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Reasons for large pressure fluctuations at the inlet of desu

发布日期:2025-03-11 15:33 浏览次数:

Reasons for large pressure fluctuations at the inlet of desulfurization Roots blower
During the operation of the desulfurization Roots blower, large fluctuations in inlet pressure are a common problem, which not only affects the desulfurization effect but may also lead to equipment damage. This article will analyze in detail the reasons for the large pressure fluctuations at the inlet of the desulfurization Roots blower and provide corresponding solutions.
 
1. Analysis of the reasons for the large pressure fluctuations at the inlet of the desulfurization Roots blower
 
**Reason 1: Unreasonable system design**
 
Unreasonable design of the desulfurization system, such as improper pipeline layout and valve settings, may lead to large fluctuations in inlet pressure.
 
**Reason 2: Improper selection of fan**
 
The air volume and pressure of the fan do not match the system requirements, which may result in large fluctuations in inlet pressure. For example, excessive or insufficient airflow of the fan can affect the pressure stability of the system.
 
**Reason 3: Unstable operating parameters**
 
The unstable operating parameters of the desulfurization system, such as smoke flow rate, temperature, pressure, etc., can cause large fluctuations in the inlet pressure of the fan.
 
**Reason 4: Equipment malfunction**
 
Malfunctions of the fan itself, such as impeller imbalance, bearing wear, etc., may also cause significant fluctuations in inlet pressure.
 
2. Solution for large pressure fluctuations at the inlet of the desulfurization Roots blower
 
**Option 1: Optimize System Design**
 
Optimize the design of the desulfurization system, arrange pipelines and valves reasonably, and ensure the stability of the system operation. For example, adding buffer tanks or stabilizing devices to reduce pressure fluctuations.
 
**Option 2: Re select the fan**
 
If the fan selection is improper, a suitable fan should be re selected. Ensure that the airflow and pressure of the fan match the system requirements to improve the pressure stability of the system.
 
**Option 3: Stable operation parameters**
 
By adjusting the operating parameters of the desulfurization system, such as controlling the flue gas flow rate, temperature, and pressure, ensure its stable operation. For example, using an automatic control system to adjust operating parameters in real-time.
 
**Plan 4: Equipment Maintenance**
 
Regularly inspect the fan, check key components such as impellers and bearings, and promptly detect and handle faults. For example, replacing worn bearings and performing impeller balance correction.
 
3. Measures to prevent large pressure fluctuations at the inlet of the desulfurization Roots blower
 
-* * Regular maintenance * *: Regularly maintain the fan and system to promptly identify and address issues.
-Monitoring Operating Parameters: Real time monitoring of the system's operating parameters to ensure its stable operation.
-* * Optimize Design * *: Optimize system design to improve system stability.
-Training operators: Train operators to improve their operational and maintenance skills.
 
Through the above measures, the problem of large pressure fluctuations at the inlet of the desulfurization Roots blower can be effectively reduced, ensuring the stable operation of the system.
 

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