EXPLORING THE TITANS OF TRADE: EUROPE'S LARGEST STOCK EXCHANGES

The Commanding Lead of Euronext

Nestled at the commercial heart of the Old Continent, Euronext stands as a formidable behemoth within the stock exchange arena. Spanning several venerated cities—Brussels, London, Amsterdam, Paris, and Lisbon—Euronext, as of the year 2017, claimed the prestigious title of Europe's preeminent stock exchange. With an impressive roster exceeding 1,200 issuers, the stock exchange boasts a market capitalization that soars to the dizzying heights of $4.3 trillion. The genesis of Euronext traces back to the turn of the millennium in 2000—resulting from the strategic amalgamation of the Amsterdam and Brussels Stock Exchanges and Paris Bourse. This fusion cemented its status as a financial colossus. The chronicles of Euronext took a notable turn in 2007 with its merger with the NYSE Group, engendering the NYSE Euronext. This union, however, saw dissolution, with Euronext re-emerging as a standalone company in 2014 after a successful initial public offering. Today, Euronext delineates itself in terms of market cap as a purveyor of market data and as a provider of settlement services and bespoke market solutions.



December 15, 2023

WESDOME GOLD MINES BOLSTERS ITS GOLD PRODUCTION STRATEGY WITH PRESQU’ÎLE ZONE DEVELOPMENT

Wesdome Gold Mines Ltd., a 100% Canadian enterprise focused on being Canada's next intermediate gold producer, recently announced its plan to take on the Presqu’île zone as one of its significant projects. Founded on a consistent oscillogram of consistent results, Wesdome operates two productive underground gold mines in Ontario and Quebec, with a yearly target production of 200,000+ ounces of gold.



September 20, 2023

US DOD GRANTS $110M TO ALBEMARLE AND TALON FOR CRITICAL MINERAL PRODUCTION. In a robust show of support for the domestic production of critical minerals, the US Department of Defense (DoD) has conferred over $110m in grant funding to Albemarle and Talon Metals. This strategic investment is set to reinforce the US supply chain for vital minerals, including lithium and nickel. Albemarle, a noted presence in the lithium industry, is set to receive a $90m grant under the Defense Production Act (DPA). This allocation will expand domestic mining and lithium production activities, further strengthening the US's position in the lithium market. The grant funding will be directed towards purchasing a fleet of mining equipment, a critical asset for restarting its lithium mine in Kings Mountain, North Carolina. Kings Mountain holds substantial hard rock lithium deposits and is projected to supply enough material to facilitate a lithium carbonate equivalent (LCE) conversion capacity of 50 kilotonnes. This supply is sufficient to fuel 1.2 million electric vehicles per annum. In anticipation of the mine becoming operational in late 2026, Albemarle is actively implementing the Initiative for Responsible Mining Assurance (IRMA) standards, emphasizing environmental stewardship and community engagement. Eric Norris, the president of Albemarle's energy storage unit, underscored the significance of home-based lithium extraction, processing, and lithium battery material research. He views lithium as an integral part of a sustainable energy future, making securing a domestic supply a national imperative. Meanwhile, Talon Metals, through its subsidiary unit Talon Nickel, has struck a funding agreement with the DoD's Office of Manufacturing Capability Expansion and Investment Prioritization. This financial boost will support expansion efforts, not only in staff numbers but also in resources, enabling the acceleration of initiatives to discover and delineate more nickel deposits within the nation's Midcontinent Rift geology. As part of this agreement, DoD will contribute $20.6m, with Talon adding $21.7m. Henri van Rooyen, Talon’s CEO, characterized the funding as an explicit recognition of domestic nickel supply as a national security priority. The financial boost will support Talon's efforts in uncovering domestic sources of battery-grade nickel, minimizing dependency on Russia, China or their ancillary companies in other countries. In essence, this reinforces the narrative that the sustainable development and security of domestic supplies of critical minerals are vital to the nation's defence and clean energy systems. The grants allocated by the DoD represent strategic investments in bolstering self-reliance in critical mineral production, a crucial step towards a cleaner and secure energy future. The stock looks good here. https://www.minestockers.com/Albemarle-Corporation.html Have a great day!



September 15, 2023

TAPPING INTO THE FUTURE: AI

Artificial Intelligence (AI) has swiftly infiltrated numerous sectors globally, transcending the boundaries and limitations of traditional data analysis and decision-making processes. One such sector where AI is causing substantial disruption is the mining industry, overriding older methods with more efficient, less hazardous, and economically viable alternatives. Here's a deeper dive into some of the prominent uses of AI in mining, exploring the game-changing transformation led by 'Smart Mining.' Artificial Intelligence translates into 'Intelligent Mining,' as intelligent systems powered by AI can crunch massive amounts of data. They analyze this data with unspeakable precision, offering better quality predictions, optimum solutions, and practical strategies for multiple tasks. This eventually contributes towards accelerating the overall processes, reducing the risk factor, and acting as a linchpin for operational efficiency in mining. From exploration to extraction and planning to logistics, the magic of AI spreads throughout the mining industry, bringing about a radical overhaul. Let's explore some of the top applications where AI is aiding the mining industry. One of the most crucial uses of AI is in predictive maintenance. AI can analyze machine performance data, detect anomalies, and forecast system failures before they occur, reducing downtime and avoiding potential financial losses. AI-powered drones and automated vehicles are another innovation. Under AI's supervision, these drones can conduct a site survey, collect data, map the terrain, and even perform dangerous tasks that previously required human intervention. On the other hand, automated vehicles ensure safer and more efficient transport of mined materials. Resource estimation and quality control is another critical area for AI. Using machine learning algorithms, AI can predict the location of rich mineral deposits, reducing the hit-or-miss nature of traditional mining. AI also contributes to the safety of the workforce. Through hazard identification and recommendation of safety measures, AI helps prevent accidents and ensure a safer working environment. We also witness the application of AI in waste management. AI can optimize the disposal and recycling of mining waste, reducing the industry's environmental impact. High-profile mining companies are a testament to the potential of intelligent mining. Rio Tinto, a multinational mining company renowned for its AI-driven autonomous trucks, drilling systems, and trains, is a leader in AI implementation. Another exemplary player is BHP Billiton, leveraging AI for predictive maintenance and advanced analytics for decision-making. Yes, the change is here. As technology advances, we see a parallel progression in mining. Smart mining, empowered by Artificial Intelligence, is not a distant likelihood but an ongoing transformation. The mining industry, just like any other sector, needs to adapt to these changes or run the risk of being left behind. With nifty and innovative applications in play, AI is set to redefine the contours of this crucial industry in the most awe-inspiring ways. Here is the list of AI providers we are starting to follow: https://www.minestockers.com/ai.htm MineStocker Inc



September 14, 2023

Discover how a Swedish tech company transforms abandoned mines into renewable energy sources. As the world continues to move towards zero-emission targets, coal mining activities are being reduced in many countries, leading to the closure of numerous mines. However, the story doesn't end there for mine owners. Henrik Boman, C.E.O. of Sustainable Energy Solutions (SENS), explains that mine owners face several problems when their mines close. The closure often happens rapidly, leaving owners, mine operators, and staff without safety nets. The challenge lies in finding a way to give these disused mines a second life. Inadequate regulations in poorer countries mean that many mine owners do nothing, leaving local communities at risk. Tragic incidents like the deaths of 176 children in empty mines in Indonesia between 2014 and 2021 highlight the dangers associated with abandoned mines. Even in wealthier countries, accidents continue to occur, with almost 200 deaths in the United States since 1999, according to the M.H.S.A. Abandoned mines also pose risks such as methane emissions, collapse, and groundwater contamination that can persist for decades. Even when land reclamation uses best environmental practices, it rarely restores the site to its natural wilderness state. SENS, a Swedish tech company, has developed a solution for addressing these challenges. The company has pioneered Underground Pumped Hydro Storage (U.P.H.S.) technology, which converts the water in abandoned mines into a valuable energy storage resource. SENS employs U.P.H.S. technology in closed mine shafts, where turbines are installed. The difference in height between the two reservoirs, along with the water turbine in the mine shaft, generates energy. Boman explains, "Whenever you have a higher reservoir with water, there is energy. When the water is released from the higher reservoir, it generates electricity." Once the water from the mine is partially pumped out, another Swedish company called Clearwell purifies it with a containerized water purification system before safely releasing it into surrounding lakes, rivers, or marshland. Some water is stored above ground in a dam and can be released into the mine shaft with the turbine. While pumped hydro storage has been used in Europe and elsewhere, SENS' technology stands out because it runs entirely on renewable energy. A nearby solar or wind park generates green energy to power the pumps, using compressed air and large batteries to store excess energy for cloudy or rainy days when solar power is unavailable. This self-sufficient system enables the pumps to push the released water from the mine reservoir, over 400 meters underground, to ground level in the dam. The water is continuously cleaned in Clearwell's container. The entire system can also sell excess energy back to electricity companies, helping to balance the grid. SENS recently conducted tests at the Lilla Båtskär iron ore mine below the sea on the Finnish island of Åland, with support from grants provided by the E.U. This success demonstrates the commercial viability of the concept. In addition to battery and solar projects, SENS is collaborating on pumped hydro storage projects in the Rožná uranium mine in the Czech Republic and Spieonkop in South Africa. The company is engaged in discussions with electricity companies, landowners, and local authorities across Sweden, as well as in Africa and Australia. Boman emphasizes that SENS offers mine owners the opportunity for an income stream and the possibility of re-employing mineworkers. The company's collaboration with Axpo, Switzerland's largest producer of renewable energy, further solidifies its position. Axpo has acquired and financed SENS' solar plant and battery storage projects in Filipstad, Sweden, which will make it one of the largest energy storage plants in the country, incorporating U.P.H.S., a solar park, and battery systems. "We have had a bit of a breakthrough with larger companies reaching out to us now," says Boman. "There are several kinds of companies who realize they might need battery storage solutions and larger stores of energy from mines. We can provide energy on a much larger scale than they could alone to enable them to store energy in the water, produce clean water, and sell energy back to the grid as well." MineStocker Inc www.MineStockers.com Kevin Dwyer C.E.O., Head Trader



September 8, 2023

5 MINING TECHNOLOGY BUSINESSES TO WATCH CLOSER IN 2023

Innovative and sustainable solutions are set to revolutionize the mining technology industry.

Here are five companies striving to maintain pace with the never-ending, dynamic demands of the mining industry. Notably, their promising initiatives and business models look to significantly reduce energy consumption and greenhouse gas emissions, marking a significant turning point in embracing sustainable practices. NDB Inc., a Silicon Valley-based nanotechnology firm, is our first company to follow closely. Their ground-breaking Nano Diamond Battery technology aims to transform radioactive decay energy into long-lasting energy from nuclear waste, promising a breakthrough in semiconductors, energy, and batteries. https://minestockers.com/NDB-Inc.html Rockburst Technologies Inc. is a Vancouver-based company seeking innovative solutions and addressing significant challenges in the mining industry. Their patented Transcritical CO2 Pulverisation (tCO2) technology is a notable contribution to the growing call for reducing energy and GHG emissions. https://minestockers.com/Rockburst-Technologies-Inc.html QL Space from Perth, Australia, promises to change industries such as defence, mining, agriculture, and the environment with its disruptive space technology. https://minestockers.com/QL-Space.html CBSM Mining Services Pty Ltd is an Australian-based company unrolling innovative solutions in the global mining, cement, and waste sectors. Their Australian patented dry and wet comminution technology has the potential to redefine these sectors by enhancing efficiency and cutting down energy consumption. https://minestockers.com/CBSM-Mining-Services-Pty-Ltd.html Scantech International innovates and enhances efficiency and productivity in resource sectors such as cement, coal, and minerals. Their state-of-the-art microwave measurement technologies and real-time analysis of conveyed material flows are attracting global attention. https://minestockers.com/Scantech-International.html Revolutionizing the mining industry, technological advances are poised to usher in unprecedented efficiency, sustainability, and profitability for those who keep an eye on change. Here are some great examples we follow. https://minestockers.com/tech.htm The impact of AI is becoming increasingly significant and expanding rapidly. AI and good messaging will spread the new mining narrative. https://minestockers.com/Changing-the-Mining-Narrative.2023 Cheers!



August 29, 2023

The Sudbury Basin, also known as Sudbury Structure or Sudbury Nickel Irruptive, is one of the largest and most well-known impact craters on Earth, located in Ontario, Canada. Its formation is tied to a significant geological event that has created rich mining opportunities.

Formation: Impact Event: The Sudbury Basin was formed around 1.85 billion years ago during the Paleoproterozoic era. A large meteorite or comet, estimated to be about 10-15 kilometres in diameter, struck the area. Crater Formation: The impact created an enormous crater, initially estimated to be around 200-250 kilometres in diameter. Over time, this crater has been filled with rocks and geological formations, and it is now mostly covered by the Sudbury Basin, measuring approximately 60 kilometres long, 30 kilometres wide, and 15 kilometres deep. Geological Features and Metal Deposits: Igneous Layering: The impact caused significant melting, leading to the differentiation of the melt sheet into various layers, including the formation of the Sudbury Igneous Complex. Rich Ore Deposits: The Sudbury Basin is famous for its rich deposits of valuable metals like nickel, copper, platinum, palladium, gold, and other precious and rare elements. The impact likely contributed to the concentration of these metals, making the area one of the most productive mining regions in the world. Mining Industry: The discovery of these metals in the late 19th century led to the establishing of a vibrant mining industry in Sudbury. The basin's rich deposits have been vital to the global nickel market and attracted exploration for other valuable minerals. Economic Significance: Mining these metals has been crucial to the local economy and has a significant impact globally, particularly in producing stainless steel and other nickel-containing products. Environmental Concerns: Mining activities have raised environmental concerns. Sudbury and area has made great progress in mitigating environmental effects and is now a successful example of land reclamation. The Sudbury Basin continues to be a subject of scientific and economic interest, with ongoing research into its formation and the geological processes that have made it one of the world's leading sources of valuable metals.



August 28, 2023

Tungsten, often taken as commonplace, plays a vital role in various industries and aspects of our lives.

This lustrous, white metal is pliant and easily manipulated in its elementary form. However, its alloy, usually carbon and oxygen, imbues the metal with significant hardness and brittleness, rendering it a coveted asset in challenging industrial applications. Often referred to as Wolfram, Tungsten is a heavy-duty metallic element coveted for its remarkable density and high melting point. These unique features make it the material of choice in EV batteries by enabling it to weather the high temperatures and intense pressure during battery charging and discharging processes. Arguably, one of the most alluring reasons behind Tungsten becoming an indispensable component in EV batteries is its ability to augment the battery's energy density. Essentially, energy density reflects the quantity of energy a battery can stow per unit of space - an essential attribute for EV batteries. The higher the energy density, the more energy can be crammed into a smaller space. In other words, batteries become lighter and compact without relinquishing performance. Set to play an integral part in fuelling the EV Revolution is the recently revived Sangdong Tungsten Mine, owned by Almonty Industries. Offering a reliable and reasonably-priced source of high-tier Tungsten, this mine promises to alleviate the tightening supply of this crucial mineral. Thus ensuring a steady and sustainable supply to South Korea's flourishing EV industry. As we move towards cleaner and more sustainable transportation, Tungsten will play a crucial role in developing EV batteries. With advancing technology, Tungsten use in EV batteries will increase. Almonty Industries' Sangdong Tungsten Mine is strategically positioned to provide this essential material to the industry. Full Disclosure: We are long the stock. https://www.minestockers.com/Almonty-Industries-Inc.html Cheers!



August 24, 2023






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