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S&P Global: absolute GHGs from Canadian oil sands did not increase in 2022 even as production grew

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Absolute greenhouse gas emissions from Canadian oil sands production were flat in 2022 even as total production grew, according to an initial analysis by S&P Global Commodity Insights. The Canadian oil sands have demonstrated a consistent trend of reductions in GHG intensity for the past decade.

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S&P Global report forecasts absolute emissions from Canadian oil sands to decline even as production grows

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By the middle of this decade greenhouse gas (GHG) emissions from Canadian oil sands production should be in decline even as production continues to grow, according to a new comprehensive report by S&P Global Commodity Insights that takes into account current technology trends and production growth. —Kevin Birn.

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IHS Markit: Canadian oil sands production to be ~1M barrels higher by 2030 but with lower annual growth; boosted by deterioration in Venezuela

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Canadian oil sands production is set to enter a period of slower annual production growth compared to previous years. Large scale oil sands projects take two, three, four or more years to be brought online and so the reality of a slower pace of investment and growth in the Canadian oil sands is taking shape.

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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 CAPP forecast. Click to enlarge. In 2013, 1.9

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TOYO Engineering signs multi-year oil sands deal

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has signed an Engineering, Procurement, Construction (EPC) contract with JACOS (Japan Canada Oil Sands Limited) for a 20,000 bbl/day Steam Assisted Gravity Drainage (SAGD) production processing facility (expandable to 30,000 bbl/day) in the Hangingstone area, near Fort McMurray, Alberta.

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U Calgary study finds oil shale most energy intensive upgraded fuel followed by in-situ-produced bitumen from oil sands

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A team at the University of Calgary (Canada) has compared the energy intensities and lifecycle GHG emissions of unconventional oils (oil sands and oil shale) alongside shale gas, coal, lignite, wood and conventional oil and gas. This is not the same as crude oil occurring naturally in shales, as in the Bakken.

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New study finds GHG emissions from palm oil production significantly underestimated; palm oil biofuels could be more climate-damaging than oil sands fuels

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Based on visual interpretation of high-resolution (30 m) satellite images, a new study in the journal Global Change Biology: Bioenergy determined that industrial plantations covered over 3.1 When peat swamps are drained for agriculture, the peat begins to decompose, and is an enormous source of carbon emissions. Earlier post.).

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