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New lifecycle analysis of WTW GHG emissions of diesel and gasoline refined in US from Canadian oil sands crude

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In a new, comprehensive study, a team from Argonne National Laboratory, Stanford University and UC Davis ITS has estimated the well-to-wheels (WTW) GHG emissions of US production of gasoline and diesel sourced from Canadian oil sands. g CO 2 e/MJ for US conventional crude oil recovery. This range can be compared to ∼4.4

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Shell launches commercial operation of Quest carbon capture and storage in Alberta oil sands

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Using activated amine (ADIP-X), Quest will capture one-third of the CO 2 emissions from Shell’s Scotford Upgrader, which turns oil sands bitumen into synthetic crude that can be refined into fuel and other products. Te Storage zone is a formation called Basal Cambrian Sands (BCS).

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Rice University to Collaborate with nanoAlberta on Oil Sands Research

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The collaboration will tackle issues surrounding the production of petrochemicals from Alberta’s oil sands. The MOU grew out of Stelmach’s missions to Texas in 2008 and 2009, where he met with Texas Gov. Adams noted America is the biggest market for Canadian oil. Smalley Institute for Nanoscale Science and Technology.

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Fossil Fuel Production Up in 2008 Despite Recession

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World production of fossil fuels—oil, coal, and natural gas—increased 2.9% in 2008 to reach 27.4 million tons of oil equivalent (Mtoe) per day, according to a Worldwatch Institute analysis. Energy prices reflected this shift: oil peaked at $144 per barrel in July, then fell to $34 per barrel in December.

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State Department issues Draft Supplemental Environmental Impact Statement on Keystone XL Pipeline: climate change impacts

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The US Department of State (DOS) has released its Draft Supplemental Environmental Impact Statement (SEIS) in response to TransCanada’s May 2012 application for the Keystone XL pipeline that would run from Canada’s oils sands in Alberta to Nebraska. The pipeline would primarily transport crude oil from the WCSB and Bakken regions.

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Eni licenses EST technology to Sinopec to convert residues to high-quality light products; eliminating pet-coke and fuel oil

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EST completely converts refinery residues, heavy oils and bitumen into high-quality light products, eliminating the production of both liquid and solid refinery residues (for example, pet-coke or fuel oil). Eni slurry technology: A new process for heavy oil upgrading.” Delbianco, A & Meli, S & Tagliabue, Lorenzo & Panariti, N.

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Anellotech, IFPEN and Axens partner on bio-aromatics production from non-food biomass; targeting 2019 for industrial implementation

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IFP Energies nouvelles (IFPEN) and its subsidiary Axens have formed a strategic alliance to develop and to commercialize a new technology for the low cost production of bio-based benzene, toluene and paraxylene using Anellotech’s process of Catalytic Fast Pyrolysis (CFP) of non-food biomass. Anellotech Inc., Earlier post.).

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