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Blue Sky Uranium Corp V.BSK

Alternate Symbol(s):  BKUCF

Blue Sky Uranium Corp. is a uranium and vanadium exploration company. The Company controls more than 480,000 hectares with the potential for uranium resources in Rio Negro, Chubut, Neuquen, and Mendoza provinces. Its projects include the Amarillo Grande Project, the Sierra Colonia Project, the Tierras Coloradas Project, Cerro Parva Project, Corcovo Project, and Chihuidos Project. The Company's flagship Amarillo Grande Project is located in central Rio Negro province, in the Patagonia region of southern Argentina. The Corcovo Project is comprised of two adjacent exploration properties totaling approximately 20,000 ha at the northeastern edge of the Neuquen basin. The Chihuidos project is comprised of six exploration property units totaling almost 60,000 hectares located 60 kilometers (km) west of Anelo city. The Sierra Colonia project includes 100% ownership of more than 28,470 hectares in the central-eastern part of Chubut Province.


TSXV:BSK - Post by User

Post by Wangotango67on Nov 06, 2024 1:59am
28 Views
Post# 36298118

BETTER BETA

BETTER BETA Uranium 238
still requires upgrading and enriching at a cost.
limited usage - reactors / some fuel cells / waste issue

Beta
Beta = Electrons
Coffinite = Beta Decay
Suns radiation delivers various UV rays one of which is - Beta.
Graphite / Graphene absorbs beta electrons directly

1 Electron = 1 ev ( think solar ray )
Beta Decay = 1 Beta is equivelant to 1 million ev electrons.
Now envision - cps

What would a Beta solar panel deliver ?  ( even with no sun )  there's a good idea.
Simple sheet of aluminum barracades the beta emissions.

Use Salar water
Use Bluff Coffinite
Formulate aqueous formula of Coffinite hydroxide ( rich grade )
Circulate aqueous Coffinite through graphite pipes
Add oxygen ( airation ) to formula ( pregnate water with O2 electrons ) ozone style formula.

Beta electrons naturally emit
Coffinite Beta emmisions  hit O2 particles liberating more electrons
Beta electrons and O2 liberated electrins absorb into graphite pipes
Electrode wires attached to graphite stream electrons to meter then directly to grid or storage

Solar could also act the part of additional beta electrons
Natural suns rays are fine.... but speed and intensity are much better.
Mirrors would induce suns rays and act the part of - solar laser rays.
Large reflective mirrors pointed at Salars could infuse additional beta electrons in water.

Uranium is enriched = irridated.
Lead ( once uranium ) now depleated -------> can still absorb radiation
X-ray labs still use lead shielding
Nuclear reactors use graphite shielding

Therefore.... coffinite in Salars might absorb additional beta particles from sun.
Adding more electrons for Beta to potentially absorb or free roam Salar and pumped
through graphite pipes to be absorbed as - electrons.

Great Test ?
Test hot rock cps
Leave in hot sunlight for few hours
Retest cps
if cps increases = could prove heat excites snd excellerates cps production.
Might explain why testing soils with good cps and week later cps goes down in count.
was the 1st test on a sunny day ( sun radiating rocks )
second test week later on cloudy day no sun excitation ?

Can't dismiss this theory...
Luminous rocks do capture suns rays and illuminate by night = absorbed suns rays.

My own theory of unstable atom
small manufacturing plant
requires atomosphere ( air gases ) to absorb and replenish beta electron, gamma, alpha

How to prove it wrong ?
place hot rock in vacuum chamber neg pressure
if it still emits radiation
debunks my theory
if no radiation is emitted proves my theory.

--------------------------------------------------------------------------------------------------------------------

Electricity = Electrons.

Rate of beta emmissions ( cps ) from solution formula ( heavy concentrate ) aqueous
Rate of added O2 and O2 electron liberation from coffinite beta particles  cps
Rate of solar beta particles ( mirrors ) laser pointed at Salar - adding electrons
Rate of electrons absorbed by graphite pipes  ( won't be 100% )
= Electron Energy Caprured

No pit mining
No acids or chemical conversions
No lessor valued concentrate
Different style of plant
= Energy Company  ( west + east ) bluffs act as coffinite - reserves ( if applicable )


The most abundant uranium mineral identified by the recent QEMSCAN® work (Creighton, 2018) on “oxide” type mineralization, however, was -coffinite (beta-coffinite).

LINK
https://miningdataonline.com/property/4547/Amarillo-Grande-Project.aspx


And of course...
Nuclear Beta Batteries as mentioned in prior posts.

Beta emitting metals should be highly valued.
Electron / Electricity compatability.
Numerous applications / services


Question put forth...
Could one produce a nonsolar panel whereby the cells absorb direct beta particles ?
Cells that capture beta particles
Kept inside of home
Simple thin aluminum foil secures beta particles from escapting
Ensures greater electron capture
Graphite Cells

Aqueous or Solid Fuel
How many electrons would 1 Kg of coffinite emit at 350 cps ?
How many atoms in 1 kg ?

1 Gram
The definition of Avogadro's number of 6.022 × 1023/mole is the number of atoms or molecules per one gram atomic weight.


Remember -
1 Electron = 1 ev ( think solar ray )
Beta Decay = 1 Beta is equivelant to 1 million ev electrons.

One volt supplies about one trillion trillion electrons
Aug 13, 2010

In beta minus decay,
a neutron decays into a proton, an electron, and an antineutrino: n p + e - +. In beta plus decay, a proton decays into a neutron, a positron, and a neutrino: p n + e+ +n.

Aug 9, 2000  Lawrence Berkeley National Laboratory


Would i be correct ?
coffinite mass x beta electron cps = volt per second x graphite capture = energy harnassed ?

All in plight of the Coffinite angle.
If Amarillo has an abundance of Beta Coffinite
Why not put it to use.

Which is why i'm not a fan of reading - oh, it doesn't have a high enough CPS count.
vs

Heavy metals that can be repurposed, recharged, irradated = Beta Volt Technology



There i'll leave it at that... few extra ideas for BSK.


Cheers....



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