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Researchers report high thermoelectric performance for indium-doped tin telluride; waste heat recovery applications

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Researchers at the University of Houston’s physics department and the Texas Center for Superconductivity, MIT and Boston College have found that indium-doped tin telluride (SnTe) shows high thermoelectric performance, with a peak figure of merit (ZT) of ?1.1 atom % In-doped SnTe at about 873 K (600 ° C).

Waste 225
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MIT Energy Initiative announces 2014 seed grant awards

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The MIT Energy Initiative (MITEI) announced its latest round of seed grants to support early-stage innovative energy projects. Computational tools for catalyst design: The ability to convert methane gas directly to liquid methanol at often-remote recovery sites would significantly alter the storage, transport, and use of the gas.

MIT 210
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S4 Energy Solutions to Develop Plasma Gasification Project at Waste Management Landfill for Waste to Fuels and Power

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S4 Energy Solutions LLC , a joint venture by Waste Management, Inc. and InEnTec LLC, plans to develop a plasma gasification facility at Waste Management’s Columbia Ridge Landfill in Arlington, Oregon. The planned facility will convert municipal solid waste into synthetic fuels and power. PEM facility equipment overview.

Waste 170
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Transphorm introduces Gallium Nitride diode; >99% efficient DC-DC boost converter

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Transphorm says that its solutions cut energy waste by 20% and simplify the design and manufacturing of a wide variety of electrical systems and devices, including motor drives, power supplies and inverters for solar panels and electric vehicles. is showcasing a GaN-based, dc-to-dc boost converter running at more than 99% efficiency.

DC 231
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MIT researchers advancing development of supercritical water upgrading of heavy crude; lower cost, energy use and CO2

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Findings by MIT researchers could help advance the commercialization of supercritical water technology for the desulfurization and upgrading of high-sulfur crude oil into high-value, cleaner fuels such as gasoline without using hydrogen—a major change in refining technology that would reduce costs, energy use, and CO 2 emissions.

MIT 150
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Aemetis to license InEnTec gasification technology to produce cellulosic ethanol; coupled with LanzaTech syngas-to-ethanol tech

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The PEM system uses heating from electrically conducting gas (a plasma) to convert the feedstock (usually waste) to valuable products. InEnTec’s technology was developed at MIT and the Pacific Northwest National Laboratory with the support of the US Department of Energy. per gallon, about $3.00

India 170
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US DOE awards more than $175M to 40 projects for advanced vehicle research and development

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Light-weighting materials : Five projects awarded to accelerate commercial availability of lighter weight vehicles using advanced materials that dramatically reduce vehicle weight while maintaining the highest safety standards. valve train vs. bearings). Light-weighting materials. General Motors, LLC. Fleet efficiency. Grantee Description.