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Researchers use melamine to create effective, low-cost carbon capture; potential tailpipe application

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Using an inexpensive polymer called melamine, researchers from UC Berkeley, Texas A&M and Stanford have created a cheap, easy and energy-efficient way to capture carbon dioxide from smokestacks. The low cost of porous melamine means that the material could be deployed widely. Haiyan Mao et al.

Low Cost 243
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DOE awarding more than $50M to 15 projects to advance critical material innovations

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American Battery Metals Corporation; Field Demonstration of Selective Leaching, Targeted Purification, and Electro-Chemical Production of Battery Grade Lithium Hydroxide Precursor from Domestic Claystone Resources. DOE funding: $2,272,112; costs share: $2,272,112; Total costs: $4,544,224.

Li-ion 321
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Greyrock to build small-scale gas-to-liquids plant near Houston

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Greyrock Energy, a company transforming natural gas into premium transportation fuels ( earlier post ), announced a final investment decision (FID) to build a small-scale Gas-to-Liquids (GTL) facility near Houston, Texas. The plant will be commercially operational by the end of 2015.

Houston 225
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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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Low Cost Roll-to-Roll Manufacturing of Reusable Sorbents for Energy and Water Industries, $150,000 Qualification of SAS4A/SASSYS-1 for Sodium-Cooled Fast Reactor Authorization and Licensing, $674,484 Advanced Reactor Concepts LLC, Chevy Chase, Md. Quanex Building Products Corporation, Houston, Texas SCP SYS LLC, San Francisco, Calif.

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Scientists recommend fundamental research into separations technology to support large-scale thermochemical production of biofuels

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The report, “ Developing New Paradigms for Biofuel Separations to Enable an Alternative Fuels Future ”, was released recently and is intended to serve as a research roadmap that will help address the current issues associated with the thermochemical conversion of biomass. The conversion unit. Biomass conversion unit.

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

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The project involved researchers from UH, along with those from Sam Houston State University, the Chinese Academy of Sciences, Texas State University, Carl Zeiss Microscopy LLC, and Sichuan University. Even with an improved solar-to-hydrogen efficiency rate of around 5%, the conversion rate is still too low to be commercially viable.

Houston 268
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DOE Investing Up to $78M Investment in Two Consortia Targeting Algae-Based and Biomass-Based Bio-Hydrocarbon Fuels and Infrastructure; $1.6M for Ethanol Blends Fueling Infrastructure

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NAABB will integrate resources from companies, universities, and national laboratories to overcome the critical barriers of cost, resource use and efficiency, greenhouse gas emissions, and commercial viability. Low-cost one-step syngas to distillates.

St. Louis 199