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Alberta Innovates & NRCan awarding $26.2M to three oil sands clean tech projects; industry kicking in $43.3M

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Alberta Innovates has teamed up with Natural Resources (NRCan) and industry partners to take three clean oil sands technologies to commercial demonstration. This announcement is a result of NRCan’s Oil and Gas Clean Tech Program. Cenovus Energy will test an oil sands extraction technology using a solvent-driven process.

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Ionic liquid-enhanced solvent extraction for oil sands bitumen shows high recovery rates, less water use and no tailing water

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Researchers from Tianjin University and the National Engineering Research Centre for Distillation Technology, Tianjin, China, report on the use of an ionic liquid (IL) with low viscosity to enhance bitumen recovery from oil sands by solvent extraction while reducing adverse impacts in the ACS journal Energy & Fuels.

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Ceramatec licensing molten sodium technology for heavy oil upgrading; removing the need for diluent for bitumen

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Flowchart of Molten Sodium Upgrading process. An innovative oil-upgrading technology that can increase the economics of unconventional petroleum resources has been developed under a US Department of Energy-funded project. Source: Field Upgrading. Click to enlarge.

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Jeep introduces 2018 Wrangler with mild hybrid, diesel options; plug-in hybrid version in 2020

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A variable displacement two-stage oil pump provides high oil pressure under high speed and load, but switches to a low-pressure mode for improved fuel economy during typical driving conditions. A large capacity oil cooler extends the oil change interval and ensures engine durability. Total displacement is 1,995 cc.

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Western Hydrogen produces first hydrogen from Molten Salt Gasification pilot plant

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The MSG process, under license from Idaho National Laboratory, uses a combination of molten sodium salts (sodium carbonate and sodium hydroxide) to convert a carbon feedstock and water into hydrogen. Oil sands operators use Steam Methane Reforming (SMR) to produce hydrogen from natural gas.

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CU-Boulder technique finds major class of fracking chemicals no more toxic than common household substances; “fingerprinting”

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EO28), were identified in hydraulic fracturing flowback and produced water using a new application of the Kendrick mass defect and liquid chromatography/ quadrupole-time-of-flight mass spectrometry. The Kendrick mass defect differentiates the proton, ammonium, and sodium adducts in both singly and doubly charged forms.

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Can Flow Batteries Finally Beat Lithium?

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There is only so much salt you can dissolve in a glass of water. Importantly, the nanofluids are engineered to remain suspended indefinitely, unlike other suspensions—for instance, sand in water. The particles can compose up to 80 percent of the liquid’s weight while leaving it no more viscous than motor oil.