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Oil sands GHG lifecycle study using operating data finds lower emitting oil sands cases outperform higher emitting conventional crude cases; a call for more sophisticated tools and reporting

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Well-to-wheel (WTW) greenhouse gas emissions for in situ SAGD and surface mining pathways generated employing GHOST/TIAX/ GHGenius combination and comparison with SAGD, mining and conventional crude oil literature pathways (all results are on a HHV basis). 74% of WTW emissions in our oil sands pathways. Click to enlarge.

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Understanding the variability of GHG life cycle studies of oil sands production

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Credit: ACS, Brandt 2012. Brandt considers factors affecting energy consumption and GHG emissions from oil sands extraction, and then uses publicly available data to analyze the assumptions made in the LCA models to better understand the causes of variability in emissions estimates. —Brandt 2012. Click to enlarge.

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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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The majority (62%) of the plantations were located on the island of Sumatra, and more than two-thirds (69%) of all industrial plantations were developed for oil palm cultivation, with the remainder mostly being Acacia plantations for paper pulp production. Earlier post.). Earlier post.).

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Researchers propose framework for CCS infrastructure optimization to reduce GHG emissions from oil sands extraction and processing

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The width of the pipeline network (green lines) is proportional to CO 2 flow; the largest CO 2 flow is approximately 36 MtCO 2 / yr for the $155/tCO 2 scenario (pipeline leaving the Athabasca oil sands area). This reduces the relative importance of transport costs compared to nonintegrated transport systems.

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Researcher urges more effort on assessment of land and water impacts of oil sands production; reference point for other unconventional fuels

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Bitumen production from the Canadian oil sands provides a point of reference that could be used to observe and better manage the land and water impacts of a rapid transition to unconventional fuels, suggests Dr. Sarah Jordaan of the Energy Technology Innovation Policy Research Group, Department of Earth and Planetary Sciences, Harvard University.

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GE providing produced water handling systems to Blackgold Oil Sands Project; new solidification process for disposal of SAGD waste

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GS Engineering & Construction (GS E&C) has selected GE to supply the produced water evaporation and zero liquid discharge (ZLD) system for the Blackgold Oil Sands project, located near Conklin, Alberta. Blackgold is owned and operated by a subsidiary of the Korean National Oil Corp. A subsidiary of the Korean National Oil Corp.

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Williams Plans NGL Pipeline in Alberta, Canada; Outlet for Oil-Sands-Produced NGLs

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Williams plans to build a pipeline in Alberta, Canada, to transport natural gas liquids (NGL) and olefins from its extraction plant in Fort McMurray to its Redwater processing facility. Construction on the 261-mile pipeline is expected to begin in 2010, with an anticipated in-service date of April 2012.

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