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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 May 03, 2024 8:25am
97 Views
Post# 36021202

Another application for Scandium: Direct Hydrogen production

Another application for Scandium: Direct Hydrogen productionHydrogen generation by hydrolysis of Sc–Sn alloy over a wide temperature range as low as 0 C 

A series of Sc–Sn alloys are prepared by the arc-melting method and their hydrogen generation performance of hydrolysis in pure water is investigated. It was found that only Sc element reacts with water in Sc–Sn alloy, while Sn element is retained as an elemental metal. The reaction temperature of Sc with water can be reduced below 0 C after Sc and Sn are alloyed. The Sc3Sn2 alloy has the best hydrogen generation performance. Its hydrogen conversion rate is up to 90% at 0 C for 100 min as well as when the water temperature dropped from 60 C to 0 C, the average conversion rate in the first 30 min only dropped from 19.95 mL/min•g to 14.31 mL/min•g. The hydrogen generation performance of Sc–Sn alloys depends on the reaction activity after Sc and Sn alloying, the effect of micro galvanic cells and the solidification microstructure in the alloy ingot. 

Huping Chen, Xiaoming Zhang, Ying Liu, Cong Liu, Lei Jin, Hongshi Li, Xuefang Dai, Guodong Liu,
Hydrogen generation by hydrolysis of Sc–Sn alloy over a wide temperature range as low as 0 °C,
International Journal of Hydrogen Energy, Volume 66, 2024, Pages 645-651, ISSN 0360-3199,
https://doi.org/10.1016/j.ijhydene.2024.04.145.

 https://www.sciencedirect.com/science/article/pii/S0360319924014186
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