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Complete set of Activated carbon quicklime pneumatic conveying system
The gas consumption of positive pressure pneumatic conveying of Activated carbon quicklime is influenced by material properties, conveying distance, conveying height, pipeline layout, gas flow rate, etc.
1, Material properties
The density, particle size, shape, density, and flowability of materials all affect the air consumption of Activated carbon quicklime pneumatic conveying. Generally speaking, the smaller the particle size of the quicklime the better its fluidity, and the larger the volume of air occupied by the same volume, resulting in a corresponding increase in required air consumption. So in practical applications, it is necessary to adjust the conveying parameters and equipment parameters in a timely manner according to the different properties of the materials, in order to achieve the optimal effect.
2, Conveying distance and conveying height
The conveying distance and conveying height are also important factors affecting the air consumption of pneumatic conveying. The farther the conveying distance, the more air consumption is required, because the airflow resistance required during the conveying process will gradually increase with the increase of distance. At the same time, an increase in conveying height will also lead to an increase in air consumption during pneumatic conveying. This is because an increase in conveying height will increase gas flow resistance and increase equipment air consumption.
3, Pipeline layout
Different pipeline layouts can also affect the air consumption of pneumatic conveying. The bending and diameter variation of pipelines can lead to friction, resistance, and energy loss in the airflow, resulting in an increase in air consumption. Therefore, when designing pipeline layout, efforts should be made to minimize bends, throttling devices, etc., in order to reduce aerodynamic resistance and reduce air consumption during pneumatic conveying.
4, Gas flow rate
Gas flow rate is also an important factor affecting the gas consumption of pneumatic conveying. Different materials require different gas flow rates. Generally speaking, if the flow rate is too high, it requires an increase in fan power and energy consumption, while if the flow rate is too low, it cannot meet the transportation needs of the materials. Therefore, reasonable selection and adjustment of gas flow rate can effectively reduce the energy consumption of pneumatic conveying.
In summary, material properties, conveying distance, conveying height, pipeline layout, and gas flow rate are key factors affecting the gas consumption of positive pressure pneumatic conveying of clay. In practical applications, it is necessary to make reasonable choices and adjustments based on factors such as material properties and conveying requirements, in order to minimize energy consumption and improve conveying efficiency.
System characteristics