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Sludge dewatering decanter factory in China: The activated sludge flocs are slightly refined, with abnormal color, poor settling performance, turbid supernatant, and many small feathery sludge fragments; 2. Microscopic examination can reveal protozoa, but their numbers have sharply decreased. During the microscopic examination process, protozoa were found, but most of them have died or lost their activity; Under the microscope, the volume of sludge flocs is smaller and scattered than usual; 3. The sludge in the sedimentation tank floats in a cloud like manner, resulting in severe mud leakage from the effluent; 4. The final effluent quality is turbid, and the COD detection index is far higher than the normal fluctuation range; First, let’s understand the process of sewage treatment. Kitchen and restaurant sewage first enters the oil separator to remove large particles and floating oil before entering the regulating tank. Automatic grid: Set up a grid to remove large particulate matter and impurities in sewage, ensuring the continuous operation of subsequent treatment devices. The grid residue is regularly manually treated. After removing the floating debris, the sewage enters the regulating tank. A submersible sewage pump is installed in the regulating tank to lift the sewage, and a mixing system is set up in the regulating tank for stirring to prevent sediment. Read additional information at decanter centrifuge manufacturer.
The three-phase decanter centrifuge is one common piece of machinery for separating solids, heavy, and light liquids based on specific gravity differences. 3 Phase Decanter Shenzhou Machinery Separation is one manufacturer offering a three-phase decanter centrifuge based on over a decade of practical experience. This machine is used in many modern industries, including oily sludge, slaughterhouse wastewater, kitchen waste, oil clarification, fish products, wheat starch production, etc. The 3 Phase decanter centrifuge has seven main mechanisms that work together as follows: the feeding component, the underframe component, the bowl component, the screw component, the differential gearbox, the drive component, and the collection box component. The feeding component receives the materials to be separated from the conveying system.
The most important factor to keep in mind when manufacturing decanter centrifuge components or designing a completely new decanter assembly using a cone centrifuge parts casting machine is that the decanter bowl and tube wall thickness must be thin enough to meet design specifications while still providing each Structural integrity required for components. Stainless steel cylinders and conical bowls for decanter centrifuges are manufactured from the centrifugal casting process. Decanter Bowls, Bowl Cones, and Bowl Cylinders are typically made in various dimensions through centrifugal casting and additional machining. These can be purchased as a single part or already assembled/welded with a stainless-steel cylinder.
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 additional details at https://www.lnszjx.com/.
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Rotary drum diameter. The diameter of the Decanter centrifuge is 180-920mm, which means that the theoretical volume separation range is 1:130 when the diameter to length ratio is the same. The diameter of a Decanter centrifuge cannot increase indefinitely, because as the diameter increases, the allowable speed will decrease due to the decrease in material strength, resulting in a corresponding decrease in centrifugal force. From an economic perspective, it is not possible to increase the flow rate of a Decanter centrifuge by increasing its diameter. The ratio of drum diameter to length. In the past, the aspect ratio remained at 1:2, but now it can reach 1:3 or 1:4 (or even higher). The diameter to length ratio has an impact on the residence time of materials in the clarification zone, as it determines the volumetric flow rate of the centrifuge. The diameter to length ratio does not have a significant impact on the solid flow rate, but it has an impact on the moisture content of the mud cake.