al.

Low Cost 374
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RAL proposes new efficient and low-cost process to crack ammonia for hydrogen using sodium amide; transportation applications

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As an abundant and inexpensive material, the development of NaNH 2 -based NH 3 cracking systems may promote the utilization of NH 3 for sustainable energy storage purposes, they suggest. The material costs, however, are very significantly less, the team observed. decomposition efficiency with 0.5 —David et al.

Sodium 210
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Convert Oil Wells to Solve the Solar Storage Problem

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The idea, says Daniel Codd , a researcher in renewable energy systems at the University of California, San Diego, 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. But we can still reduce the carbon [cost] of that oil.”

Oil 121
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New Rutgers non-noble metal catalyst for hydrogen evolution performs as well as Pt in both acid and base

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Here, we show that crystalline Ni 5 P 4 evolves H 2 with geometric electrical to chemical conversion efficiency on par with Pt in strong acid (33 mV dec -1 Tafel slope and ?62 2 , equivalent to ~10% solar photoelectrical conversion efficiency. Platinum is the benchmark material for both devices as it has the best conversion efficiency.

Hydrogen 150
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ARPA-E to award up to $130M in fourth round of funding; focus on biofuels, thermal storage, rare earth alternatives, grid controls, and solar power electronics

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Technologies for low-cost production of advanced biofuels are limited by the small amount of available energy captured by photosynthesis and the inefficient processes used to convert plant matter to fuel. PETRO aims to create plants that capture more energy from sunlight and convert that energy directly into fuels.

Grid 231
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DOE to award up to $4.6M for innovations in fuel cell and hydrogen fuel technologies

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Fuel cell–based electrochemical conversion devices for stationary energy storage (TRL 2- 5). Completely innovative hydrogen production and delivery technologies to reach the DOE cost goal of $2-$4/kg of hydrogen (produced and dispensed but untaxed) (TRL 2-5). including soft costs) are of interest.

Hydrogen 231