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Ramaco Carbon partnering with ORNL on new processes to make graphite from coal

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Ramaco Carbon is partnering with Oak Ridge National Laboratory to develop new, large-scale processes for making graphite from coal. The conversion of coal to higher value materials, such as graphene, graphite or carbon nanotubes, is of high interest, and a number of researchers have proposed processes.

Coal 210
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SoCalGas, partners developing technology to make carbon fiber during hydrogen production from methane; reducing the cost of H2 and cutting GHG

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(SoCalGas) is partnering with a development team to advance a new process that converts natural gas to hydrogen, carbon fiber, and carbon nanotubes. The technology commercialization team includes SoCalGas, C4, Pacific Northwest National Laboratory (PNNL) and West Virginia University (WVU).

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Clean Cities Autogas Vehicle Conversion Program Rolls Out First of 1,189 LPG Cars in Virginia

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Administered by Virginia Clean Cities at James Madison University, the program will deploy nearly 1,200 propane Autogas vehicles, reducing air pollutants such as carbon monoxide, soot and smog-causing emissions when compared to traditional gasoline vehicles. Arlington, Va.-based

Virginia 150
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GWU research team C2CNT advances to the final round of the Carbon XPRIZE; CO2 to carbon nanotubes

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Stuart Licht, a chemistry professor at the George Washington University, and his team of researchers are among the finalists announced today in the $20-million Carbon XPRIZE competition. Stronger, more stress resistant & cheaper by weight than steel, C2CNT carbon nanotubes avoids > 160 ton CO 2 per ton steel replaced.

Carbon 150
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Sulfur as a promising “soft” oxidant for conversion of methane to ethylene

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A team from Northwestern University and the University of Virginia is proposing the use of sulfur as such a promising “soft” oxidant for selective methane conversion to ethylene over MoS 2 , RuS 2 , TiS 2 , PdS and Pd/ZrO 2 catalysts. —Zhu et al. —Zhu et al. Qingjun Zhu, Staci L. Nature Chemistry.

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Virginia Tech team engineers optimized synthetic enzymatic pathway for high-yield production of H2 directly from biomass

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A team of Virginia Tech researchers and colleagues has demonstrated the complete conversion of glucose and xylose from pretreated plant biomass to H 2 and CO 2 based on an in vitro synthetic enzymatic pathway crafted from more than 10 purified enzymes. Pathway depicting the enzymatic conversion of biomass to hydrogen and CO 2.

Virginia 150
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DOE Selects Seven Projects for University Coal Research Program

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The US Department of Energy has selected 7 projects to participate in the University Coal Research (UCR) program. The projects aim to improve the basic understanding of the chemical and physical processes that govern coal conversion and utilization, by-product utilization, and technological development for advanced energy systems.

Coal 210