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OSU team demonstrates Coal-Direct Chemical Looping for more efficient and low carbon coal heat release

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An Ohio State University team has demonstrated the successful operation of Coal-Direct Chemical Looping (CDCL)—which chemically harnesses coal’s energy and efficiently contains the carbon dioxide produced before it can be released into the atmosphere. Hot iron and coal ash are left behind. 2 millimeters across.

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DOE awarding $6.5M to 9 large-scale Phase I pilot coal projects

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This FOA, issued in August 2017, is a $50-million funding opportunity for projects supporting cost-shared research and development to design, construct, and operate two large-scale pilots to demonstrate transformational coal technologies. Some of these technologies are now ready to proceed to the large-scale pilot stage of development.

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Seattle City Council passes resolution opposing transportation of coal through Seattle for export, measures for mitigating impact

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The Seattle City Council unanimously passed Resolution 31379 stating Seattle’s opposition to the transportation of coal through Seattle. There are currently four coal exports under permit review in the Northwest that collectively could increase US coal exports by 150 million tons of coal annually.

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Vega Biofuels’ pilot torrefaction plant to use new process to lower costs of biomass feedstock; site remediation biomass

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Vega Biofuels announced that its Joint Venture (JV) partner, Agri-Tech Producers, LLC (ATP) has developed a new and patent-pending process that significantly reduces the cost of some of the biomass feedstock for the company’s Allendale, SC pilot torrefaction plant by using site remediation biomass.

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Berkeley Lab team building new total cost of ownership model for fuel cells; intrinsic and external benefits

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Funded by a $2-million grant from the US Department of Energy, a team of scientists at Lawrence Berkeley National Laboratory (Berkeley Lab) led by Eric Masanet is building a sophisticated cost model for fuel cells that will will take into account the total cost of ownership.

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Stanford study quantifies energetic costs of grid-scale energy storage over time; current batteries the worst performers; the need to improve cycle life by 3-10x

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Benson from Stanford University and Stanford’s Global Climate and Energy Project (GCEP) has quantified the energetic costs of 7 different grid-scale energy storage technologies over time. This analysis indicates that energy storage could provide some grid flexibility but its build up will require decades. Click to enlarge.

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Wood Mackenzie: China thermal coal demand to double to nearly 7btpa by 2030

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In a new report, energy, mining and minerals consultancy Wood Mackenzie projects that despite efforts to limit coal consumption and seek alternative fuel options, China’s strong appetite for thermal coal will lead to a doubling of demand by 2030. It is very unlikely that demand for thermal coal in China will peak before 2030.

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