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Critical Elements Lithium Corp V.CRE

Alternate Symbol(s):  CRECF

Critical Elements Lithium Corp is a Canada-based mining exploration company. The Company is engaged in the acquisition, exploration, development and processing of critical minerals mining properties in Canada. Its projects include Rose Lithium-Tantalum, Rose North, Rose South, Arques, Bourier, Dumulon, Duval, Nisk, Lemare, Caumont, and Valiquette. The Rose Lithium-Tantalum property consists of over 473 claims covering a total area of over 246.55 square kilometers (km2). It lies in the northeastern part of Superior Province, within the Eastmain greenstone belt. The Rose North property consists of about 31 claims covering a total area of over 16.14 km2. The Arques Property is composed of one block totaling around 136 claims covering an area of 6,840.93 hectares (ha) over 18 kilometers (kms) in length in a Southwest-Northeast direction. The Bourier Property is comprised of over 304 claims with an area of 15,616.47 ha for over 30 kms. The Rose South property consists of over 280 claims.


TSXV:CRE - Post by User

Comment by tess4344on May 14, 2021 11:43am
130 Views
Post# 33203554

RE:RE:RE:RE:RE:New Aluminum-Ion Battery Charges 60x Faster Than Lithium-Ion

RE:RE:RE:RE:RE:New Aluminum-Ion Battery Charges 60x Faster Than Lithium-IonOK BluePill,  i am by no means an expert on the different battery technologies but always

willing to listen and learn.

The article in question by S&P Global Platts was written Dec. 2019, not recent but can still be 

relevant in regards to aluminum-ion battery discussions.

The link that you provided is an article on Lithium-Ion batteries not aluminum-ion ?????? LINK HERE

I found another opinion from The Journal of Power Sources dated January 2021 called 

"An overview and prospective on Al and Al-ion battery technologies"

Overall, the overview of Al-batteries shows that there is a considerable gap between Al-battery systems and Li-ion technology. The evaluation suggested that for Al-batteries, it will be extremely challenging to reach KPIs close to Li-ion systems. However, Al-batteries can offer several advantages over the more mature Li-ion technology, and after proper maturation, can find their application niche. The most suitable application for Al-battery technology will be stationary storage, due to the expected low cost and high sustainability of Al-based systems. Material discovery platforms using high throughput systems combined with artificial intelligence computing can be fundamental to advance research on that topic. A completely new approach is required to achieve new electrolyte chemistries in order to find an alternative to chloroaluminate compositions or a solution to the elevated reactivity of chloroaluminates.








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