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Selection and application of screw pumps in wastewater treatment. Due to their capabilities in variable flow rate delivery, strong self-priming ability, reversibility, and the ability to transport liquids containing solid particles, screw pumps are widely used in wastewater treatment plants for transporting water, wet sludge, and flocculant solutions. The selection of screw pumps should follow the principles of economy, rationality, and reliability. If inadequate consideration is given to the design and selection process, it will cause difficulties in subsequent use, management, and maintenance. Therefore, choosing a screw pump that meets the actual production needs in a reasonable manner not only ensures smooth production but also reduces repair costs. I. Selection of the rotational speed for screw pumps: The flow rate of a screw pump is directly proportional to its rotational speed. Compared to screw pumps operating at lower speeds, those operating at higher speeds can indeed increase both the flow rate and the head pressure, but the power consumption increases significantly. Higher speeds accelerate wear between the rotor and the stator, which inevitably leads to premature failure of the screw pump. Additionally, the rotor and stator in screw pumps operating at high speeds are relatively short in length, making them prone to wear and thus reducing the service life of the screw pump. The rotational speed is reduced through a reduction mechanism or a variable-speed mechanism, keeping it within a reasonable range of below 300 revolutions per minute; compared to high-speed screw pumps, this allows the service life to be extended several times over. II. The quality of screw pumps?? There are many types of screw pumps available on the market today. Relatively speaking, imported screw pumps feature sound design and high-quality materials, but they are more expensive. Their after-sales service may not be satisfactory, the prices of spare parts are high, and the lead time for ordering is long, which can affect the smooth operation of production processes. Most products manufactured domestically are imitations of imported ones, and their quality varies greatly. When choosing domestically produced products, it is necessary to consider cost-effectiveness by opting for those with a low rotation speed, a long lead, high-quality materials for the transmission components, and a long service life. III. Prevent debris from entering the pump chamber. Solid debris mixed in with the wet sludge can damage the rubber-styled stator of the screw pump; therefore, it is important to ensure that no debris enters the pump’s chamber. Many sewage treatment plants install crushers before the pumps, or they use grid systems or filters to prevent debris from reaching the screw pump. The grids should be cleaned regularly to avoid blockages. IV. Avoiding material interruption – A screw pump must never operate when there is a interruption in the supply of material. In such cases, the rubber stator generates high temperatures due to dry friction, which can lead to its destruction. Therefore, it is essential for the screw pump to function properly that the crusher is in good condition and the grating is unobstructed. To this end, some screw pumps are equipped with a shutdown mechanism that activates when there is a interruption in the material supply. Thanks to the self-priming capability of the screw pump, a vacuum is created within the chamber, and this vacuum mechanism causes the pump to stop operating. V. Maintain a constant outlet pressure: A screw pump is a positive-displacement rotary pump; when there is obstruction at the outlet, the pressure gradually increases until it exceeds the predetermined value. At this point, the motor load increases sharply. The load on the components related to the transmission machinery can also exceed the design values; in severe cases, this can lead to motor burnout or breakage of the transmission components. To prevent damage to the screw pump, a bypass relief valve is generally installed at its outlet to stabilize the outlet pressure and ensure the proper operation of the pump.
Screw pumps are highly suitable for use in many industries due to their low shear force, stable pressure, and ability to transport granular or highly viscous materials. In wastewater treatment plants, screw pumps were the preferred choice for a long time; however, many environmental protection companies now use pneumatic diaphragm pumps, as these pumps have the following advantages over screw pumps: 1. They feature entirely static seals, with no mechanical seals. 2. They can operate without fluid, and there is no problem if they run idle after wastewater treatment is completed (although running idle for 4–5 hours is not ideal). Screw pumps, on the other hand, must not run idle at all, as their rubber stators are quite fragile. 3. In wastewater treatment plants, plate and frame filter presses are often used, and when pressing the sludge, significant resistance is generated, which raises the temperature inside the press and leads to failures in the mechanical seals and other components. With pneumatic diaphragm pumps, if the outlet gets blocked, a pressure relief valve can release air, preventing any damage to the internal components. This is probably one of the reasons why pneumatic diaphragm pumps are widely used in the wastewater industry today. Please forgive any inaccuracies in the analysis