EXHIBITION

Home / News / EXHIBITION / Reduction of foam pump energy efficiency
  • All
  • DYNAMIC
  • EXHIBITION

Reduction of foam pump energy efficiency

2024.11.05

Foam soap dispenser pump is a sanitary equipment widely used in public places and home toilets. Compared with traditional liquid soap dispensers, foam pumps can produce rich foam and use less soap to achieve the same cleaning effect, thereby saving water resources and electricity consumption. Reducing the energy efficiency of foam pumps is also very important. There are the following concentrated methods to reduce the energy efficiency of foam pumps
Adopting efficient pump body design
The energy efficiency of foam soap dispenser pumps is closely related to its pump body design. Efficient pump body design should consider the principles of fluid dynamics to reduce resistance and turbulence during liquid flow, thereby reducing energy consumption. For example, the use of smooth inner walls and optimized flow channel design can reduce friction losses inside the pump and improve the pump's delivery efficiency.
Perform regular maintenance and inspections
Regular maintenance and inspection of foam soap dispenser pumps can ensure that they are always in the better working condition. This includes cleaning the pump body, inspecting and replacing wear parts, and inspecting sealing performance. By promptly discovering and solving problems, pump efficiency can be avoided, equipment life can be extended, and energy efficiency can be improved.
Use high-efficiency soap liquid
Choosing high-efficiency soap liquid is also important for improving the energy efficiency of the foam soap dispenser pump. High-efficiency soap liquid can reduce the pump's conveying resistance and reduce the pump's working pressure, thereby reducing energy consumption. At the same time, high-efficiency soap liquid can also provide better cleaning effects, reduce user usage, and further reduce energy consumption.

VIEW MORE

Contact Us

*We respect your confidentiality and all information are protected.