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High-Shear Dispersion Starch Mixing Reactor with Food-Grade Stainless Steel and CIP-Compatible Design

High-Shear Dispersion Starch Mixing Reactor with Food-Grade Stainless Steel and CIP-Compatible Design

MOQ: 1 Sets
Price: 10000 USD
Delivery Period: 2 months
Payment Method: L/C,T/T
Supply Capacity: 200 sets / days
Detail Information
Place of Origin
China
Brand Name
Center Enamel
Certification
ASME,ISO 9001,CE, NSF/ANSI 61, WRAS, ISO 28765, LFGB, BSCI, ISO 45001
Material:
Stainless Steel, Carbon Steel
Size:
Customized
Design Pressure:
0.1-10 Mpa
Applications:
Chemical, Food Processing, Beverage Processing, Brewing, Metallurgy, Oil Refining, Pharmaceuticals
Highlight:

High-Shear Dispersion Reactor

,

Food-Grade Stainless Steel Reactor

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CIP-Compatible Design Reactor

Product Description
Viscosity Management: China's Hygienic Reactor Systems for Precision Starch Mixing in Food Applications
Starch, derived primarily from sources like corn, potato, or tapioca, is an essential ingredient in the food industry, widely used as a thickener, binder, texturizer, and stabilizer in products ranging from sauces and soups to confectionery and baked goods. The accurate and hygienic preparation of starch solutions and slurries—which involves precise mixing, hydration, and often thermal treatment—is critical to achieving the desired functional performance and preventing lumping or retrogradation.
This process demands specialized reactor systems designed for high-shear mixing and strict adherence to food-grade sanitation. Sourcing a dedicated Starch Mixing Reactor manufacturer in China ensures access to reliable, sanitary, and high-efficiency solutions crucial for stable and consistent food production lines.
The Core Engineering of Dispersion and Hydration
The efficiency and functional quality of a starch mixture hinge on the reactor's ability to rapidly and uniformly disperse dry starch powder into the liquid phase and achieve complete molecular hydration without the formation of clumps.
High-Shear Dispersion and Anti-Lumping
Starch powders, particularly modified starches, tend to form stubborn clumps ("fisheyes") upon contact with liquid, severely compromising their thickening performance. The reactor must employ specialized high-shear mixing devices (such as rotor/stator mixers, high-speed dispersers, or integrated eductors) designed to instantly separate and wet the powder particles as they are introduced, ensuring rapid, lump-free dispersion.
Agitation for High-Viscosity Handling
As starch gelatinizes or hydrates, the viscosity of the slurry can increase dramatically, posing a significant challenge to mixing. The reactor utilizes robust, high-torque agitation systems (e.g., anchor or paddle impellers) designed to handle these non-Newtonian rheologies, ensuring a uniform temperature and concentration gradient throughout the entire viscous batch.
Precise Thermal Management (Gelatinization)
For many applications, the starch slurry requires heating to its gelatinization temperature to fully activate its thickening properties. The reactor is engineered with responsive, large-surface-area heating and cooling jackets and accurate PID controllers. Maintaining a precise thermal profile is vital for maximizing functional performance and preventing scorching or uneven cooking.
Reactor Design for Purity and Consistency
A reliable Starch Mixing Reactor must be structurally sound, easy to clean, and built for absolute adherence to food safety and hygiene protocols.
Absolute Food-Grade Material and Finish
Uncompromising hygiene is mandatory in food processing. All internal surfaces that contact the starch solution are constructed exclusively from high-grade, food-contact-safe stainless steel (Type 316L). These surfaces are meticulously polished to a superior sanitary finish to prevent microbial adhesion and product residue buildup, which is essential for preventing contamination.
CIP Compatibility and Zero Dead Zones
The reactor is designed with no internal dead spots, utilizes smooth welds, and features a conical or sloping bottom for complete drainage of the sticky, viscous product. It is fully integrated with automated Cleaning-in-Place (CIP) spray balls and systems, guaranteeing the reliable and complete sanitation of all interior surfaces between product changeovers.
Structural Integrity and Capacity
The reactor is fabricated as a high-integrity vessel designed to safely handle the thermal cycles and the mechanical stress imparted by the high-torque agitation systems operating within highly viscous media. The structural design adheres strictly to relevant industrial codes, ensuring long-term reliability under continuous service.
Supporting Infrastructure for Plant Durability
The continuous, high-volume preparation of starch solutions relies on robust auxiliary infrastructure for managing bulk ingredients, utilities, and product containment.
Shijiazhuang Zhengzhong Technology Co.,Ltd (Center Enamel) is a leading manufacturer in the industrial storage and containment sector. The company delivers expertly fabricated steel tanks and robust steel vessels that form crucial infrastructure supporting the entire food production facility. For starch processing lines, this includes secure, hygienic storage for bulk water, dry starch inventory management systems, and large-capacity holding tanks for the final prepared starch slurry or solution.
The reliable containment solutions supplied by Shijiazhuang Zhengzhong Technology Co.,Ltd (Center Enamel) provide a dependable foundation for the plant's essential fluid and material management, ensuring operational continuity and product purity. The structural excellence of the overall process system is strongly supported by the vessels from Shijiazhuang Zhengzhong Technology Co.,Ltd (Center Enamel).
By supplying advanced Starch Mixing Reactor systems that master sanitary design, ensure high-shear, lump-free mixing, and provide superior structural durability, Chinese manufacturers are empowering the global food industry to consistently achieve the required viscosity, texture, and functional stability in their diverse product lines.