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Application areas of CPE rubber cable anti-corrosion liquid level float switch

A corrosion-resistant liquid level float switch is widely used in the following fields, particularly in environments that handle corrosive liquids or require high chemical resistance:

1. Chemical Industry

  • Corrosive Liquid Storage Tanks: Used for detecting and controlling the liquid level of corrosive chemicals (such as acids, bases, solvents, etc.) in storage tanks, ensuring the safety and continuity of the production process.
  • Waste Liquid Treatment Systems: In chemical waste treatment processes, corrosion-resistant float switches are used to monitor liquid levels, preventing overflow or low levels that could affect treatment efficiency.

2. Water Treatment and Sewage Treatment

  • Sewage Treatment Plants: Used to monitor the liquid level in sewage ponds or chemical treatment tanks, preventing the overflow of chemicals or sewage and ensuring compliance with environmental regulations.
  • Water Purification Equipment: In water purification systems, corrosion-resistant liquid level float switches are used to detect the level in water tanks or chemical additive containers, preventing wastage of chemicals and contamination of water.

3. Pharmaceutical Industry

  • Pharmaceutical Production Equipment: When producing drugs involving highly corrosive chemicals, corrosion-resistant float switches are used to monitor the liquid levels in reactors, mixing tanks, and other equipment, ensuring the safe production of pharmaceuticals.
  • Chemical Reagent Storage: Used to monitor the liquid level in storage tanks containing various corrosive reagents in pharmaceutical plants, preventing excessive use or leakage of stored chemicals.




4. Food and Beverage Industry

  • Acidic or Alkaline Cleaning Agent Storage: In food processing plants, corrosion-resistant float switches are used to detect the liquid levels in storage tanks containing acidic or alkaline cleaning agents used for cleaning and disinfection, ensuring the proper use of cleaning agents.
  • Liquid Additive Storage Tanks: Used to monitor the liquid level in tanks storing corrosive liquid additives, ensuring the correct dosing of additives during the production process.

5. Marine and Shipbuilding

  • Seawater Desalination Equipment: Used to monitor liquid levels in seawater desalination units, preventing equipment damage due to excessive or insufficient liquid levels, thereby extending the equipment's lifespan.
  • Ship Chemical Storage Tanks: On ships transporting corrosive chemicals, corrosion-resistant float switches are used to monitor tank levels, preventing environmental and safety hazards caused by liquid spills.

6. Oil and Gas

  • Corrosive Fluid Storage: Used to monitor the liquid level in containers storing corrosive chemicals in oilfields and refineries, such as acidic oil-gas separation tanks and storage tanks.
  • Pipeline Systems: Used to monitor the liquid level of corrosive media in pipeline systems, ensuring the reliability of system operations.

7. Electroplating Industry

  • Electroplating Liquid Storage Tanks: Used to monitor liquid levels in electroplating tanks, where the liquids are often highly corrosive. Corrosion-resistant float switches can function reliably in such harsh environments.
  • Wastewater Treatment Ponds: Used in electroplating wastewater treatment to control and monitor the liquid levels in treatment ponds, preventing environmental pollution caused by corrosive wastewater.

8. Mining and Metallurgy

  • Pickling Process: Used to monitor liquid levels in pickling tanks during mining and metallurgical processes, ensuring the correct use and handling of corrosive liquids.
  • Tailings Treatment: In mining tailings treatment, corrosion-resistant float switches are used to monitor the liquid levels in storage tanks containing corrosive tailings liquids.

Corrosion-resistant liquid level float switches play a crucial role in the above fields, especially in environments that require handling corrosive liquids, ensuring system safety and stability.

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