GF Tubular Centrifuge For Oil Water Solid
The Allcentrifuges Tubular Centrifuge is a professional-grade separation and clarification machine designed for continuous separation of two immiscible liquids with varying densities. With the ability to effectively remove impurities from liquids, it is also commonly used in cases where only a small amount of impurities need to be separated.
The GF Tubular Centrifuge Separator is designed to effectively separate challenging liquids, making it ideal for both liquid-liquid and liquid-liquid-solid separation processes.
Main Features
This GF/GQ Model Tubular Separator is ideal for separating different types of emulsions. It excels especially in liquid-liquid separation with minimal gravity differences, and liquid-liquid-solid separation with slight amounts of foreign matter. Some examples of liquids it can handle include transformer oil, turbine oil, lubricant, fuel oil, dye, fat, and sapnificatio. It can also purify span-80 liquid, separate various oral and medical liquids, process “920” and plasma and biologic medicine, extract plasma from animals’ blood, refine phosphatide of bean, treat sewage, and separate oil and water.
The GQ separator can effectively separate challenging solid-liquid suspensions with low concentration, high viscosity, small particle size, and minimal differences in gravity. It is ideal for clarifying oral liquids, desludging coal tar and graphite, extracting proteins, seaweed and jelly, refining molasses, separating blood, settling vaccine hyphae, and purifying various dextroses and solvents such as paint, dye, resin, rubber, and vegetable oil.
Working Principle
The separator consists of a main body, driving device, bowl, collecting pan, and liquid-in bearing seats. The upper part of the bowl has a flexible main shaft, while the lower part has a damp floating bearing. The main shaft is connected to a driven wheel via a buffer coupling seat. Power is transmitted from the motor to the drive wheel through a transmission belt and a tensioner, causing the bowl to rotate at a high speed around its own axis. This creates a strong centrifugal force field. The product is sprayed into the liquid inlet at the bottom, and then forced by centrifugal force to flow upwards along the inner wall of the bowl. It is then separated into different layers based on density.
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