Difference between revisions of "Cargo:Fuel Cell"

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==Description==
 
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|valign=top|
 
A fuel cell using the hydrogen+oxygen=water chemical reaction. Conversion of the gases to water produces direct current electricity, with the water produced being collected in a secondary chamber for conversion back into constituent gases via external electrolysis. Waste heat is captured thermoelectrically as an additional power supply. Highly durable and environment-friendly, but eventual failure through heat loss and filament decay, plus a comparatively low power output, means such cells are used only in portable electronic devices and for backup power.
 
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==Details==
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{{Cargo Description |
* '''Price:''' FIXME
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| text = A fuel cell using the hydrogen+oxygen=water chemical reaction. Conversion of the gases to water produces direct current electricity, with the water produced being collected in a secondary chamber for conversion back into constituent gases via external electrolysis. Waste heat is captured thermoelectrically as an additional power supply. Highly durable and environment-friendly, but eventual failure through heat loss and filament decay, plus a comparatively low power output, means such cells are used only in portable electronic devices and for backup power.
* '''Mass:'''  FIXME
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|image=water_dynamo.jpg
* '''Volume:'''  FIXME
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|name=Fuel Cell
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|price=70
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|mass=2
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|space=1
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}}
  
{{Fixme}} ''Add the details from the master parts list''
 
  
[[Category:Database]][[Category:VS Tech]][[Category:Cargo|Water Dynamo]][[Category:Cargo:Industrial Goods|Water Dynamo]][[Category:Cargo:Utilities|Water Dynamo]]
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[[Category:Cargo:Industrially Manufactured Goods|Fuel Cell]]
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[[Category:Cargo:Power Utilities|Fuel Cell]]

Latest revision as of 05:53, 17 August 2007

thumb_arrow_up.png Power Utilities
water_dynamo.jpg
Purchasing data
Fuel Cell
Average price 70
Mass 2 (metric ton)
Space requirements 1 (cubic meter)


Description


A fuel cell using the hydrogen+oxygen=water chemical reaction. Conversion of the gases to water produces direct current electricity, with the water produced being collected in a secondary chamber for conversion back into constituent gases via external electrolysis. Waste heat is captured thermoelectrically as an additional power supply. Highly durable and environment-friendly, but eventual failure through heat loss and filament decay, plus a comparatively low power output, means such cells are used only in portable electronic devices and for backup power.