Fuel Cells: Unterschied zwischen den Versionen

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  | (25) 30 - 100
 
  | (25) 30 - 100
 
  | proved and tested
 
  | proved and tested
| Power, heat, emission reduction
+
|-
| since 1996 over 100 units in operation
 
|-
 
 
  | [[Boilers / Burners]] - monovalent
 
  | [[Boilers / Burners]] - monovalent
 
  | (20) 25 - 100
 
  | (20) 25 - 100
 
  | proved and tested
 
  | proved and tested
| Heat, emission reduction
 
| since 1980th
 
 
  |-
 
  |-
 
  | [[Boilers / Burners]] - additional
 
  | [[Boilers / Burners]] - additional
 
  | (20) 25 - 100
 
  | (20) 25 - 100
 
  | proved and tested
 
  | proved and tested
| Heat, emission reduction
+
  |-
| since 1900 on mines
 
|-
 
 
  | [[CMM flaring]]
 
  | [[CMM flaring]]
 
  | 20 - 100
 
  | 20 - 100
 
  | proved  
 
  | proved  
| Emission reduction
 
| used on landfills
 
 
  |-
 
  |-
 
  | [[Liquified Natural Gas - LNG]]
 
  | [[Liquified Natural Gas - LNG]]
 
  | 50 - 100
 
  | 50 - 100
 
  | tested  
 
  | tested  
| LNG, emission reduction
 
| 660 Mio. m³ in 2006 (US-market)
 
 
  |-
 
  |-
 
  | -
 
  | -
 
  | -
 
  | -
 
  |}
 
  |}

Version vom 4. Mai 2012, 15:02 Uhr

Introduction

A fuel cell is an electrochemical cell that produces power through a reaction, triggered in the presence of an electrolyte, between the fuel (on the anode side) and an oxidant (on the cathode side). The reactants flow into the cell, and the reaction products flow out of it, while the electrolyte remains within it. Currently a couple of fuel cells are available, which can be allocated to different fuel cell families as shown in the table below.

Type Efficiency Operating temperature
Gas engines (25) 30 - 100 proved and tested
Boilers / Burners - monovalent (20) 25 - 100 proved and tested
Boilers / Burners - additional (20) 25 - 100 proved and tested
CMM flaring 20 - 100 proved
Liquified Natural Gas - LNG 50 - 100 tested
- -