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Operating micro-tubular SOFCs with wood-gas components
Gerhard Buchinger
, Paul Hinterreiter
, Thomas Raab
, Stefan Griesser
, Dieter Meissner
R&D-Headquarters
Research output
:
Contribution to conference
›
Abstract
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Keyphrases
Vol%
100%
Micro-tubular SOFC
100%
Wood Gas
100%
Gas Component
100%
Hydrogen Chloride
57%
Hydrogen Sulfide
42%
Impurities
28%
Carbon Dioxide
28%
Pure Hydrogen
28%
Gasses
28%
Cell Performance
14%
Fuel Cell
14%
Dust
14%
Dry State
14%
Solid Oxide Fuel Cell
14%
Methane
14%
Working Temperature
14%
Impurity Concentration
14%
Cool-down
14%
Gasifier
14%
Fluidized Bed
14%
Energy Loss
14%
Heating-cooling
14%
Renewable Fuels
14%
Propylene
14%
Pyrolysis Gas
14%
Hot Gas Cleaning System
14%
Greenhouse Effect
14%
Ethylene
14%
Water Concentration
14%
Neutral Gas
14%
Variable Concentration
14%
Microtubules
14%
Fuel Cell Cathode
14%
Tubular Fuel Cell
14%
Product Gas
14%
Absorber
14%
Output Concentration
14%
Reduced Energy
14%
Carbon Monoxide
14%
Synthetic Wood
14%
Main Ingredients
14%
Ammonia/hydrogen
14%
Engineering
Solid Oxide Fuel Cell
100%
Component Gas
100%
Hydrogen
100%
Hydrogen Sulfide
42%
Fuel Cell
42%
Carbon Dioxide
28%
Cell Performance
14%
Special Interest
14%
Cleaning System
14%
Flow Rate
14%
Energy Dissipation
14%
Methane
14%
Fluidized Bed
14%
Gasifiers
14%
Renewable Fuel
14%
Pyrolysis Gas
14%
Hot Gas Cleaning
14%
Product Gas
14%
Flow Velocity
14%
Carbon Monoxide
14%
Nitrogen
14%
Chemical Engineering
Hydrogen
100%
Hydrogen Sulfide
60%
Carbon Dioxide
40%
Pure Hydrogen
40%
Gas Cleaning
20%
Propylene
20%
Pyrolysis
20%
Fluidized Bed
20%
Methane
20%
Ethylene
20%
Ammonia
20%
Oxide
20%
Nitrogen
20%
Material Science
Hydrogen
100%
Chloride
57%
Hydrogen Sulfide
42%
Carbon Dioxide
28%
Oxide Compound
14%
Anode
14%
Carbon Monoxide
14%