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Scandium International Mining Corp T.SCY

Alternate Symbol(s):  SCYYF

Scandium International Mining Corp. is a mineral exploration and development company. The Company’s advanced project is the Nyngan Scandium Project, located in New South Wales, Australia (the Nyngan Scandium Project), on which it holds a mine lease grant, a development consent, and 100% of the mineral rights. The Nyngan Scandium Project site is located approximately 450 kilometers (km) northwest of Sydney, New South Wales (NSW), Australia and approximately 20 km due west from the town of Nyngan. The Company has a 100% interest in an exploration license (EL 7977) covering the Honeybugle Scandium property. The Honeybugle Scandium property covers over 34.7 square kilometers and is located 24 km from the Nyngan Scandium Project. The property includes four distinct magnetic anomalies: Seaford, Woodlong, Yarran Park and Mallee Valley. The Company's subsidiaries include EMC Metals Australia Pty. Ltd., EMC Metals USA Inc., Scandium International Mining Corp. Norway AS and others.


TSX:SCY - Post by User

Post by ScandiumPoweron Sep 08, 2022 8:26am
160 Views
Post# 34948865

Scandium applications: Sc as catalyst for green house gases

Scandium applications: Sc as catalyst for green house gases

There are numerous applications where smalla amount of Scandium makes a miracle. In this catalyst application only a smalla amount of Sc (o.5%) in a microporous silica material was needed for almost complete reformation of methane (CH4)  and carbon dioxide (CO2) to hydrogen (H2) and carbon monoxide (CO).

''Abstract

This study investigated the performance of supported Ni catalysts in the utilization of greenhouse gases like CO2 and CH4 via dry reforming. The support SBA-15 was impregnated first with Sc at different loadings (0.5, 1, and 3 wt.%) and then with Ni (5 wt.%). The catalysts were first tested up to 8 h on stream with stoichiometric feed as well as methane in excess. The as-prepared catalysts were characterized using BET, XRD, TPR, CO2-TPD, XPS, TGA, and TEM.

This is in accordance with the surface area measurement, XRD, and TEM data. The Ni added to Sc-SBA-15 appeared to interact with both the support and Sc as the intensity and reduction temperature of the Sc promoted catalysts increased relatively to the unpromoted sample depending on Sc content.

The catalyst with 0.5 wt.% Sc loading led to the highest conversion and the lowest relative activity loss. The CH4 and CO2 conversions, on average, were 78 and 86 %, respectively, at the end of the runs at 750 °C. The final H2/CO ratio was 0.99, which is a good value compared to many literature catalysts. This catalyst also showed relatively constant CH4 and CO2 conversions over 80 h on stream. Increasing the Sc loading above 0.5 wt.% was not beneficial in terms of activity.''

https://www.sciencedirect.com/science/article/pii/S0016236122023560
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