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What industry is the decanter centrifuge used for? Decanter centrifuge working principleļ¼šCentrifuges are useful in most industries where solids, liquids, and gases are mixed into a single substance, but separating the components is necessary. For example, decanters (also known as solid bowl centrifuges) continuously separate solids from liquids in slurries and therefore play an essential role in wastewater treatment, chemical, petroleum, and food processing industries. The basic principle of a decanter centrifuge relies on buoyant separation. The denser ingredients will fall to the bottom of the mixture while the less dense ones are suspended above. Due to a large centrifugal force, decanters rotate to separate the substances inside quickly. Before decanters were used, components took hours to settle, but a decanter centrifuge can take only a few seconds.

The variable pump impeller technology can adjust the thickness of the liquid layer inside the machine while it is running, so that the Decanter centrifuge can be quickly adjusted without stopping to achieve separation effect. New independent drive system. The structural feature of the new independent drive system is that the drive of the rotary cylinder and the screw are respectively driven by two vertical variable frequency motors. A new type of gearbox is used to connect the drum and the screw. In addition to withstanding high torque, this gearbox can also independently rotate the screw without the drum rotating. Through the above discussion and analysis, it is not difficult to see that the influence of structural design on the processing capacity of decanter centrifuge is mainly reflected in the selection and design of mechanical parameters and corresponding auxiliary equipment. If each problem is considered comprehensively and concretely, it can also be considered comprehensively and concretely. The decanter centrifuge can better serve the solid-liquid separation field of various industries in our country.

Workings Of 2 phase Decanter – A sample is fed into the 2 phase decanter centrifuge using a conveyor and an intake pipe. The sample is transferred to the bowl using a nozzle after being fed through an internal feed compartment using the conveyor. The next step is to generate centrifugal forces by spinning the bowl rapidly. Using high-speed rotation, the solid substance is separated from the liquid in a few seconds. Remember that the solid material is conveyed up the conveyor and discharged through a nozzle. After the solids are extracted, a separate output from the 2 phase decanter centrifuge releases the liquid that has been purified. Benefits and Features: Very little time spent processing; Diluted water is almost nonexistent; Consumption of less energy; Absence of sludge tanks and vertical clarifier; Reduced in size ponds – significantly decreased emissions of methane.

Deciding on a decanter centrifuge for laboratory use, particularly among 2-phase and 3-phase centrifuges, calls for a deep understanding of the lab’s desires. This relies on the knowledge to be processed, desired efficiency, area constraints, and budget. 2-phase decanter centrifuges are versatile because they separate solids from liquids without problems. But, 3-phase models, which separate immiscible beverages and solids, are exceptional for complex separations. This guide provided the necessary information regarding decanter centrifuges and their basic features, workings, and evidence comparison. Two immiscible liquids or a liquid and solid can be separated using the two-phase centrifuge. The separation happens automatically and in real-time, without human intervention. Environmental protection, sewage treatment, the chemical industry, food processing, fermentation, medicine, and mining metal and non-metal minerals are just a few of the many applications for two-phase centrifuges. Read more information on https://www.lnszjx.com/.

Rotating cone angle: the cone angle has a significant impact on the performance of solid flow rate. Due to the effect of centrifugal force, when particles reach the inner wall of the rotary drum and are transported forward by the spiral, they also have a tendency to flow backward. The speed of backward flow is related to the spiral angle, and finally reflected in the cone angle. Both have a direct impact on the conveying performance of solid particles, that is, as the reflux speed increases, the solid conveying speed decreases. The robustness of materials is reflected in the speed of the centrifuge, which directly affects the volumetric flow rate and mass flow rate. In addition, the corrosion of the centrifuge is also related to its material structure.

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