Natural gamma-ray spectroscopy (NGS) as a proxy for the distribution of clay minerals and bitumen in the Cretaceous McMurray Formation, Alberta, Canada

Author:

Day-Stirrat Ruarri J.,Hillier Stephen,Nikitin Anton,Hofmann Ronny,Mahood Robert,Mertens Gilles

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference53 articles.

1. Adams, J., Larter, S., Bennett, B., Huang, H., Westrich, J. & van Kruisdijk, C. (2013) The Dynamic Interplay of Oil Mixing, Charge Timing, and Biodegradation in Forming the Alberta Oil Sands: Insights from Geologic Modeling and Biogeochemistry. Pp. 23-102. In F.J. Hein, D. Leckie, S. Larter, and J.R. Suter, Eds. Heavy-oil and oil-sand petroleum systems in Alberta and beyond,AAPG Studies in Geology 64.

2. Natural clay-sized glauconite in the neogene deposits of the campine basin (Belgium);Adriaens;Clays Clay Miner,2014

3. The Architecture and variability of valley-fill deposits within the Cretaceous McMurray Formation, Shell Albian Sands Lease, northeast Alberta;Barton;Bull Can Pet Geol,2016

4. Impact of the Prairie Evaporite dissolution collapse on McMurray stratigraphy and depositional patterns, Shell Albian Sands Lease 13, northeast Alberta;Barton;Bull Can Pet Geol,2016

5. Sandstone provenance and insights into the paleogeography of the McMurray Formation from detrital zircon geochronology, Athabasca Oil Sands, Canada;Benyon;AAPG Bull,2016

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