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Scandium Canada Ltd V.SCD

Alternate Symbol(s):  SCDCF

Scandium Canada Ltd., formerly Imperial Mining Group Ltd., is a Canadian technology metals company focused on advancing its flagship Crater Lake scandium and rare earth projects in Quebec. It specializes in mining exploration for gold, base metal and technology metal mining sites located in Canada. It is focused on the advancement of its Crater Lake Scandium-REE project in Northeastern Quebec. It also holds gold properties in the Abitibi greenstone belt. Its Crater Lake Project is located about 200 kilometers (km) northeast of Schefferville, Quebec. The property consists of about 96 contiguous claims covering 47 square kilometers. Its Opawica Project is located about 20 km East of Desmaraisville and is accessible via Highway 113 going from Val-d’Or to Chibougamau, Quebec. The property consists of about 42 contiguous claims covering 23.45 square kilometers. Its La Ronciere Project is located about 35 km East of Desmaraisville. The property consists of about 45 contiguous claims.


TSXV:SCD - Post by User

Post by ScandiumPoweron Feb 02, 2023 7:43am
313 Views
Post# 35261625

Formation of the Crater Lake Sc deposit (scientific)

Formation of the Crater Lake Sc deposit (scientific)

This is interesting. Scientific story about the formation of the Crater Lake Scandium deposit. 

Abstract

Because of a number of technological advances in the aerospace and automotive sectors and concerns about supply, scandium is now a critical metal for many countries and the target of significant exploration activity. The current study is based on the Crater Lake scandium deposit, which, to our knowledge, is the only deposit in a syenite complex with production potential and in which scandium is the principal ore metal. Hedenbergite is the main scandium mineral at Crater Lake, but subordinate proportions of scandium are also hosted by hastingsite. These minerals are concentrated in a cumulate facies of ferrosyenite. We have constructed a fractional crystallization model based on the observed mineral paragenesis and mineral compositional data collected for the study. The results of this modelling indicate that the ferrosyenite formed as a result of fractionation of fluorapatite, zircon, fayalite, hedenbergite, magnetite, and hastingsite, from a parental quartz monzonite liquid. The initial liquid was very strongly enriched in Fe (FeO/FeO + MgO = 0.95), which led to extremely high Sc clinopyroxene/melt partition coefficients and consequently, very Sc-rich clinopyroxene (up to 1400 ppm Sc). Subsequently, the hedenbergite (and the other mafic minerals) were physically segregated by gravitational settling and/or flow differentiation, into cumulates, creating a potentially large scandium resource.

https://www.sciencedirect.com/science/article/pii/S0009254122005174
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