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MGX Minerals Inc MGXMF

MGX Minerals Inc. is a Canada-based diversified resource and technology company with interests in advanced materials, metals, and energy technologies. The Company’s portfolios include Magnesium, Silicon, Lithium, Gold, and Silver. Its Magnesium projects include Driftwood Creek, Marysville, Red Mountain Group and Botts Lake. Its Silicon projects include Gibraltar, Koot and Wonah. Its Lithium projects include GC and Petrolithium. Its Gold projects include Heino, Tillicum and Fran. The Driftwood Creek project is located approximately 164 kilometers (km) north of Cranbrook, British Columbia (B.C.). The Marysville magnesite project is located approximately 12 km (7.7 miles) south of Kimberly, BC. The Red Mountain-Topaz-Cleland magnesite property is located approximately 50 km south of Golden. The Botts Lake magnesite property consists of claims approximately 50 km south of Golden, BC. The Gibraltar project is located approximately 95 kilometers northeast of Cranbrook, BC.


GREY:MGXMF - Post by User

Post by Wangotango67on May 08, 2024 12:41pm
77 Views
Post# 36029184

MgCO3 - - CARBON + PLAT GROUP + PREASURE = FUELS

MgCO3 - - CARBON + PLAT GROUP + PREASURE = FUELS Using MgCO3 to make several kinds of, fuels
Driftwoods initial carbon attached to MgO has the carbon already baked it
= first batch of fuel

Once MgCO3 is decarbonated to - MgO
One makes specialized ( reusable ) filters to collect CO2
Fitment over commercial / industrial  exhaust stacks

- collect $$$ for CO2 capture
- use carbon to turn to fuel
- significnt cost reducer + profit enhancer


Stanford engineers create a catalyst that can turn carbon dioxide into gasoline 1,000 times more efficiently

Cargnello and other researchers working to make liquid fuels from captured carbon imagine a carbon-neutral cycle in which carbon dioxide is collected, turned into fuel, burned again and the resulting carbon dioxide begins the cycle anew. <------ renewable cycle


In this regard, the ability of the new catalyst to produce gasoline from the reaction is a breakthrough, said Cargnello. The reactor in his lab would need only greater pressure to produce all the long-chain hydrocarbons for gasoline, and they are in the process of building a higher pressure reactor.

Gasoline is liquid at room temperature



“If we can make olefins from CO2 to make plastics,” Cargnello noted, “we have sequestered it into a long-term storable solid. That would be a big deal.”

The key to the remarkable increase in reactivity is that layer of porous plastic on the ruthenium, explained lead student author Chengshuang Zhou, a doctoral candidate in Cargnello’s lab, who conducted the search and experimentation needed to refine the new coating. An uncoated catalyst works just fine, he said, but only produces methane


Link -
https://news.stanford.edu/2022/02/09/turning-carbon-dioxide-gasoline-efficiently/











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