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DOE awards $8.4M for accessing geothermal potential from abandoned oil and gas wells

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The selected projects include: Geothermix, LLC (Austin, TX) Geothermix will harvest waste heat from existing oil and gas wells in Texas to generate commercial quantities of geothermal electricity. ICE Thermal Harvesting (Houston, TX). University of Oklahoma (Norman, OK).

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Alphabet Energy closes $23.5M Series C; thermoelectric waste-heat-to-power for oil & gas and automotive

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To keep pace with oil and gas industry demand for remote power generation solutions, Alphabet Energy has opened a sales and support office in Houston.

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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).

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NSF awards $2M to Rice U collaboration to explore direct conversion of CO2 into fuels

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The assistant professor and William Marsh Rice Trustee Chair of Chemical and Biomolecular Engineering has proposed the development of a modular electrochemical system that will provide “a sustainable, negative-carbon, low-waste and point-source manufacturing path preferable to traditional large-scale chemical process plants.”.

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UH team reports new catalyst efficiently produces hydrogen from seawater; promising for large-scale hydrogen production, desalination

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Researchers from the University of Houston have reported a significant breakthrough with a new oxygen evolution reaction catalyst that, combined with a hydrogen evolution reaction catalyst, achieved current densities capable of supporting industrial demands while requiring relatively low voltage to start seawater electrolysis.

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Port of Corpus Christi, Howard announce to convert Javelina refinery services facility to blue hydrogen production

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Javelina controls approximately sixty million cubic feet per day (MMcf/d) of hydrogen production through a combination of hydrogen entrained in the refineries’ waste gas that the facility processes, and hydrogen produced through a steam methane reformer process.

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New thermoelectric material offers higher output power than other available materials

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Researchers at the University of Houston, with their colleagues at Boston College, have created a new thermoelectric material—germanium-doped magnesium stannide (Mg 2 Sn 0.75 Ge 0.25 )—intended to generate electric power from waste heat with greater efficiency and higher output power than currently available materials.

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