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CAPP forecasts oil sands development still drives steady Canadian oil production growth to 2030

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However, the new forecast represents a slowing of future oil sands production growth compared to the predictions of last year’s forecast. According to CAPP’s 2014 Crude Oil Forecast, Markets and Transportation , total Canadian crude oil production will increase to 6.4 million barrels per day in 2013. In 2013, 1.9

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Univ. of Calgary team developing nanocatalysts for underground upgrading of heavy oil and bitumen; possible “next generation” of oil sands production

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Researchers at the University of Calgary are developing ultra-dispersed (UD) nanocatalysts for the in situ upgrading of heavy oil and bitumen from deep reservoirs. One of the challenges of such an approach is the placement of the catalyst deep into the heavy oil plume by transporting a catalyst suspension through the sand medium.

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CO2 Solutions’ enzymatic carbon capture technology performance exceeds targets in oil sands project

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an innovator in the field of enzyme-enabled carbon capture technology, announced that it has exceeded the second set of technical performance milestones for its oil sands project. Industrially optimized enzyme catalysts employed in the testing demonstrated robust performance both in absorption and solvent regeneration.

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Average carbon intensity of oil sands production has dropped ~36% in last 40 years; still 12-24% higher than conventional oil CI

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The carbon intensity (CI) of Alberta oil sands production has significantly decreased over the last 40 years, according to a new study by a team from Stanford University published as an open access paper in the journal Environmental Research Letters. Trends in well-to-wheel pathway-specific CI. Click to enlarge.

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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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Sustainable Development Canada Awards C$6M to Project to Reduce Water and Energy Consumption for Oil Sands Processing; Three Other Projects Supported to Reduce Energy and Environmental Impact of Oil Sands

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million) to the Petroleum Technology Research Centre ( PTRC ) in Regina, Saskatchewan and StatoilHydro Canada for a project to reduce water use and carbon dioxide (CO 2 ) emissions for in situ oil sands recovery by steam-assisted gravity drainage (SAGD). Burning natural gas produces CO 2 emissions. Other SDTC awards.

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CN to serve new 550,000-ton per year frac sand transloading terminal in northwestern Alberta

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CN will start serving a new advanced frac sand terminal north of Grande Prairie, Alta., starting in November 2013. The new 20-acre facility being built by Di-Corp of Edmonton will have an annual throughput capacity of 550,000 tons of frac sand and have three tracks capable of holding 44 rail cars for unloading.

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