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Successful completion of Illinois Basin - Decatur CCS project; CO2 from ethanol plant

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ADM and the University of Illinois announced the successful completion of the Illinois Basin - Decatur Project (IBDP), a carbon capture and storage (CCS) project designed to evaluate and test the technology at commercial scale. The project is currently permitted to operate through 2022 and has the potential to store up to 5.5

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Renewable-methanol fueled Geely cars in fleet testing in Iceland; 70% reduction in WTW CO2 compared to gasoline

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The average in-use emissions were calculated as 46 g CO2 per kilometer, accounting for the consumption of both fuels. Unlike methane gas and hydrogen, there is no need to install expensive infrastructure in order to store and distribute methanol as a fuel. Planning for the next phase is already underway.

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MIT researchers develop oxygen permeable membrane that converts CO2 to CO

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Essentially, the process makes it possible to store that heat in chemical form, for use whenever it’s needed. The research was funded by Shell Oil and the King Abdullah University of Science and Technology. 2017), H 2 -assisted CO 2 thermochemical reduction on La 0.9 and Ghoniem, A. FeO 3-δ membranes: a kinetics study.

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UC Santa Barbara team develops catalytic molten metals for direct conversion of methane to hydrogen without forming CO2

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Researchers at the University of California Santa Barbara have developed catalytic molten metals to pyrolize methane to release hydrogen and to form solid carbon. The insoluble carbon floats to the surface of the melt, where it can be removed and stored or incorporated into composite materials. Resources. Snodgrass, Michael J.

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DOE Regional Partnership Initiates CO2 Injection in Lignite Coal Seam

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The seven partnerships form a national network that is investigating the best approaches for capturing and permanently storing CO 2. In addition to evaluating the lignite seam’s CO2 storage potential, the enhancement to coalbed methane extraction will also be evaluated. In collaboration with Eagle Operating Inc.,

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New plasma synthesis process for one-step conversion of CO2 and methane into higher value fuel and chemicals

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Researchers from the University of Liverpool (UK), with colleagues from Dalian University of Technology (China) and the University of Hull (UK), have developed a new process for the direct, one-step activation of carbon dioxide and methane (dry reforming of methane) into higher value liquid fuels and chemicals (e.g.,

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DOE, NRG In $334M Cooperative Project for Post-Combustion Carbon Capture, Storage and EOR Project; 400,000 Tons of CO2 Per Year

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(NRG) for the Parish Post-Combustion CO 2 Capture and Sequestration Project to design, construct, and operate a system that will capture and store approximately 400,000 tons of carbon dioxide per year. Sequestration will begin in 2014, with project completion set for 2017.

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