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Defoamer-for-Power-Plants

Detailed Description

In the operation of power plants, the appearance of foam is a problem that needs attention. This may be due to factors such as the water treatment process, the use of chemical additives, the high temperature and high pressure environment, and the operation of the equipment. Bubbles may have the following adverse effects:

Impact on equipment efficiency: For example, in cooling towers, foam may reduce heat exchange efficiency and increase energy consumption.

Interference monitoring and control: Foam may affect the accurate measurement of parameters such as level and pressure, thus interfering with the automatic control of the system.

Increase maintenance costs: Too much foam may cause problems such as corrosion and scaling of the equipment, increasing the cost of repairing and replacing the equipment.

The Defoamer used in power plants can effectively solve the problems caused by these foams. It usually has the following characteristics:

High temperature and high pressure resistance: able to maintain a stable defoaming effect under extreme working conditions in power plants.

Strong chemical stability: good compatibility with various chemical agents and water media used in power plants.

Fast defoaming and lasting foam suppression: It can quickly eliminate the foam that has been generated and prevent the foam from being generated again for a long time.

For example, in the boiler water system of a power plant, the use of defoamer can ensure the normal separation of soda water and improve the steam quality.

In the wastewater treatment process of power plant, defoamer can improve the treatment efficiency and ensure the discharge standard.

In short, defoamer for power plants is of great significance to ensure the safe and stable operation of power plants, improve energy efficiency and reduce operating costs.


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