Remove Oil-Sands Remove Standards Remove Universal Remove Water
article thumbnail

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

Green Car Congress

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.

Oil-Sands 287
article thumbnail

Algae harvesting company OriginOil’s second CLEAN-FRAC licensing agreement targets Canadian oil sands market; urban algae demo project in Paris

Green Car Congress

the developer of a process for harvesting algae and cleaning up oil & gas water, announced that its second original equipment manufacturer’s (OEM) agreement will target oil service companies in the Canadian oil sands market. LH was an early private investor in Athabasca Oil Corporation. OriginOil, Inc.,

Oil-Sands 225
article thumbnail

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

Green Car Congress

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. —Miettinen et al. Earlier post.).

Oil-Sands 314
article thumbnail

New study concludes oil sands development has significantly increased PAH and DBT loadings in regional lakes; combined with effects of climate change, a “new ecological state” for the lakes

Green Car Congress

Standardized values (Z scores) of (A) visible reflectance spectroscopy (VRS) chlorophyll a inferences from the five lakes proximate to major oil sands operations as indicators of lake primary production; (B) total PAH concentrations and (C) total DBT concentrations from all six study sites. Source: Kurek et al. Earlier post.).

Oil-Sands 268
article thumbnail

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

Green Car Congress

In a paper published in the ACS journal Environmental Science & Technology , Stanford University assistant professor Adam Brandt reviews a number of recent life cycle assessment (LCA) studies calculating greenhouse gas (GHG) emissions from oil sands extraction, upgrading, and refining pathways—the results of which vary considerably.

Oil-Sands 225
article thumbnail

Researchers exploring development of biofilms for remediation of oilsands tailings

Green Car Congress

Researchers at the Universities of Calgary and Alberta are collaborating on a project for the microbial remediation of oil sands tailings—the waste byproducts of oil sands surface mining that are collected in large manufactured settling basins called tailing ponds. Click to enlarge. —Golby et al.

Oil-Sands 244
article thumbnail

New open-source lifecycle analysis tool for oil production using field characteristics

Green Car Congress

A team from Stanford University and the California Air Resources Board (ARB) has developed a new open-source lifecycle analysis (LCA) tool for modeling the greenhouse gas emissions of oil and gas production using characteristics of specific fields and associated production pathways. Click to enlarge. —El-Houjeiri et al.

Oil 225