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GFX 105 N Blood tubular centrifuge separator

The GFX Series centrifuge is an essential tool for separating complex liquids, making it well-suited for liquid-liquid and liquid-liquid-solid separation. It is utilized in a variety of industries including pharmaceuticals, health food, beverage, and chemicals. Examples of its applications include separating transformer oil, edible oil, turbine oil, lubricating oil, vegetable oil, coconut oil, fuel, grease, saponification, powders, sugar paste, blood plasma, and other medicinal extracts. It can also be used for extracting blood plasma from animal blood, purifying various substances such as ejiao, and handling sewage and different types of medications.

Category:

Algae Seaweed Harvest Tubular Centrifuge

GF-for separation: The exterior ring is composed of dense liquid, while the interior ring is made up of lighter liquid. Both liquids rise to the top of the bowl and are then discharged through their designated outlets. Any solid particles are collected on the bowl’s wall and can be manually removed after the machine has finished operating.

GQ-for clarification: The centrifuge’s bowl deposits heavy solids onto its inner wall, which then forms sludge. When the machine stops, manual discharge is necessary. The clear liquid is separated and flows out of the top outlet. This centrifuge is perfect for separating difficult suspensions, especially those with low concentrations, high viscosity, fine particles, and minimal gravity differences between phases. The motor connects to the spindle through a big pulley, belt, and small pulley, allowing the bowl to rotate at high speeds clockwise. It is commonly used in bio-pharmacy, beverage, and chemical industries for liquid-solid and liquid-liquid-solid separation, making it an excellent centrifuge for materials with little gravity difference and small diameters.

Main technical features

1. With its high separation factor and strong separation ability, this product is perfect for separating and clarifying difficult-to-separate materials, including emulsion liquids like transformer oil, lubricating oil, fuel oil, turbine oil, grease, dyes, and saponification separation. It is particularly useful for those in the industry.

2. Our product boasts a distinctive interior blade design that is highly effective in isolating fermentation bacteria compared to traditional tubular separators. Thanks to the inclusion of a reverse stop device, no residual mother liquid is lost when the machine is stopped.

3. Simple structure in linear type ,easy in installation and maintation.

4. Running in a high automatization and intellectualization,no pollution

5. Adopting advanced world famous brand components in bearing parts, electric parts and operation parts.

6. Simple to set up, use and clean for minimal down-time between separations

7. 3-phase electric motors provide power for rapid acceleration and quieter operation.

8. No replacement membranes or costly disposables

9. Small footprint.

Application

The Tubular Separator is a highly efficient tool for separating difficult-to-separate suspensions, especially those with a light concentration, heavy viscosity, fine particles, and minimal gravity difference between the two phases. It is particularly ideal for clarifying herbal and plant extracts, various medicinal liquids, oral liquids, paint extracts, dyes, proteins, algae, fruit gels, and for purifying rubber solutions, coal tar, graphite, saponin, pectin, syrup, vaccine mycelia, and glucose in various industries. It can also be used for refining resins, latex solutions, and enzymes (SOD) in oxide form, as well as different types of albumin and soap glucosides.

Working principle of Tubular Separator

This sedimentation separator consists of a machine cover, driving device, drum, liquid catch tray, liquid inlet, and bearing seat. With a high running speed, this separator utilizes a flexible upper drum and damping floating bearing on the lower drum, connected by a coupling buffer and passive wheel. The motor transmits power from the transmission belt and tension wheel to the passive wheel, causing the drum to rotate at high-speed and generate a strong centrifugal force field. Materials are fed through the liquid inlet at the bottom and flow upward along the drum wall due to the centrifugal force of the fluid. The dense liquid phase forms the outer ring, while the smaller liquid phase forms the inner ring and both flow to their respective liquid outlets located on the upper drum. When the sediment thickness begins to affect the liquid phase clarification or reaches the capacity of the rated slag weight in the drum, the dregs on the drum wall must be manually removed after the separator is shut down.

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