Knowledge of pump

Fluoroplastic pumps are widely used in chemical production

First. the main characteristics of fluoroplastic pumps

The reason why fluoroplastic pumps are widely used in chemical production is mainly due to its following characteristics:

Excellent corrosion resistance: Fluoroplastic materials have strong chemical stability and can resist the corrosion of various acids, alkalis, salts and organic solvents.

Superior high-temperature performance: Fluoroplastics can maintain stable physical and chemical properties in high-temperature environments, and are suitable for conveying high-temperature media.

Good abrasion resistance: Fluoroplastics have good abrasion resistance and can maintain stable performance in long-term use.

Leak-free design: Many fluoroplastic pumps have a sealless design, which avoids leakage problems and ensures safety.



Second. the application of fluoroplastic pumps in chemical production

1. Acid and alkali liquid transportation

In chemical production, the transportation of acid and alkali liquids is a common process link. Due to the strong corrosiveness of acid and alkali liquids, it is difficult for ordinary pumps to do the job. The excellent corrosion resistance of fluoroplastic pumps makes them ideal for conveying highly corrosive media such as sulfuric acid, nitric acid, hydrochloric acid, and sodium hydroxide.


2. Organic solvent delivery

Chemical production often requires the transportation of various organic solvents, such as methanol, ethanol, acetone, benzene, etc. These solvents have high corrosion requirements for the pump material, and the fluoroplastic pump can effectively resist the corrosion of organic solvents to ensure the safety and stability of the conveying process.


3. High temperature medium transportation

Many chemical production processes need to be carried out under high temperature conditions, and fluoroplastic pumps can maintain good performance in high temperature environments, and are suitable for conveying high temperature media, such as high temperature concentrated sulfuric acid, high temperature hydrochloric acid, etc.


4. Wastewater treatment

In the process of chemical wastewater treatment, wastewater often contains corrosive media such as strong acids, strong alkalis, and organic solvents. The corrosion resistance of fluoroplastic pumps makes them widely used in wastewater treatment processes, effectively ensuring the safe and stable operation of wastewater treatment systems.


5. Corrosive gas absorption

In chemical production, the absorption and treatment of corrosive gases is an important link. Fluoroplastic pumps can be used to convey absorbent liquids to ensure a safe and efficient absorption process.


Third. Precautions for choosing fluoroplastic pumps

When choosing a fluoroplastic pump, the following factors should be considered:

Medium characteristics: select the appropriate pump type and material according to the corrosiveness, temperature, viscosity and other characteristics of the conveying medium.

Flow and head: Determine the flow rate and head of the pump according to the process requirements to ensure that the performance of the pump meets the production needs.

Operating environment: Consider the installation location of the pump, the operating environment and other factors, and select the appropriate pump structure and accessories.

Maintenance & Service: Choose a pump model that is easy to maintain and service, reducing downtime and maintenance costs.

fluoroplastic pumps are widely used in chemical production due to their excellent corrosion resistance, high-temperature performance and reliability. Whether it's acid and alkali liquid transfer, organic solvent transfer, high-temperature media transfer, wastewater treatment and corrosive gas absorption, fluoroplastic pumps provide reliable solutions. When choosing a fluoroplastic pump, users should choose the appropriate pump type and material according to the specific working conditions and media characteristics to ensure the safety and efficiency of the production process.

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