The Lithium Breakthrough That Could Transform The Mining Industry
Companies / Lithium Dec 08, 2021 - 11:06 AM GMTThe lithium-technology space is in a desperate race to build a better battery in time to keep pace with an energy transition that is mainstreaming electric vehicles.
Certain companies in this space working on battery breakthroughs are soaring.
Quantumscape has gained nearly 60% in October thanks to the development progress in its solid-state lithium battery for EVs.
It’s all about coming up with a better battery that’s cheaper and holds its charge longer, and the rush to the finish line here has created no less than a “Battery Arms Race”.
But we think betting on which one of these companies will reach the solid-state commercial finish line first means nothing without serious breakthroughs in the exploration and extraction of one of the key metals that underpin the entire EV and energy storage equation: Lithium.
A lithium shortage could stall the EV push and halt the battery arms race in its tracks. As it stands, it is questionable at best whether lithium supplies can keep up with the forecast of a huge increase in demand.
The Western world may have a critical weakness in the lithium-ion supply chain, according to a Forbes report.
A key problem isn’t just the lack of new lithium discoveries in North America—it’s the difference between two different kinds of lithium mining processes…
And until now, one of them has largely been off limits due to environmental concerns and prohibitive costs.
Medaro Mining (CSE:MEDA; OTCMKTS:MEDAF), a Canadian junior lithium explorer, isn’t just sitting on lithium exploration territory…
It’s also behind what we think could become one of the biggest potential breakthroughs lithium mining has ever seen. The technology it’s developing could be the key to unlocking a new treasure trove of lithium from hard rock mining.
It could reduce hard-rock lithium mining costs by up to 30-50%.
The Company holds an interest in a JV to develop a novel, ESG-compliant processing technology designed to greatly simplify and accelerate lithium recovery in hard-rock mining and aimed at lowering production costs and improving production quality and efficiency.
The ultimate goal: To make hardrock lithium manufacturing cheaper than production from brine sources.
In our view, Medaro Mining isn’t just another player in a crowded but slow-moving lithium production space. Its technology, if developed and commercialized, could be an integral part of the future of lithium mining.
Here are 5 reasons to keep a very close eye on Medaro Mining (CSE:MEDA; OTCMKTS:MEDAF) right now:
#1 Exciting Potential in This Innovative New Lithium Extraction Tech
The technology Medaro is developing could unlock significant value in lithium reserves that have until now been considered uneconomical. In this energy transition market, a developed technology with that potential could reverberate across industries and around the world. It could create potential cost savings for everyone from lithium producers to battery makers along the surging EV and energy storage industries.
The cost savings for lithium mining could be up to 30-50%.
Lithium is used in a huge cross-section of industries—not just EVs, though the EV revolution is what makes the demand picture problematic for supply.
This most famous of battery metals can be obtained either from subsurface brines or spodumene-bearing pegmatite deposits. Lithium from the brine is much easier to extract because you pump the lithium-bearing brines out of the ground and then treat them to form lithium carbonate or lithium hydroxide. The process doesn’t involve traditional mining. But we need more supply than North America’s brine deposits can offer.
That brings us to hard-rocking mining of spodumene pegmatite deposits, which requires traditional mining and processing through which lithium is extracted and converted to lithium carbonate and/or lithium hydroxide.
Medaro Mining’s plan is to develop its new technology to disrupt the hard-rock lithium mining industry by making the processing better, more efficient and cheaper through a system of rapid extraction and reduced transport costs.
The end game here is to make hard-rocking lithium mining as cheap and efficient—if not more so—than extraction of lithium from the brine.
If successfully developed, the technology could completely reshape the future of hardrock lithium mining and manufacturing.
And it could be battery-grade lithium ready for the market.
This could reduce supply chain costs and bottlenecks and might be scalable at an industrial level, with potentially global implications for the industry.
And it could be made easy for end-users: the Medaro technology could be installed directly at lithium producers’ sites.
Hard-rock lithium miners might set up Medaro-licensed processing facilities right next to their mines. That could mean they would be able to ship battery grade lithium and valuable by-products directly to markets.
Remote location? Limited room for a processing facility? Likely not a problem. Medaro’s technology is aimed to be compact, modular and highly scalable.
If successfully developed, the Medaro Mining (CSE:MEDA; OTCMKTS:MEDAF) technology could be implemented in remote areas close to productive mines. A Medaro-designed processing facility might be built almost anywhere, with scalability potential of up to 50-100 tonnes per day, or more, in the roughest terrains.
#2 A Potential Major ESG Boost for Lithium
Medaro’s HLT lithium recovery process is a unique solvent extraction technology aimed to rapidly manufacture high-purity forms of Lithium Carbonate (Li2CO3), Lithium Hydroxide (LiOH), and lithium metal (Li).
Not only does preliminary technical and economic analysis indicate that Medaro’s technology could lower spodumene processing costs by up to 50%, but the entire system could be powered by clean energy, including hydroelectric, solar or wind power.
There is potential for minimal cleanup costs.
Medaro’s HLT lithium recovery process is a dual closed loop thermochemical technology:
It uses no hydrocarbons, no sulfur, or chlorine. In fact, it employs only materials that are abundant on earth.
The technology requires only three feedstock materials:
- Spodumene concentrate
- High-purity Carbon Dioxide (CO2), which is consumed in forming lithium carbonate
- High-purity water (H2O), which is consumed in forming lithium hydroxide
And there are no associated CO2 emissions because this is a closed-loop process run on clean energy. That alone may mean lower costs and a much smaller manufacturing footprint.
With the single exception of the calcination of spodumene, which takes place at a temperature of 1000-1100°C, all of the chemical reactions occur at temperatures below 250 °C.
A negligible amount of solid waste—all of it benign—is created in the process.
Dual closed-loop ensures solvents, leachates, and precipitants are continually recycled.
Virtually zero waste equals significant potential savings compared to other methods.
#3 A Green Mining Story—All the Way
We think this could be one of the most compelling “green mining” narratives out there right now.
Medaro Mining (CSE:MEDA; OTCMKTS:MEDAF) was created specifically with this in mind.
Its innovative lithium technology could green the industry …
Its lithium land packages might hold great commercial potential.
The company also has what could be a highly promising uranium mining play.
And we think it’s all about going green in an ESG investment environment that is pushing big money into the space at breakneck speed.
Medaro’s Superb Lake Property in Ontario’s Thunder Bay Mining District is an exploration stage prospect covering nearly 2,200 hectares with 8 mining claims. The results of four samples taken here indicate lithium oxide values in the range of 1.77% to 4.03%.
Medaro has a second lithium property in Quebec’s James Bay Mining Region. Here, Medaro has acquired the rights to the Cyr South Lithium Property covering over 2,700 hectares with 52 mining claims.
This property is right near the Galaxy Resources lithium project, which has a 40-million-tonne resource indication. So, when Medaro saw the opportunity, they jumped on it quickly.
If a commercially viable lithium resource is found and developed, battery-grade Lithium Carbonate production could net Medaro up to $20,000/tonne, while battery-grade Lithium Hydroxide could fetch up to $22,000/tonne.
But while the founders of Medaro were busy hunting for more and bigger lithium assets, they came across the technology that, once developed, could change everything. Now that this technology is in hand and being developed, they’re still on the hunt for even bigger lithium assets where it can be deployed.
And in the meantime, Medaro is also scooping up uranium deals, with more “green” in mind.
On November 2, Medaro entered into an option agreement with Skyharbour Resources Inc. (TSX-V.SYH) (OTCQB:SYHBF) to acquire up to a 100% interest in the Yurchison Uranium property in Northern Saskatchewan.
This is a massive, nearly 56,000-hectare property with 12 mineral claims. Yurchison is a historical uranium play where prospecting has returned significant uranium mineralization from 0.09% to 0.30%. The recovery potential here could be strong, and is expected to host copper, zinc and molybdenum mineralization, as well.
Even better in our view, this play is on-strike with giant Rio Tinto’s Janice Lake property.
The possible revenue lines could continue with the potential for Medaro to sell the by-products of its extraction technology, including potentially lucrative commercial-grade aluminum hydroxide and silica …
Medaro Mining (CSE:MEDA; OTCMKTS:MEDAF) could fetch up to $1,000/tonne for its by-product commercial grades of low sodium alumina, calcium carbonate and silica.
#4 The Global Licensing Opportunity
We think the real gold mine here could be a global technology licensing opportunity, for which Medaro and its JV partner would control all the intellectual property rights. With the targeted savings of up to 30-50% compared to traditional lithium processing operations, Medaro aims to patent and license the technology to derive multiple, potential long-term revenue generation.
The technology is in the piping and instrumentation design phase, and once that is concluded, the JV will be ready to design, build and operate their first pilot plant.
And in our view they’ve got the management team that could bring it all home.
James G. Blencoe, Ph.D. is the man behind the development of the technology, and Medaro’s CTO. Dr. Blencoe is a widely published scientist and engineer who has been inventing new technologies since the early 2000s. He has decades of geoscience and geochemistry experience and has served as CTO and Chief Scientist for a number of innovative companies across North America.
CEO & Director Hugh Maddin is a veteran executive for mineral holding companies, while President & Director Faizaan Lalani has a proven track record in this space as CFO of United Lithium Corp. Director Shaun Mann has decades of mining experience and has held senior roles at major mining companies, including with Goldcorp and Newmont during their $10-billion mega-merger.
#5 The Bottom Line: Cost-Reduction and ESG Focused
Medaro Mining (CSE:MEDA; OTCMKTS:MEDAF), which has the right to acquire 100% of the developed tech and control the global licensing of its JV, reports it is getting high recovery of lithium in tests so far. The extraction process is said to be a fast process that could have huge cost-reduction implications for a supply chain that desperately needs it.
The emphasis here is on green mining and manufacturing, and we think that should resonate with the big capital pouring into environmentally friendly plays right now—especially those feeding into the energy transition, which is nothing without EVs and batteries for renewable energy storage.
We think investors should also love the diversity of this play: Not only is Medaro’s JV developing a potentially game-changing technology that could operate entirely on renewable energy, but it also has options on lithium properties in known mining districts and a large uranium play next to giant Rio Tinto.
Combine this with a zero-debt company that looks on track to be very well-capitalized, and we think you have one of the best potential plays in the energy transition—and from a corner that no one may have been expecting.
The global implications could be profound if this technology is proven up and commercialized because among the multiple possible revenue lines is a licensing potential that we think could set up hard-rock miners around the world with a unique new extraction process that could save them up to 50% in processing costs.
That’s the number that we think should get everyone’s attention soon enough.
By. Tom Kool
**IMPORTANT! BY READING OUR CONTENT YOU EXPLICITLY AGREE TO THE FOLLOWING. PLEASE READ CAREFULLY**
This news release contains certain forward-looking statements within the meaning of applicable securities laws. All statements that are not historical facts, including without limitation, statements regarding future estimates, plans, programs, forecasts, projections, objectives, assumptions, expectations or beliefs of future performance, are forward-looking statements. Forward-looking statements in this material include the Medaro Mining Corp. (the “Company”) joint venture (JV) with Global Lithium Extraction Technologies Inc. to develop a proprietary method of lithium extraction; that the Company will succeed in the development and commercialization of the proprietary technology to extract lithium which is highly cost effective, efficient and clean; that the Company will be able to earn its option to acquire ownership in its lithium projects; that the Company’s lithium projects will have commercial amounts of lithium which may be extracted and developed using its proposed technology or otherwise; that the market for lithium will continue to grow to billions of dollars; that the Company will be able to produce sufficient quantities of lithium to supply major contracts worldwide or be otherwise able to commercialize its business; that the Company’s JV will be able to develop, commercialize and license the technology on a global scale; that the technology will be able reduce extraction costs by up to 50%; that the technology will be implemented in remote areas close to productive mines; that the Company will design processing facilities for lithium extraction using the technology developed by the JV; that the technology will be able to extract commercial amounts of lithium; that the Company will be able to earn its option to acquire ownership in its uranium project; that the Company’s uranium project will have commercial amounts of uranium which may be developed. Forward-looking statements are subject to a number of risks and uncertainties, which may cause actual outcomes to differ materially from those discussed in the forward-looking statements. Risks that could change or prevent these statements from coming to fruition include that the Company’s JV may be unable to successfully develop a proprietary method of lithium extraction; that the Company may be unsuccessful in the development of its proposed technology, or even if developed, that the Company may be unable to commercialize the technology or otherwise be able to extract lithium by a method which is cost effective, efficient or clean; that the Company may fail to be able to develop lithium extraction facilities or to license its technology; that the Company may fail to fulfill its obligations under its option agreements in respect of its lithium and uranium projects and be unable to acquire ownership in the properties; that the Company’s lithium and uranium projects may be fail to have any or sufficient commercially viable amounts of lithium or uranium which may be extracted and/or developed; that the market for lithium may not grow as quickly or as much as anticipated; that the Company may not be able to finance its intended development of technology and/or the maintenance/development of its lithium and uranium properties; competitors may offer cheaper or better products; markets don’t develop for the products as expected; intellectual property rights may not protect the Company’s processes and the Company’s technology may infringe on the intellectual property of others; and the Company may not be able to carry out its business plans as expected. The forward-looking information contained herein is given as of the date hereof and the writer assumes no responsibility to update or revise such information to reflect new events or circumstances, except as required by law.
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