Separation Equipment
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This high-speed tubular centrifuge efficiently separates immiscible liquids with different densities. Constructed with stainless steel, it is designed for continuous operation and easy maintenance, making it suitable for clarifying liquids and separating solids from liquids.

This separating equipment uses centrifugal force to separate liquids of different densities, forming outer and inner rings that are discharged through respective outlets. Micro solids accumulate on the bowl wall and are manually removed after shutdown.

This high-speed tubular separator centrifuge is designed for separation, clarification, and liquid-liquid extraction in various industrial applications. It is suitable for processing liquids with low solid content and immiscible liquids with slight density differences.

This high-speed centrifuge features a vertical tubular bowl design, generating centrifugal force up to 20000 times the force of gravity. It facilitates the continuous separation of two immiscible liquids with different specific gravities or clarifies liquids containing fine insoluble solids.

The high-speed tube centrifuge is suitable for solid-liquid separation with low concentration, small particles, high viscosity and small difference of specific gravity of two medium. It is mainly used for separation of suspension with small solids which is hard to separate.

This stainless steel wedge wire screen pipe is designed for efficient separation. Its wedge wire construction provides exceptional strength and precise slot openings.

Bag filter housings are designed for efficient removal of gross particulates from liquids. This multi-bag configuration increases filtration capacity and reduces maintenance downtime.

This LPG separator is equipped with a check valve, filter, and bypass pipe. It is designed for filtering and separating liquid petroleum gas in industrial applications.

This air separation plant (ASP) efficiently separates air into oxygen, nitrogen, and argon. Available in medium and large scales, it features low consumption, easy operation, and first-class argon recovery.

This industrial centrifuge is designed for separating liquids from solids or for drying materials. It features a stainless steel drum and a robust base, suitable for various industrial applications requiring effective separation or drying processes.

This pharmaceutical evaporator system efficiently concentrates liquids in pharmaceutical and chemical processes. Its stainless steel construction ensures hygiene and corrosion resistance, making it suitable for heat-sensitive materials.

This stainless steel distillation apparatus separates liquid components using selective boiling and condensation. It is designed for precise separation and purification in industries like chemical processing, pharmaceuticals, and food and beverage.

This single-effect external circulation evaporator is designed for concentrating liquids. It is constructed from stainless steel and used in pharmaceutical, food, and chemical industries.

Industrial equipment designed for efficient separation and collection of particulate matter from gas streams. It is constructed from heavy-duty materials and suitable for mining, cement, and chemical applications.

This industrial machine is designed for precise particle size separation and classification of dry powders. Constructed from stainless steel, it uses centrifugal force and air flow to ensure efficient material handling.

This industrial separator employs German Humboldt technology for material separation. It features a robust steel frame, top-mounted motor and gearbox, and multiple access ports for monitoring.

This high-intensity magnetic separator grate efficiently removes ferrous contaminants from free-flowing materials. It features durable stainless steel housing and powerful rare earth magnets for optimal separation in various industrial applications.

The Flux Regeneration System is designed for regenerating flux in various industrial applications. This system enhances operational efficiency by recycling and purifying flux, reducing waste, and lowering material costs.