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⚡ CRITICAL ELEMENTS LITHIUM CORPORATION: Powering Quebec’s Next Lithium Supply Hub | As seen on BTV - Business Television As global lithium demand accelerates, Quebec is emerging as a cornerstone of North America’s battery supply chain — and Critical Elements Lithium is positioned at the forefront. The company’s flagship...

446,810 次观看 • 5 个月前 •via X (Twitter)

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Does the world have enough lithium to power all the electric vehicles and stationary batteries needed to transition the world to 100% clean, renewable energy and storage for everything? The answer is yes. In 2025, the USGS increased its estimate of world lithium resources over land by 30%, to 150 million tons, with the U.S. having the largest resource, 30 million tons, followed by Argentina, Bolivia, Chile, Australia, and China. How much lithium is this? The world has 1.1 billion passenger cars and 375 million trucks and buses. Replacing these requires about 47 million tons of lithium -- 9 million tons for the cars and 38 million tons for the trucks and buses. That’s only 31 percent of the 2025 known lithium resources, and keep in mind, the known resources grow each year as people look for more lithium. What is more, lithium stays in a vehicle during a battery’s 15 to 25-year life. At the end of the battery’s life, the battery is recycled or re-used for stationary electricity storage, so the mining is one-time. For stationary electricity storage itself, less than one-tenth the lithium, 2 to 4 million tons, is needed worldwide than is needed for vehicles. As such, current lithium resources are over three times those needed for vehicles plus storage. Also, many other battery types now exist that don’t use lithium. In sum, there is no shortage of lithium to transition the world to 100% clean, renewable energy and storage for everything. More info Video:

Mark Z. Jacobson

13,130 次观看 • 3 个月前

Taming the Edge: How lithium could help us control #fusion plasmas. This video captures the first flashes of lithium being injected into the #plasma of our ST40 tokamak, marking the start of our exploration into its effects. Why lithium? In fusion research, we aim for H-mode, a high-performance state with improved plasma confinement. Future fusion power plants are expected to operate in this mode. But H-mode brings a challenge: ELMs (Edge Localised Modes) are bursts of energy at the plasma edge, similar to mini solar flares. These can reduce plasma temperature and damage the divertor with intense heat and particles. Pioneering work by PPPL and others has shown that lithium can suppress ELMs and increase energy confinement time, leading to higher temperatures. On ST40, we’re currently injecting lithium powder during plasma shots to explore its effects. As part of our upcoming ST40 LEAPS upgrade – in partnership with the U.S. Department of Energy and Department for Energy Security and Net Zero – we’ll go further, coating plasma-facing components with solid lithium using the ‘lithium evaporation’ technique. We’ll be experimentally testing several mechanisms. One key focus is how lithium absorbs hydrogen isotopes and reduces their recycling back into the plasma, lowering the density at the plasma edge, leading to a more stable edge pressure gradient. We’re starting to understand more about lithium’s effect on plasma performance, and early results show lithium isn't getting into the plasma core, which is good news for avoiding diluting the fusion fuel in future plants. The physics is complex, and we’re still learning. But each step brings us closer to fusion energy. By incorporating lithium into ST40, the world’s highest field spherical tokamak, we’re advancing our understanding of this critical enabling technology. #Fusion #FusionEnergy #Innovation #Limitless #EnergyTransition

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66,652 次观看 • 1 年前

Was The North Carolina/Tennessee Floods an Intentional Grab For Lithium?? Evidence suggests it very well could have been... It's all about lithium. Recent evidence suggests that Hurricane Helene was deliberately directed over North Carolina's Carolina Tin-Spodumene Belt, home to some of the richest lithium deposits in the U.S. Using advanced laser technology, it seems the storm was guided to flood the region, targeting the properties where precious lithium resources lay in wait beneath the surface. Western North Carolina, rich in lithium deposits, has become a target for extraction in recent years. The region, once untouched and full of natural beauty, has now been flooded and disrupted, most likely on purpose in their pursuit of the valuable mineral. Watch As Lasers Are Seen On Radar Seemingly Guiding Hurricane Helene Right Over North Carolina's Lithium Deposits Video by In2ThinAir shows laser like anomalies in storms path. Image 1: NC Lithium Region Image 2: Projected Path of Hurricane Helene Image 3: Actual Path After Help From Lasers This isn’t just a storm—it’s a calculated move to control lithium extraction in North Carolina. The destruction seems to serve an agenda to push out residents to make way for mining operations, all in the name of securing this vital resource. This is weather warfare! NEVER FORGET #Agenda2030 #LaserManipulation #HurricaneHelene #LithiumDeposits #NCWeather #RadarEvidence #CarolinaTinSpodumeneBeltline #KristyTallman #HurricanePathChange

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45,640 次观看 • 1 年前

"The last time a major LNG project was developed in this country was 42 years ago, that was a Nigeria LLG project." Nigeria's gas sector has recorded a major breakthrough with the advancement of the $3 billion UTM Floating LNG (FLNG) Project, unlocking stranded offshore gas resources and strengthening the country's drive for industrial growth and energy security. Key Highlights: - The project secured a 15-year gas supply agreement, clearing the path for a Final Investment Decision (FID) expected later this year. - It is Africa's first indigenous-led Floating LNG (FLNG) project, fully developed by a Nigerian company. - The project represents Nigeria's first major LNG development in over 40 years, since the launch of the Nigeria LNG project. - The initiative aligns with President Bola Ahmed Tinubu's gas development agenda, with officials crediting the administration's policy direction for unlocking the project. - A joint venture between NNPC Limited and Seplat Energy will supply 200 million standard cubic feet of gas per day under the 15-year agreement. - The FLNG facility will produce 1.8 million tonnes of LNG annually, monetising stranded gas from the Yoho Field. - About 30% of production, equivalent to over 300,000 metric tonnes of LPG annually, will be supplied to Nigeria's domestic market to support the Federal Government's clean cooking initiative. - The project is expected to generate billions of dollars in revenue, create thousands of jobs, and deepen local participation in the oil and gas industry. - Financing for the project is being led by African Export-Import Bank, which has also provided preparatory funding and is coordinating debt and equity financing. - Project promoters disclosed that the investment is oversubscribed, attracting strong interest from global energy traders and investors, including companies from the Middle East. - The project further demonstrates the growing capacity of indigenous Nigerian companies to deliver large-scale energy infrastructure while positioning Nigeria as a key supplier of LNG to regional and global markets.

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29,183 次观看 • 27 天前