bitumen emulsion

Thu, 2014-02-20 11:46Carol Linnitt
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CNRL Releases New, Lower Cold Lake Oil Spill Estimates

bitumen emulsion oil spill at CNRL Primrose CSS site in the Alberta oilsands

The Alberta Energy Regulator (AER) has released new figures tallying the total volume of bitumen emulsion recovered at the Canadian Natural Resources Ltd. (CNRL) Primrose site in Cold Lake, Alta. The new total — 1,177 cubic metres or 1.1 million litres — is more than a third lower than previously reported amounts.

An earlier incident report from November 14, 2013, states more than 1,878 cubic metres of emulsion was recovered at the four separate release sites, where the mixture of bitumen and water had been leaking uncontrollably into the surrounding environment for several months without explanation. That's enough liquid to fill an Olympic-sized swimming pool three-quarters of the way full.

CNRL's July 31, 2013, statement (pdf), released to investors just over one month after the leaks were reported to the AER, said that within the first month of cleanup, 1,000 cubic metres of bitumen emulsion had been collected.

Scientist Kevin Timoney, who's authored several reports on the CNRL leaks, said the reported figures just don't add up.

The bottom line is, how do you go from essentially 1,900 cubic metres, which is what you get if you listen to the president of CNRL when he was talking in January, down to 1,177 cubic metres. How does that happen?” Timoney said. “And nobody has answered that.”

Sat, 2013-09-07 12:20Carol Linnitt
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Uncontrolled CNRL Tar Sands Spill Ongoing, 1.4M Litres Recovered

CNRL Cold Lake tar sands bitumen spill

New figures released yesterday from the Alberta Energy Regulator (AER) show a concerted effort is still underway to clean up the growing amount of bitumen emulsion – a mixture of tar sands oil and water – that is pooling in a forested area surrounding Canada Natural Resource Ltd.’s Cold Lake project.

The cause of the seepage, which shows no sign of subsiding, has yet to be determined.

AER’s updated volumes show that the total amount of bitumen emulsion recovered on four separate spill sites amounts to 1444.4 cubic metres, a volume equivalent to 1.4 million litres of oil.

In addition, cleanup crews have removed 494 cubic metres of oily vegetation from the forested landscape and an additional 1049.62 metric tonnes – equivalent to 2.3 million pounds – of “impacted soils.”

Sat, 2013-08-17 12:13Carol Linnitt
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CNRL Cold Lake Bitumen Seepage Hits 1.2 Million Litres, Reports AER

cold lake bitumen spill, underground seepage, CNRL

The ongoing trouble on the Cold Lake Air Weapons Range in North Eastern Alberta, where oil company Canadian Natural Resources Ltd. (CNRL) has numerous in situ oil recovery sites, has yet to show signs of abatement.

Underground oil spills on CNRL’s Primrose facility have been leaking bitumen emulsion into the muskeg, waterways and forest that surround the site for nearly three months.

The Alberta Energy Regulator (AER) says the total volume of bitumen emulsion recovered from four separate sites where the seepage is ongoing is now 1275.7 cubic metres, the equivalent of 8024 barrels of oil or 1.27 million litres.

The original volume of the spill was reported as 28 cubic metres.

Mon, 2013-07-29 15:34Carol Linnitt
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Cold Lake Spill: “There is No Control on this Incident,” says Energy Regulator

cold lake bitumen tar sand oil spill primrose project CNRL

Canadian Natural Resource Limited (CNRL), the company responsible for a massive ongoing spill on the Cold Lake Air Weapons Range southeast of Fort McMurray released a public notice last week claiming the release was “secured” and that “clean-up, recovery and reclamation activities are well under way.”

Cara Tobin, Office of Public Affairs spokesperson for the Alberta Energy Regulator, said that CNRL has yet to bring the release under control. 

The spill, caused by a rare underground spring of bitumen emulsion, is the result of High-Pressure Cyclic Steam Stimulation (HPCSS) technology that forces steam into underlying bitumen reservoirs at temperatures and pressures high enough to fracture underlying formations.

I don’t want to presume what they mean by [secure] but I can tell you a few things that might help clarify,” she said.

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