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University of Houston team demonstrates new efficient solar water-splitting catalyst for hydrogen production

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Researchers from the University of Houston (UH) have developed a cobalt(II) oxide (CoO) nanocrystalline catalyst that can carry out overall water splitting with a solar-to-hydrogen efficiency of around 5%. The generation of hydrogen from water using sunlight could potentially form the basis of a clean and renewable source of energy.

Houston 268
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US/China team develops robust, stable Ni/Fe OER catalyst for water-splitting at low overpotentials

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A team from the University of Houston and Hunan Normal University in China has developed an active and durable oxygen evolution reaction (OER) catalyst for water splitting that meets commercial crtieria for current densities at low overpotentials. V for current densities of 200-400 mA cm -2. —Zhou et al.

Water 170
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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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The US Department of Energy (DOE) announced more than $24 million in funding for 77 projects supported by the Office of Technology Transitions (OTT) Technology Commercialization Fund (TCF). Commercializing 3D Printable Feedstocks for the Advanced Manufacturing of Energy Products, $300,000 MilliporeSigma, St. Petaluma, Calif.

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UH team develops new, highly efficient and durable OER catalyst for water splitting

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Researchers at the University of Houston have developed a catalyst—composed of easily available, low-cost materials and operating far more efficiently than previous catalyst—that can split water into hydrogen and oxygen. —Zhou et al. —Shuo Chen.

Water 186
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UH team develops fast, cost-efficient method to grow OER catalyst for seawater splitting

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A team of researchers led by Zhifeng Ren, director of the Texas Center for Superconductivity at the University of Houston, has developed an oxygen-evolving catalyst that takes just minutes to grow at room temperature on commercially available nickel foam. If the cost is prohibitive, it will not make it to market.

Hydrogen 284
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Nacero selects Topsoe’s TIGAS technology for gas-to-gasoline unit; reducing lifecycle carbon footprint up to 50%

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Nacero has licensed Topsoe TIGAS (Topsoe Improved Gasoline Synthesis) technology for its multi-billion USD natural-gas-to-gasoline facility in Penwell, Texas to produce 100,000 barrels per day of gasoline component ready for blending into US commercial grades. Nacero’s Pemwell-facility in Houston, Texas.

Gasoline 221
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Terrabon awarded $9.6M by Logos Technologies to produce 6,000 liters of renewable jet fuel for DARPA via MixAlco process

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Houston-based Terrabon, Inc. Started in April of 2011, a customized production process for DARPA will be engineered, constructed and operated at Terrabon’s Bryan, TX demonstration facility in an effort to yield 6,000 liters of jet fuel through the use of the company’s MixAlco technology in preparation for commercialization of this technology.

Renewable 199