Concentrator device "Canly"
A comprehensive management device for plating solutions that compactly combines both the concentration mechanism and the electrolysis mechanism!
Introducing the "Canly," a concentration device from Sanjin Manufacturing. It is a comprehensive management system for plating solutions that compactly integrates a concentration mechanism that significantly reduces the need for replenishment water by concentrating and recovering plating solution, and an electrolysis mechanism that simultaneously recovers metal components, adjusts concentration, and removes impurities. 【Applications】 Concentration of plating process water (copper, nickel, chrome, zinc plating) / Reduction of waste liquid volume 【Features of Canly】 ■ Efficiently evaporates and concentrates moisture in the plating solution, recovering plating chemicals ■ Atmospheric evaporation mechanism utilizing air, eliminating concerns about decomposition of the plating solution and the need for cooling water ■ In the case of chrome plating, an attached membrane electrolysis device separates and removes impurities (cations) in the plating solution, preventing an increase in impurities through recovery ■ In the case of nickel plating, an attached electrolysis device performs electrolysis (metalization) or reverse electrolysis according to the concentration of the plating solution, controlling it to a specified concentration ■ Extremely simple operation with few failure points, requiring no maintenance ■ Adopts a low-temperature evaporation concentration method with a corrosion-resistant design ■ Modular design of the device takes up less installation space and is more cost-effective compared to conventional devices *For more details, please refer to the PDF document or feel free to contact us.
basic information
For more details, please refer to the PDF document or feel free to contact us.
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Applications/Examples of results
【Purpose】 Concentration of process water for plating (copper, nickel, chrome, zinc plating) / reduction of waste liquid volume.