Remove 2015 Remove Carbon Remove Gas-Electric Remove Sodium
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Polymer microcapsules with liquid carbonate cores and silicone shells offer a new approach to carbon capture

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A multi-institution team of researchers has developed a novel class of materials that enable a safer, cheaper, and more energy-efficient process for removing greenhouse gas from power plant emissions. They have significant performance advantages over the carbon-absorbing materials used in current CCS technology. —Vericella et al.

Polymer 150
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Nornickel presents market review of nickel and platinum group metals

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Overall, despite nickel demand growth, which has averaged 7% per annum since 2015, Indonesia is creating a supply glut and losing potential revenue by selling the country’s nickel resources at substantial discounts. Nornickel remains the largest high-grade nickel producer with one of the lowest carbon footprints. Mt to 3.22

Market 304
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NSF to award $13M for fundamental engineering research on production of electricity and fuels

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Processes for sustainable energy production must be environmentally benign, reduce greenhouse gas production, and utilize renewable resources. Advanced systems such as lithium-air, sodium-ion, as well as lithium-ion electrochemical energy storage are appropriate. Closing date for applications is 20 October 2015.

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Successful performance test of natural Albany graphite versus synthetic graphite in a Ballard fuel cell stack; potential cost reduction

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The membrane electrode assembly (MEA), which includes the gas diffusion layer (GDL), is a critical component of a PEM fuel cell that must meet exacting performance standards for the fuel cell to be robust and reliable. treatment using sodium hydroxide. The company has been able to achieve a carbon purity result of >99.9%

Fuel 150
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US DOE Issues Request for Information on Hydrogen and Fuel Cell Market Development; Reports to Congress on Program

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Hydrogen produced by water electrolysis has the potential to be a useful means of storing excess electricity generated using wind, solar, and other intermittent renewable energy. Biogas, including anaerobic digester gas, can be reformed to produce hydrogen and used in a fuel cell to produce significant amounts of electricity and heat.

Congress 150
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MIT and Moscow State collaborating on advanced batteries, metal-air batteries and reversible fuel/electrolysis cells

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Other work focuses on sodium as an earth-abundant alternative to lithium, but while it could lower cost, sodium ions also carry just a single charge. We need a way of producing alternative cleaner fuels, minimizing use of hydrocarbons, or at a minimum recycling the carbon dioxide to form these more useful fuels. earlier post ).

MIT 150