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New catalyst opens door to CO2 capture in coal-to-liquids process

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World energy consumption projections expect coal to stay one of the world’s main energy sources in the coming decades, and a growing share of it will be used in CT—the conversion of coal to liquid fuels (CTL). By 2020, CTL is expected to account for 15% of the coal use in China. —Wang et al.

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ExxonMobil to invest >$1B in Antwerp refinery to convert heavy, higher sulfur residual oil into diesel, other products

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plans to invest more than $1 billion to install a new delayed coker unit at its Antwerp refinery to convert heavy, higher sulfur residual oils into transportation fuels products such as marine gasoil and diesel fuel. The investment addresses an industry shortfall in capability to convert fuel oil to products such as diesel.

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Energy Vault to provide 1.6 GWh of gravity energy storage to support DG Fuels SAF projects

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The composite blocks can be made from low-cost and locally sourced materials, including the excavated soil at the construction site, but can also utilize waste materials such as mine tailings, coal combustion residuals (coal ash), and fiberglass from decommissioned wind turbine blades.

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Lima Energy signs 10-year synthetic crude supply contract with Husky Energy refinery in Ohio

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Lima Energy Company, a subsidiary of USA Synthetic Fuel Corporation in Washington, DC, has signed a contract to supply up to 80 million barrels of oil equivalent (boe) of its “Ultra Clean Synthetic Crude” (UCSC) to Husky Energy’s Lima, Ohio Refinery over ten years.

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Texas Clean Energy Project signs long-term CO2 offtake agreement with Whiting Petroleum for enhanced oil recovery; 90% CO2 capture from IGCC coal polygen plant

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The TCEP would integrate coal gasification, combined-cycle power generation, CO 2 capture, and. In the Permian Basin, approximately one additional barrel of oil can be recovered for each 6,000 cubic feet (6 Mcf) of compressed CO 2 injected into the oil field. urea production. CO 2 capture and shipment via pipeline shown at top.

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Tunable high-yield catalytic approach converts pyrolysis oil to bio-hydrocarbon chemical feedstocks including fuel additives

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Pyrolysis bio-oils are produced by the thermal decomposition of biomass by heating in the absence of oxygen at more than 500 °C; fast pyrolysis of biomass is much less expensive than biomass conversion technologies based on gasification or fermentation processes. Solid arrows: Pyrolysis oil is directly passed over the zeolite catalyst.

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Honeywell UOP’s Methanol To Olefins technology selected for China coal chemical complex

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has selected Honeywell’s UOP technology to convert methanol into building blocks for chemical products at an existing coal chemical complex in China. China’s Wison (Nanjing) Clean Energy Company Ltd. UOP and Total announced their partnership on this in 2005. Wison (Nanjing) Clean Energy Co.,

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