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Pulsar Helium is a leading primary helium exploration and development company focused on discovering and developing helium resources. The company concentrates on projects where helium is the primary economic driver, rather than a byproduct of hydrocarbon production. Pulsar’s portfolio consists of the Topaz helium project in Minnesota (USA), and the Tunu helium project in Greenland. The ultimate objective is to become a significant producer in the global helium market, addressing supply shortages and providing a critical resource for various industries including technology, healthcare, and research.
The company boasts two primary helium assets, both strategically located in safe jurisdictions:
Helium is a critical and scarce resource essential to many technology-driven industries, all of which are significantly affected by shifting supply and demand dynamics. Pulsar Helium stands out in the market through several key advantages:
In the Canadian province of British Columbia with registration number BC1369886.
Pulsar Helium is traded on multiple exchanges:
June 30, 2022.
Helium is a chemical element with the symbol He and atomic number 2. It is a colorless, odorless, tasteless, non-toxic, and highly inert gas that heads the noble gas series in the periodic table. Helium is the second-lightest element after hydrogen and is the secondmost abundant element in the observable universe, being present at about 24% of the total elemental abundance, which is more than 12 times the mass of all the heavier elements combined.
In the Earth's atmosphere, helium is found in small amounts, but it is much more abundant in the universe, primarily in stars. On Earth, it is obtained via extraction from the ground.
No, helium is not toxic or dangerous. Helium is a non-toxic, odorless, tasteless, and nonflammable gas that is considered safe for human exposure.
While helium is often found in conjunction with hydrocarbons, it is not ubiquitous with them. The growing demand for helium has spurred exploration specifically targeting helium deposits, leading to discoveries of significant non-hydrocarbon helium reservoirs. This trend towards “green helium” exploration may reshape the industry’s future, potentially reducing reliance on hydrocarbon-associated helium sources
Pulsar uses conventional drilling methods, whereby a vertical well is drilled to the required depth to intersect the helium-bearing reservoir. There is no hydraulic fracturing (fracking) and no use of chemicals (including PFAS), the only drill additives are water and food-grade thickening agents (including walnut shells, clay etc.).
To protect any water table that may be present, Pulsar utilises and industry standard technique called ‘casing’. This is where a wide diameter drill pipe is drilled into the ground to a depth of no less than 60 feet and then cemented in place, sealing off any interaction with any water table that may be present. A narrowed diameter drill pipe is then telescopically inserted in the casing to continue drilling to greater depth.
Helium has a number of important uses due to its unique properties, including:
Cryogenics and cooling: Helium is indeed widely used in cryogenics and cooling applications due to its extremely low boiling point of -268.9°C (-452.0°F). This makes it ideal for
Semiconductor manufacturing: Helium plays a critical role in semiconductor production due to its inert nature and high thermal conductivity, making it ideal for these applications:
Renewable energy: Helium is essential for renewable energy technologies, particularly in applications requiring ultra-low temperatures:
Welding: Helium is commonly used in welding, particularly for:
Leak detection: Helium’s small atomic size and inert nature make it excellent for leak detection in:
Spacecraft exploration: In spacecraft and rockets, helium is used for:
Diving: In deep-sea diving, helium is used:
Other applications:
Pulsar Helium has entered an agreement with Chart Industries (NYSE: GTLS), a leading supplier of industrial gas processing plant and equipment. The Agreement outlines a procurement roadmap, specic to Pulsar's needs, and facilitates access to advanced gas processing technologies, including helium and carbon dioxide capture. More information on helium separation and production will be provided to the market as Pulsar’s projects advance and Chart provides their recommendations.