China Jiangsu Zongheng Starch Washing Cyclone - Quality Starch Refining Equipment from Reliable Suppliers and Factory

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Introducing the YDX Starch Washing Cyclone from Jiangsu Zong, a leading factory and supplier in China specializing in advanced starch processing equipment. This innovative machine is designed for the efficient refining and washing of starch slurries, effectively separating and removing impurities such as soluble and insoluble proteins, thin fibers, and sugars. By enhancing the purity and quality of starch, our product supports various industrial applications, making it an essential solution for businesses looking for premium starch products. Trust Jiangsu Zong, your reliable partner in the starch processing industry.

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Product Description

Description
High Separation Efficiency Separates granules as fine as 4 microns under a specific pressure differential using centrifugal force.
Reliable & Easy Maintenance Simple structure and reliable operation with convenient maintenance compared to a disc separator.
Energy-Efficient Design Low energy consumption with continuous processing of high-concentration starch slurries.
Modular & Scalable Flexible configuration adapts to various production scales with low water consumption.

A starch washing cyclone offers high separation efficiency, automation, and superior product quality, while also featuring a simple structure, reliable operation, and convenient maintenance compared to a disc separator. It can separate granules as fine as 4 microns under a specific pressure differential. The separation is achieved through centrifugal force: material enters the columnar cylinder tangentially under pressure, creating a rapid rotation. This generates strong centrifugal action, causing heavier granules in the slurry to move toward the wall and spiral downward as a concentrated underflow. Lighter granules migrate upward near the central axis, forming a less concentrated overflow.

Starch washing cyclones are poised to play an increasingly vital role in modern starch processing. Their energy-efficient design and consistent performance make them a sustainable choice for large-scale production. Future developments may focus on smart monitoring systems to further enhance automation and real-time adjustment of operational parameters. By integrating advanced materials and optimized flow dynamics, these systems will continue to improve separation precision and reduce maintenance downtime. As the industry moves toward greater efficiency and sustainability, the starch washing cyclone stands as a reliable and adaptable solution, capable of meeting evolving demands for purity, yield, and operational economy in starch refining worldwide.

Starch washing cyclones deliver stable separation performance, enabling continuous processing of high-concentration starch slurries while ensuring high starch recovery and purity with minimal energy consumption. The modular design allows flexible adaptation to various production scales, and the intuitive interface reduces manual intervention. As starch processing moves toward refinement and sustainability, the system's flexible configuration and low water consumption enhance its environmental benefits. Through intelligent parameter linkage and data tracking, it not only boosts the market competitiveness of starch products but also provides critical support for industry-wide technological advancement, achieving a dual optimization of economic and environmental benefits.

More Details
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Primary Type and Technical Parameter
Type YDX-275-I YDX-350-I YDX-350-II YDX-405-I YDX-405-II YDX-500-I YDX-600-I
Capacity, t/year 8000-15000 20000-30000 60000 50000 100000 80000 120000
Cyclone Pipe Type 10 10 10 10 10 10 10
Work Pressure >0.6 >0.6 >0.6 >0.6 >0.6 >0.6 >0.6
Work Flux 15-30 30-40 55-65 45-55 100-110 60-80 100-120
Stage 9-12 9-12 12-15 12-15 12-15 12-15 12-15
Power, Kw/each stage 11 15-22 37 30 55 37-45 55
Dimension
Type YDX-275-I YDX-350-I YDX-350-II YDX-405-I YDX-405-II YDX-500-I YDX-600-I
Length 600 × n + 100 700 × n + 100 700 × n + 100 800 × n + 100 800 × n + 100 900 × n + 120 1000 × n + 150
Height 1550 1700 1700 1900 1900 2050 2200
Width 1900 2050 2050 2100 2100 2300 2600
Frequently Asked Questions
Q What is the minimum particle size a starch washing cyclone can separate?
A starch washing cyclone can separate granules as fine as 4 microns under a specific pressure differential, making it highly effective for fine starch slurry processing.
Q How does the separation process work in a starch washing cyclone?
The separation is achieved through centrifugal force. Material enters the columnar cylinder tangentially under pressure, creating rapid rotation. Heavier granules move toward the wall and spiral downward as a concentrated underflow, while lighter granules migrate upward near the central axis as a less concentrated overflow.
Q What are the main advantages of a starch washing cyclone over a disc separator?
Compared to a disc separator, the starch washing cyclone offers a simpler structure, more reliable operation, and more convenient maintenance. It also provides high separation efficiency, superior product quality, and supports automation for continuous production.
Q What production capacity range do the available cyclone models cover?
The available models range from the YDX-275-I with a capacity of 8,000–15,000 t/year up to the YDX-600-I with a capacity of 120,000 t/year, providing flexible options for small, medium, and large-scale starch processing plants.
Q What is the required working pressure for the starch washing cyclone?
All models of the starch washing cyclone require a working pressure greater than 0.6 MPa to ensure optimal centrifugal separation performance and consistent starch recovery rates.
Q Is the starch washing cyclone suitable for environmentally sustainable production?
Yes. The starch washing cyclone features low water consumption, energy-efficient operation, and a modular design that supports sustainable large-scale production. Its intelligent parameter linkage and data tracking further enhance environmental benefits by minimizing waste and optimizing resource use.

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