Hydrogen Production by Electrolytic Cell Machine

Product Details
Customization: Available
After-sales Service: 1 Year
Warranty: 1 Year
Gold Member Since 2021

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Export Year
2017-10-13
  • Hydrogen Production by Electrolytic Cell Machine
  • Hydrogen Production by Electrolytic Cell Machine
  • Hydrogen Production by Electrolytic Cell Machine
  • Hydrogen Production by Electrolytic Cell Machine
  • Hydrogen Production by Electrolytic Cell Machine
  • Hydrogen Production by Electrolytic Cell Machine
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Basic Info.

Model NO.
LBP-100
Coating
Powder Coating
Substrate
Nickel Mesh
Condition
New
Electrode Size
2200mm X2200mm
Coating Materials
Nial, Nimoal, Nifeal, Nixal, Nixxal
Flame Temperature
4000-5000°c
Powder Delivery Method
External Powder Feeding
Control Type
PLC+Touch Screen+Mass Flow Controller
Main Gas Type and Pressure
Argon(0.35-0.7MPa)
Secondary Gas Type and Pressure
Hydrogen(0.3-0.45MPa)
Volume of Powder Storage Cylinder
3lx2
Powder Feeding Gas
Nitrogen or Argon
Output High-Frequency Voltage
AC2500~3000
Transport Package
by Wooden Box
Specification
LBP-100S
Trademark
Lijia
Origin
China
Production Capacity
100 Set/ Yesr

Product Description

 Hydrogen Production by Electrolytic Cell Machine(1) Alkaline electrolytic cell ALK because of its obvious development advantages, the mainstream trend will not change in a few years, nickel mesh electrode plasma spraying mode will be the most important catalytic electrode production mode in recent years.
(2) As the alkaline tank toward the large standard square, high electrical density, low energy consumption, wide load, lightweight trend continues to develop, the head company released 3000Nm³/h electrolytic cell, the size of nickel mesh electrode towards a larger direction, the future will have 3000mm diameter nickel mesh electrode more and more appear. The size of the nickel mesh catalytic electrode coating production line can be increased to more than 3 meters.
(3) With the acceleration of alkaline tank orders and installed capacity, the production of nickel mesh catalytic electrodes is forced to vigorously improve production efficiency, and the current traditional manual handling of spraying process flow mode will gradually fail to keep up with the improvement of production capacity, will be gradually eliminated, and automated intelligent spraying production line will become the mainstream.
(4) Plasma spraying equipment is developing towards a high-power mode, the power of the spray gun is gradually increasing, and the processing efficiency per unit time of the catalytic electrode plasma spray gun will also increase by more than 50% next year, further reducing the production cost, and with the increase in power, the catalytic performance will continue to improve.
(5) The spraying materials of catalytic electrodes are also continuously developed and optimized, and the advancement from binary materials to multi-powder materials is an inevitable law, and the coating performance of the spraying production line will continue to improve.
(6) With the increase in shipments of most of the electrolytic cell manufacturers with core technical capabilities, and the competition will be more intense, the cost of nickel mesh catalytic electrode in the electrolytic cell accounts for 15-20%, then the cost reduction and efficiency will be put on an important agenda, most electrolytic cell manufacturers in addition to purchasing catalytic electrodes from electrode manufacturers, they will also purchase spray production lines, and process themselves. Both to ensure delivery efficiency, while reducing manufacturing costs, and by optimizing the electrode spraying process, help to improve their own product performance, and to do process confidentiality, in the cost and performance of the double income, and have a greater say in the market.

Hydrogen Production by Electrolytic Cell MachineHydrogen Production by Electrolytic Cell Machine

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