Sécheurs de boues médiatiques
Are you efficiently converting high-moisture slurries into consistent, dry products?

Sécheurs de boues médiatiques
Our media slurry dryer is a cost-effective drying method for producing super fine powders from liquid phase reaction or wet grinding operations. With a compact design and efficient operations, our slurry dryer systems allow high-viscosity materials to be pumped directly into the dryer without mixing or atomization.
The media slurry dryer system consists of an air filter, heater, fluidizing tower, cyclone to collect dried product continuously, bag filter, blower, pump to supply slurry, and a tank for slurry material.
Features & Benefits

Equipment Options & Accessories
A support system can be installed on the side of the fluidizing tower to aid in circulation and prevent product agglomeration in highly viscous slurries containing sugars, salts or binder.
Efficiently separate solids from liquid streams, ensuring consistent flow.
Provide uniform distribution of slurry for consistent processing and drying.
Durable heat exchanger tubes deliver uniform, efficient heat transfer for drying abrasive, high-solids slurries.
Evenly distributes air to create uniform material fluidization and consistent drying.
Provide safe, convenient entry points for inspection, cleaning, and maintenance.
Applications
Abrasive materials consist of hard, wear-resistant particles used in grinding, polishing, blasting, and surface finishing applications. Controlled moisture removal is essential to maintain particle consistency, performance, and downstream process efficiency.
Alumina is widely used in ceramics, refractories, abrasives, and advanced materials manufacturing. Precise moisture control helps preserve particle size, purity, and flow characteristics for reliable downstream processing.
Aluminum hydroxide is used in applications such as flame retardants, fillers, ceramics, and chemical processing. Careful moisture control is important to maintain product purity, particle structure, and consistent performance in downstream applications.
Barium sulfate is used as a filler and pigment in coatings, plastics, rubber, and specialty chemical applications. Controlled moisture management helps maintain particle uniformity, brightness, and consistent performance in downstream processing.
Bentonite is a naturally occurring clay used in foundry molding, iron ore pelletizing, drilling fluids, and absorbent applications. Proper moisture control is critical to preserve its binding properties, swelling behavior, and consistent performance in downstream processes.
Calcium-based materials are widely used in construction materials, chemicals, plastics, paper, and environmental applications. Consistent moisture control supports stable handling, uniform quality, and reliable performance in downstream processing.
Calcium phosphate is used in fertilizers, animal feed, food additives, and chemical applications. Controlling moisture ensures consistent particle quality, flowability, and performance in downstream processes.
Carbonates are used in plastics, paper, paints, and chemical applications. Precise moisture control maintains particle consistency, purity, and reliable performance in downstream processes.
Transform liquid carbon black suspensions into dry, ultrafine powders in a single, continuous process step.
Chrome oxide is used in pigments, ceramics, refractories, and coatings. Controlled moisture ensures consistent particle quality, color stability, and reliable performance in downstream applications.
Dry moisture from liquid pigment and dye suspensions into dry, ultra-fine powders to ensure the final product remains highly dispersible.
Ferrite is used in magnetic materials, electronics, and ceramic applications. Consistent moisture control preserves particle integrity, magnetic properties, and reliable performance in downstream processes.
Kaolin is used in paper, ceramics, paints, rubber, and plastics. Controlled moisture maintains particle consistency, brightness, and reliable performance in downstream applications.
Metal powders are used in additive manufacturing, powder metallurgy, coatings, and sintering applications. Proper moisture control is essential to maintain flowability, prevent oxidation or agglomeration, and ensure consistent performance in downstream processing.
Continuously convert liquid PVC emulsion into dry, primary powder in one single step. Evaporate the liquid without sticky PVC particles agglomerating.
Silicone and styrene resins are liquid emulsions that can be processed into fine, dry powders.
Talc is used in plastics, paper, ceramics, paints, and coatings as a filler and performance additive. Controlled moisture helps maintain particle uniformity, flowability, and consistent performance in downstream applications.
Titanium oxide is widely used as a pigment in paints, coatings, plastics, and inks due to its brightness and opacity. Precise moisture control supports consistent particle quality, color performance, and reliable downstream processing.
Media Slurry Dryer FAQs
Media slurry drying removes moisture from slurry mixtures containing solids suspended in liquids, converting them into dry powders or granules. A media slurry dryer is used to remove moisture from liquid-based mixtures containing fine solids, producing a uniform, free-flowing dried product for downstream processing.
Industries such as mining, mineral processing, chemical manufacturing, and wastewater treatment often require slurry drying systems.
Slurries often contain high moisture levels and fine particles that require specialized drying systems to prevent clogging or uneven drying. Carrier media slurry dryers are engineered with robust materials of construction to withstand abrasive products and high solids loadings.
Precise temperature control and uniform drying prevent agglomeration, overheating, and degradation, ensuring consistent particle characteristics.
Slurry materials are typically pumped or metered into the dryer, where heat and airflow remove moisture and separate solids.
Drying slurry materials reduces handling costs, improves product stability, and allows easier transportation and storage. Our system is designed for efficient heat transfer and can be configured with energy recovery options to reduce operating costs.
