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What is the outlet pressure of the liquid chlorine pump? Why?
The outlet pressure of the liquid chlorine pump depends on its design and operating conditions. Generally, under normal operating conditions, the outlet pressure of a liquid chlorine pump should be sufficient to meet the requirements of the system; the typical outlet pressure for such pumps ranges from 5 to 20 bars. Higher pressure may lead to unstable operation of the pump or cause damage to other devices in the system. The outlet pressure of a liquid chlorine pump is primarily influenced by the following factors: 1. Pump design: Different types and models of liquid chlorine pumps have distinct design features and performance parameters, including the pump’s head, speed, power, etc., all of which directly affect the pump’s outlet pressure. 2. Inlet pressure: The outlet pressure of the liquid chlorine pump is affected by the inlet pressure. If the inlet pressure is low, the pump needs to provide a greater head to achieve the desired outlet pressure. 3. System requirements: Depending on the specific application scenarios and process requirements for liquid chlorine, certain requirements are placed on the outlet pressure of the liquid chlorine pump. The outlet pressure of the liquid chlorine pump was determined based on the system’s design parameters and requirements. It should be noted that liquid chlorine is a hazardous substance, and the selection and use of liquid chlorine pumps must be carried out in strict accordance with relevant safety regulations. At the same time, the maintenance of liquid chlorine pumps is also very important to ensure their proper operation and safe functioning. .
This post was last edited by swl on 2023-9-15 at 11:20. According to clause 4.5.7 of the \"General Technical Requirements for Safety Facilities in Chlor-alkali Production for Chlorine Generation\": \"The maximum pressure in the filling system shall be less than or equal to 1.1 MPa, and the flow velocity inside the pipes shall be controlled at less than or equal to 2 m/s, in order to prevent damage to the protective layer of the pipes.\" ”