Difference between revisions of "Argon"

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|abundance=1.6% ([[atmosphere]])
 
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'''Argon''' is the third most abundant element in the martian [[atmosphere]], 1.6%.<ref>[http://nssdc.gsfc.nasa.gov/planetary/factsheet/marsfact.html NASA ''Mars Fact Sheet'']</ref> It is an oderless, colorless [[nobel gas]]. Like the other nobel gasses, it is chemically inert. As such, it has many uses in industry. Argon is easily produced from the atmosphere by cooling to feeze out carbon dioxide and [[distillation]] to separate out the nitrogen.  For use as a buffer gas in a colony atmosphere, the nitrogen need not be separated.  Mixed nitrogen and argon can be added to oxygen to dilute it to 20% mole fraction oxygen.
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'''Argon''' is the third most abundant element in the martian [[atmosphere]], 1.6%.<ref>[http://nssdc.gsfc.nasa.gov/planetary/factsheet/marsfact.html NASA ''Mars Fact Sheet'']</ref> It is an oderless, colorless [[nobel gas|noble gas]]. Like the other noble gasses, it is chemically inert. As such, it has many uses in industry. Argon is easily produced [[In-situ resource utilization|in-situ]] from the martian atmosphere by cooling to condense out carbon dioxide and [[distillation]] to separate out the nitrogen.  For use as a buffer gas in a colony atmosphere, the nitrogen need not be separated.  Mixed nitrogen and argon can be added to oxygen to dilute it to 20% mole fraction oxygen, the concentration of the standard Earth atmosphere. The substitution of nitrogen by argon for a breathable atmosphere seems straightforward.
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== Uses ==
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* As an [[Air|atmospheric filler]] produced alongside nitrogen
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* As an inert gas in certain industrial processes
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* As propellant for electrical space propulsion
  
 
==Reference==
 
==Reference==
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Revision as of 20:48, 2 June 2019

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Argon

Abundance: 1.6% (atmosphere)

Argon is the third most abundant element in the martian atmosphere, 1.6%.[1] It is an oderless, colorless noble gas. Like the other noble gasses, it is chemically inert. As such, it has many uses in industry. Argon is easily produced in-situ from the martian atmosphere by cooling to condense out carbon dioxide and distillation to separate out the nitrogen. For use as a buffer gas in a colony atmosphere, the nitrogen need not be separated. Mixed nitrogen and argon can be added to oxygen to dilute it to 20% mole fraction oxygen, the concentration of the standard Earth atmosphere. The substitution of nitrogen by argon for a breathable atmosphere seems straightforward.

Uses

  • As an atmospheric filler produced alongside nitrogen
  • As an inert gas in certain industrial processes
  • As propellant for electrical space propulsion

Reference


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