ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
 ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
 ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
 ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
 ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
 ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
  •  ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
  •  ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
  •  ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
  •  ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
  •  ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)
  •  ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)

ALK Electrode (Integrated Knitted Mesh + Woven Mesh with Catalyst)

Elastic support of ALK electrode, which super improve ALK electrolyzer efficiency through

Description

1. Achieve NCZ making the electrode and membrane diaphragm complete fit,

2-Protect Diaphrage,the hard contact between anode and cathode may cause diaphragm damage, but our design is knitted mesh flexible support to effectively avoid diaphragm/membrane damage

3-Reduce Resistance, NCZ flexible mesh structure has more contact points, greatly reduce the contact resistance at a low cost, thus reducing energy consumption, and helps to a large electrotight operation
4-Optimization Flow Field, electrolytic cell structure (papillary, plate and frame filter) flow field design is complex, large flow resistance, not conducive to the rapid flow of gas liquid, zero pole distance from the electrolytic cell support structure more gap, conducive to gas liquid flow, help to reduce the electrolyte gas liquid ratio, improve the heat and mass transfer efficiency of the small chamber, reduce the energy consumption of the electrolytic cell.


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