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Methanol Decomposition for Hydrogen Production Uni

TJCS

Description

Methanol in the temperature range of 220 to 300 degrees, cracking in the copper catalyst to generate hydrogen and carbon monoxide, carbon monoxide in the same catalyst under the reaction with steam to produce carbon dioxide, carbon dioxide is removed by pressure swing adsorption process, ultimately producing hydrogen.
The reaction is: of CH3OH = 2H2 + CO, CO + H2O = H2 + CO2, and the total reaction: of CH3OH + H2O = 3H2 + CO2.
Process principles
The reaction is as follows:
The main reaction: CH3OH = CO +2 H2 -90.7KJ/mol
CO + H2O = CO2 + H2 +41.2 KJ / mol
The overall reaction: CH3OH + H2O = CO2 +3 H2 -49.5KJ/mol
Side effects: 2CH3OH = CH3OCH3 + H2O +24.9 KJ / mol
CO +3 H2 = CH4 + H2O +206.3 KJ / mol
Reaction transforming the gas by the heat exchanger, cooling, condensing its composition
H2 CO2 CO CH3OH H2O
Saturation of 73 ~ 74% 23 ~ 24.5% ~ 1.0% 300ppm
The main reaction is an endothermic reaction, the use of external heat conducting oil. Conversion of gas by the heat exchanger, cooling, condensing into the scrubber tower kettle collection not transformed after methanol and water recycling
Technical indicators
Gas production: 2.5 ~ 300Nm3 / h
Impurities: ≤ 10PPm
Working pressure: 0.05 ~ 1.0MPa
Pressure dew point: ≤ -40 ° C.

Methanol Decomposition for Hydrogen Production, Methanol Decomposition ,

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