The working principle of the water electrolysis hydrogen gas generator is based on electrolysis method. When direct current is applied to an electrolytic cell filled with the electrolyte, the water molecules undergo an electrochemical reaction on the electrode, being separated into hydrogen and oxygen. Then through coolers and separators hydrogen and oxygen are separated, hydrogen being as product gas while oxygen being as waste to atmosphere.
The chemical reaction formula is 2H2O=2H2↑+ O2↑
PEM (proton exchange membrane) and lye types are optional.
The working principle of the water electrolysis hydrogen gas generator is based on electrolysis method. When direct current is applied to an electrolytic cell filled with the electrolyte, the water molecules undergo an electrochemical reaction on the electrode, being separated into hydrogen and oxygen. Then through coolers and separators hydrogen and oxygen are separated, hydrogen being as product gas while oxygen being as waste to atmosphere.
The chemical reaction formula is 2H2O=2H2↑+ O2↑
PEM (proton exchange membrane) and lye types are optional.
MODELS:
|
Model |
H2 capacity |
O2 capacity |
H2 purity |
Working pressure |
Power consumption |
|
YCHE-1 |
1 |
0.5 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-2 |
2 |
1 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-10 |
10 |
5 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-20 |
20 |
10 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-30 |
30 |
15 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-50 |
50 |
25 |
≧99.8% |
0.5-3.0 |
≤5.0 |
|
YCHE-100 |
100 |
50 |
≧99.8% |
0.5-3.0 |
≤5.0 |
|
YCHE-200 |
200 |
100 |
≧99.8% |
0.5-3.0 |
≤5.0 |
*higher pressure available if required.
Dew point is normally -65°C.
MODELS:
|
Model |
H2 capacity |
O2 capacity |
H2 purity |
Working pressure |
Power consumption |
|
YCHE-1 |
1 |
0.5 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-2 |
2 |
1 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-10 |
10 |
5 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-20 |
20 |
10 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-30 |
30 |
15 |
≧99.9% |
0.5-3.0 |
≤5.0 |
|
YCHE-50 |
50 |
25 |
≧99.8% |
0.5-3.0 |
≤5.0 |
|
YCHE-100 |
100 |
50 |
≧99.8% |
0.5-3.0 |
≤5.0 |
|
YCHE-200 |
200 |
100 |
≧99.8% |
0.5-3.0 |
≤5.0 |
*higher pressure available if required.
Dew point is normally -65°C.
ADVANTAGES:
-Proven mature technology with reliability
-Material consumed is only water and electricity,
-Output is only H2 and O2
-Reliable complete automatic control system
-No corrosion, no pollution, high hydrogen purity by electrolysis of pure water
-Stable output of hydrogen voltage and flow, and automatically tracked with the change of load gas consumption
-Automatic protections such as water shortage, overvoltage, and waterproof flushing
-Complete and reliable protection technology
-Flow rates are adjustable ranging 50%-100%
-Zero-pole distance, high-activity PEM catalytic electrode pair
-H2 leakage detection system to vent leaked H2 out of room
…
ADVANTAGES:
-Proven mature technology with reliability
-Material consumed is only water and electricity,
-Output is only H2 and O2
-Reliable complete automatic control system
-No corrosion, no pollution, high hydrogen purity by electrolysis of pure water
-Stable output of hydrogen voltage and flow, and automatically tracked with the change of load gas consumption
-Automatic protections such as water shortage, overvoltage, and waterproof flushing
-Complete and reliable protection technology
-Flow rates are adjustable ranging 50%-100%
-Zero-pole distance, high-activity PEM catalytic electrode pair
-H2 leakage detection system to vent leaked H2 out of room
…
COMMERCIAL APPLICATIONS:
-Nylon/plastics/pesticides production
-Metallurgy
-Semiconductor
-Float glass
-Artificial diamond
-Electronics
-Power plants
-Generator set cooling
-Hydrogen fuel cell
-Hydrogen refueling stations
-Hydrogen internal combustion engine
COMMERCIAL APPLICATIONS:
-Nylon/plastics/pesticides production
-Metallurgy
-Semiconductor
-Float glass
-Artificial diamond
-Electronics
-Power plants
-Generator set cooling
-Hydrogen fuel cell
-Hydrogen refueling stations
-Hydrogen internal combustion engine