Used Ocrim Classifier for sale (100)
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Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Stone crushing production lineStone crushing screening plant
Call
Condition: new, functionality: fully functional, Year of construction: 2026, A stone crushing plant for sand and aggregate making is a facility where stones and rocks are crushed into smaller pieces or gravel. It typically includes several stages of crushing and screening to produce various sizes and grades of sand and aggregate materials, which are essential in construction, landscaping, and other applications. Here's an introduction to the components and processes involved in a typical stone crushing plant:
### Components of a Stone Crushing Plant
1. Primary Crusher:
- Purpose: The primary crusher, often a jaw crusher or gyratory crusher, initially breaks down large rocks into smaller pieces.
- Function: It handles raw materials from the quarry or mine and prepares them for further processing.
2. Secondary Crusher:
- Purpose: A secondary crusher, such as a cone crusher or impact crusher, further reduces the size of the crushed stones.
- Function: It refines the material after primary crushing, producing smaller and more uniform-sized aggregates.
3. Tertiary Crusher (Optional):
- Purpose: In some configurations, a tertiary crusher like a vertical shaft impactor (VSI) may be used for shaping and fine crushing.
- Function: It produces finely crushed materials for specific applications, such as concrete production or road base.
4. Screening Equipment:
- Purpose: Screening equipment like vibrating screens or trommel screens separates the crushed materials into different sizes.
- Function: It classifies the aggregates into various grades according to size, ensuring uniformity and meeting specifications.
5. Conveyor Systems:
- Purpose: Conveyor belts transport materials between different stages of crushing and screening.
- Function: They ensure efficient material handling and continuous operation within the plant.
6. Washing Equipment (Optional):
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- Purpose: Washing equipment, such as sand washers or scrubbers, may be used to remove impurities from sand and aggregate products.
- Function: It improves the quality of the final products by cleaning them and removing fines or contaminants.
### Processes Involved
- Primary Crushing: Large rocks are fed into the primary crusher and reduced to a manageable size.
- Secondary Crushing: The crushed materials from the primary crusher are further processed by secondary crushers to achieve the desired aggregate sizes.
- Screening: The crushed and sized materials are screened to separate them into different sizes and grades.
- Material Handling: Conveyor systems transport materials between different stages of the crushing and screening process.
Final Product Handling:Finished products, such as sand and various sizes of aggregates, are stored or loaded for transport to customers or construction sites.
Applications
- Construction: Used in the production of concrete, asphalt, and road base materials.
- Landscaping: Provides decorative and functional aggregates for gardens, pathways, and driveways.
infrastructure: Essential for building foundations, drainage systems, and structural fill.
As for the capacity we have 30 t/h, 30-50 t/h, 50-100 t/h, 100-150 t/h, 150-200 t/h, 200-300 t/h, 300-500 t/h, and both stationary crushing plant and mobile crushing plant are available for option.
Listing
Zheng Zhou Shi
3,684 km
Ball mill for powder and mining plant
Mingyuan Ball Mill For Fine PowderPowder grinding mill for coal, silica
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Condition: new, functionality: fully functional, power: 55 kW (74.78 HP), Year of construction: 2026, Ball Mill for Powder and Mining Plant: Structure, Function, and Technical Details
A ball mill is a key grinding machine widely used in mining, metallurgy, cement, chemical, and powder-making industries. It is designed to grind various ores and other materials into fine powder through impact and attrition between steel balls and the material inside a rotating cylindrical shell. In mining plants, ball mills are essential for ore beneficiation, preparing materials for flotation, magnetic separation, or leaching processes. In powder production, they ensure uniform particle size and high surface area for further processing.
Working Principle
The ball mill operates on a simple yet effective principle: as the cylindrical shell rotates around its horizontal axis, the grinding media (steel or ceramic balls) are lifted along the inner wall by centrifugal force and friction. When they reach a certain height, they fall freely, striking and grinding the material below. This repeated motion causes both impact and abrasion, reducing the material to the desired fineness. The grinding process can be performed in dry or wet conditions depending on the application.
Structural Composition
A standard ball mill consists of several main components:
Feeding part: Equipped with a feeder or screw conveyor to ensure uniform material input.
Discharging part: Can be grate type or overflow type, depending on the discharge method.
Rotating part: The cylindrical shell made of steel plates, lined with wear-resistant liners.
Transmission system: Includes motor, reducer, small transmission gear, and electrical control.
Grinding media: Steel balls or ceramic balls of different diameters for efficient grinding.
The internal liner design and ball size distribution are optimized to achieve maximum grinding efficiency and minimal energy consumption.
Technical Details
Typical Specifications:
Feeding size: ≤25 mm
Discharge size: 0.074–0.4 mm
Capacity: 0.65–615 t/h (depending on model and material hardness)
Cylinder speed: 18–38 r/min
Power: 18.5–4500 kW
Liner material: High manganese steel, rubber, or alloy steel
Grinding media load: 30–45% of cylinder volume
Operating Modes:
Dry grinding: Suitable for materials that must remain moisture-free, such as cement clinker, limestone, and quartz.
Wet grinding: Common in ore beneficiation, where water or slurry improves grinding efficiency and particle uniformity.
Application in Mining Plants
In mining operations, ball mills are used after crushing to further reduce ore size and liberate valuable minerals. They are integrated into grinding circuits with classifiers, hydrocyclones, and flotation systems. The ground material is classified by size, and oversized particles are returned to the mill for regrinding. This closed-circuit system ensures consistent product fineness and efficient energy use.
Common Applications:
Gold, copper, iron, and zinc ore grinding
Cement clinker and slag processing
Silicate and ceramic powder production
Coal and mineral powder preparation
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Conclusion
A ball mill is an indispensable piece of equipment in both powder production and mining beneficiation plants. Its ability to grind materials into fine, uniform particles makes it vital for downstream processes such as flotation, sintering, and chemical reactions.
Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Mingyuan Dry and Wet Ball MillCustomerizable Model for ball mill plant
Call
Condition: new, functionality: fully functional, Year of construction: 2026, Dry and Wet Ball Mill: Structure, Operation, and Technical Details
A ball mill is a fundamental grinding device used in mineral processing, cement manufacturing, chemical production, and other industrial applications. It works by rotating a cylindrical shell filled with grinding media—usually steel balls—causing impact and friction that reduce materials to fine powder. Based on the grinding environment, ball mills are classified into dry and wet types, each suited for specific materials and process requirements.
Working Principle
Both dry and wet ball mills operate on the same mechanical principle. The rotating cylinder, driven by a motor through a gear system, lifts the grinding media and material along the inner wall. As the rotation continues, the balls fall under gravity, striking and grinding the material. The difference lies in the presence or absence of a liquid medium during grinding.
Dry Ball Mill
A dry ball mill is used when the material must remain moisture-free or when water could affect product quality. It is commonly applied in cement clinker, limestone, quartz, and refractory material grinding. The discharge can be either grate type or overflow type, depending on the desired fineness.
Technical Features:
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Feeding size: ≤25 mm
Discharge size: 0.075–0.4 mm
Capacity: 0.65–90 t/h
Liner material: High manganese steel or wear-resistant alloy
Drive system: Gear-driven or direct-coupled motor
Dust control: Equipped with air exhaust and dust collector
Advantages:
Suitable for materials sensitive to moisture
No drying process required after grinding
Lower corrosion risk and simpler maintenance
Easier material classification and separation
Limitations:
Dry grinding produces more dust and heat, requiring efficient ventilation and dust collection systems.
Wet Ball Mill
A wet ball mill operates with water or another liquid medium added to the material. The slurry formed during grinding improves efficiency by reducing friction and preventing excessive heat buildup. It is widely used in ore beneficiation, ceramics, and chemical industries.
Technical Features:
Feeding size: ≤25 mm
Discharge size: 0.074–0.2 mm
Capacity: 0.65–615 t/h
Liner material: Rubber or high-chromium steel
Discharge method: Overflow or grate type
Auxiliary equipment: Classifier, pump, and thickener for slurry circulation
Advantages:
Higher grinding efficiency and finer particle size
Reduced dust and noise levels
Continuous operation suitable for beneficiation circuits
Better control of particle uniformity
Limitations:
Requires drying if the final product must be in powder form and involves more complex slurry handling.
The selection between dry and wet grinding depends on the material characteristics, downstream process, and environmental conditions. Dry mills are preferred for materials that must stay moisture-free, while wet mills are ideal for fine grinding and slurry-based processes.
Conclusion
Dry and wet ball mills share the same mechanical structure but differ in their grinding environment and application scope. The dry type offers simplicity and low maintenance for moisture-sensitive materials, while the wet type provides higher efficiency and finer output for mineral and chemical processing. Understanding their technical parameters and operational differences ensures optimal equipment selection, improved productivity, and reliable performance in industrial grinding operations.
Listing
Zheng Zhou Shi
3,684 km
Production line for rock & concrete processing
Henan Mingyuan sand production line50-600 t/h sand gravel production line
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Condition: new, functionality: fully functional, power: 460 kW (625.43 HP), fuel type: electric, Year of construction: 2026, Henan Mingyuan Heavy Industrial Equipment Co., Ltd. has established itself as a premier global manufacturer, providing integrated Sand and Gravel Production Lines that transform raw minerals into precision-graded materials.
A MINGYUAN production line is not just a collection of machines; it is a synchronized system engineered for maximum throughput, minimal waste, and low operational costs.
-1. Core Equipment Configuration
The MINGYUAN system follows a multi-stage reduction philosophy to ensure particle shape and quality.
Vibrating Feeder (GZQ Series):Ensures a continuous, uniform flow of raw material to the primary crusher. It features grizzly bars to pre-screen dirt and "fines," protecting the crusher from unnecessary wear.
Primary Jaw Crusher (PE/C-Type): The "workhorse" designed for the initial breakdown of hard rocks (granite, basalt, river pebbles). MINGYUAN’s jaw crushers utilize a deep-chamber design for high crushing ratios.
Secondary Crusher (Impact or Cone):Impact Crusher (PF Series): Ideal for medium-hard materials; produces highly cubic final products with excellent grain shape.
Cone Crusher (Hydraulic/Spring): Preferred for high-hardness materials (granite/quartz) due to its high efficiency and low wear-part consumption.
Sand Making Machine (VSI Series): The "finisher." It uses "stone-on-stone" or "stone-on-iron" technology to shape aggregates and produce high-fineness artificial sand.
Vibrating Screen (YK Series): A high-frequency circular screen that classifies material into specific sizes (e.g., 0-5mm, 5-10mm, 10-20mm, 20-40mm).
* Sand Washing Machine (XSD/LSX Series):Removes mud and impurities to ensure the final product meets strict concrete and asphalt standards.
2. Technical Specifications & Performance
MINGYUAN offers scalable solutions tailored to project size, ranging from small-scale mobile units to massive industrial stationary plants.
| Feature | MINGYUAN Standard Specifications |
| Production Capacity | 50 – 600 $t/h$ (Tons Per Hour) |
| Max Input Size | Up to 1,100mm (depending on Jaw model) |
| Finished Product Size | 0-5mm, 5-10mm, 10-20mm, 20-40mm (customizable) |
| Power System | High-efficiency AC Motors or Diesel-Electric Hybrid |
| Control System| Centralized PLC Control Cabinet with safety interlocks |
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| Materials Processed | River stone, granite, limestone, basalt, iron ore, and C&D waste |
3. The MINGYUAN Technical Advantage
What differentiates MINGYUAN in the global market is the "One-Stop" solution approach:
1. High Crushing Efficiency:Optimized crushing cavities increase the contact area between the material and the liners, reducing energy consumption per ton.
2. Environmental Compliance: Systems can be equipped with advanced dust suppression misting and fully enclosed belt conveyors to meet stringent urban environmental regulations.
3. Durability: Wear parts (jaw plates, blow bars, mantles) are manufactured using high-manganese and high-chrome alloys, significantly extending the time between maintenance cycles.
4. Flexible Layouts: Whether for a mountain quarry or a tight urban recycling site, MINGYUAN provides customized CAD layouts to optimize gravity-flow and reduce conveyor length.
4. Conclusion
A MINGYUAN Sand and Gravel Production Line represents a strategic investment in efficiency. By combining primary strength with precision finishing and washing, the brand ensures that every ton of raw material is maximized for its commercial value.
Listing
Zheng Zhou Shi
3,684 km
Filtration system / mining separator
Ore beneficiation plant for gold copperOre dressing plant for zinc lead nickel
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Condition: new, Year of construction: 2026, functionality: fully functional, power: 400 kW (543.85 HP), Ore Beneficiation Plant for Nickel, Copper, Zinc, Graphite, Gold, Silver, Chrome, Quartz/Silica
In today’s competitive mining and metallurgical industry, maximizing ore value is critical. Our state-of-the-art Ore Beneficiation Plant offers a complete solution designed to increase the content and quality of raw ore, transforming it into a marketable product ready for further processing or direct sale. Engineered for a wide range of minerals—including nickel, copper, zinc, graphite, gold, silver, chrome, and quartz/silica—our ore beneficiation plant delivers exceptional performance, efficiency, and reliability.
Introduction
Mining operations around the world face the challenge of processing ores that are often low in grade and require extensive refinement to be economically viable. Beneficiation—the process of increasing the concentration of valuable minerals—plays a vital role in reducing operational costs, enhancing recovery, and ultimately, ensuring profitability. Our ore beneficiation plant, also known as an ore processing plant or mine dressing plant, integrates advanced technology and robust engineering to deliver an efficient crushing, grinding, classifying, and separation process.
Designed to handle a wide variety of ores, our plant is the ideal solution for mining companies looking to optimize their extraction and processing operations. Whether you’re processing nickel, copper, zinc, graphite, gold, silver, chrome, or quartz/silica, our plant provides the versatility and performance needed to meet today’s rigorous industrial standards.
## What Is an Ore Beneficiation Plant?
An ore beneficiation plant is a facility where raw ore is processed to improve its quality and increase the concentration of valuable minerals. The plant typically includes several stages of processing:
1. Crushing: The raw ore is reduced in size to allow for more efficient downstream processing.
2. Grinding: Further size reduction to liberate the valuable minerals from the waste material.
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3. Classifying: Separation of the ore into different size fractions using screening and hydrocyclones.
4. Separation: Employing various physical processes such as magnetic separation, flotation, or gravity separation to concentrate the valuable minerals.
5. Dewatering: Removal of excess water to prepare the concentrate for further processing or shipping.
This integrated process not only boosts the metal content but also minimizes waste, thereby improving overall cost efficiency and environmental sustainability.
Listing
Zheng Zhou Shi
3,684 km
Powder grinding mill
ball mill for mining &fine powder makingsilica/Barite/limestone powder plant
Call
Condition: new, Year of construction: 2026, power: 300 kW (407.89 HP), Ball Mill for Mining & Fine Powder Making:
A ball mill is a fundamental grinding device widely used in mining, metallurgy, cement, and chemical industries. It is designed to grind ores and other materials into fine powder through impact and attrition between steel balls and the material inside a rotating cylindrical shell. In mining plants, ball mills are essential for ore beneficiation, while in powder-making industries, they ensure uniform particle size and high surface area for further processing.
Working Principle
The ball mill operates on the principle of impact and friction. As the cylindrical shell rotates around its horizontal axis, the grinding media—usually steel or ceramic balls—are lifted along the inner wall by centrifugal force and friction. When they reach a certain height, they fall freely, striking and grinding the material below. This repeated motion breaks down the material into fine particles. The process can be carried out in dry or wet conditions depending on the application.
Structural Composition
A standard ball mill consists of several main components:
Feeding part: Ensures uniform material input through a feeder or screw conveyor.
Discharging part: Can be grate type or overflow type, depending on the discharge method.
Rotating part: The cylindrical shell made of steel plates, lined with wear-resistant liners.
Transmission system: Includes motor, reducer, small transmission gear, and electrical control.
Grinding media: Steel or ceramic balls of various diameters for efficient grinding.
The internal liner design and ball size distribution are optimized to achieve maximum grinding efficiency and minimal energy consumption.
Technical Details/Typical Specifications:
Feeding size: ≤25 mm
Discharge size: 0.074–0.4 mm
Capacity: 0.65–615 t/h (depending on model and material hardness)
Cylinder speed: 18–38 r/min
Power: 18.5–4500 kW
Liner material: High manganese steel, rubber, or alloy steel
Grinding media load: 30–45% of cylinder volume
Operating Modes:
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Dry grinding: Used for materials that must remain moisture-free, such as cement clinker, limestone, and quartz.
Wet grinding: Common in ore beneficiation, where water or slurry improves grinding efficiency and particle uniformity.
Application in Mining and Powder Production
In mining operations, ball mills are used after crushing to further reduce ore size and liberate valuable minerals. They are integrated into grinding circuits with classifiers, hydrocyclones, and flotation systems. The ground material is classified by size, and oversized particles are returned to the mill for regrinding. This closed-circuit system ensures consistent product fineness and efficient energy use.
In fine powder production, ball mills are used to produce materials such as silicate, ceramic powder, refractory materials, and chemical raw materials. The uniform particle size achieved by ball milling enhances product quality and performance in downstream applications.
Conclusion
A ball mill is an indispensable piece of equipment for both mining and fine powder making. Its ability to grind materials into fine, uniform particles makes it vital for ore beneficiation and industrial powder production. With flexible configurations, high efficiency, and reliable operation, modern ball mills provide a cost-effective and energy-efficient solution for large-scale grinding, ensuring consistent quality and productivity across diverse applications.
Listing
Zheng Zhou Shi
3,684 km
Powder grinding machine
Fine powder grinding mill, clinker millSuperfine ball mill for micro powder
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Condition: new, Year of construction: 2026, A superfine ball mill is a type of milling machine that is used to grind materials into very fine particles. This type of ball mill has some distinctive features that make it especially suitable for processing even the hardest materials with low contamination and minimal wear. It is commonly used in various industries, including pharmaceuticals, minerals, pigments, and chemicals, for producing micro powder or nanoparticles.
Here are some key features and considerations for a superfine ball mill for micro powder:
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1. High Grinding Efficiency: Superfine ball mills are designed to achieve high grinding efficiency by utilizing grinding media with a relatively small size, leading to a large surface area for grinding.
2. Precision Control: These mills often come with advanced control systems to regulate parameters like rotation speed, temperature, and grinding time, allowing precise control over the particle size distribution.
3. Specialized Design: The mill is typically designed with features to minimize contamination, such as using materials resistant to wear and corrosion. Some mills also have cooling systems to prevent overheating during the milling process.
4. Variety of Materials: Superfine ball mills can handle a wide range of materials, including both brittle and fibrous substances. They are often used for milling hard materials that require fine grinding, such as ceramics, minerals, or pigments.
5. Size Reduction to Micro or Nano Level: The primary goal of a superfine ball mill is to reduce particle size to the micro or even nano level. This is achieved by the intense grinding action that occurs within the mill.
6. Classifier System: Some superfine ball mills incorporate a classifier system to control the particle size distribution more precisely. This allows for the separation of fine particles from coarser ones during the milling process.
7. Batch or Continuous Operation: Depending on the specific design, these mills can operate in either batch or continuous mode, offering flexibility based on the production requirements.
8. Safety Measures: Safety features may be included, such as monitoring and control systems to prevent overloading, overheating, or other potential issues during operation.
When selecting a superfine ball mill for micro powder production, it's important to consider the specific requirements of your application, the characteristics of the materials you're working with, and the desired final particle size distribution. Always follow the manufacturer's guidelines for operation, maintenance, and safety to ensure optimal performance and longevity of the equipment.
Listing
Zheng Zhou Shi
3,684 km
Powder equipment for sand & micro powder
Mingyuan Powder production equipment1.83X11m Micro Powder Ball Grinding Mill
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Condition: new, Year of construction: 2026, functionality: fully functional, Ball Mill with Air Classifier: The Ultimate Powder Processing Equipment
In the world of industrial powder production, precision, efficiency, and flexibility are paramount. Whether producing ultra-fine powders for high-tech applications or coarser materials for everyday products, the combination of a Ball Mill with Air Classifier offers unparalleled performance. This dynamic duo provides a comprehensive solution for industries ranging from chemicals and ceramics to paints, plastics, and pharmaceuticals.
This article introduces the ball mill with an air classifier, explores its applications, and highlights the key advantages of this essential powder equipment.
General Introduction to Ball Mill with Air Classifier
ball mill with air classifier is an advanced grinding and classification system designed for efficient, high-quality powder production. The system consists of two main components:
1. Ball Mill: A cylindrical grinding device filled with grinding media (such as steel balls) that operates by rotating around its axis. The raw material is reduced to smaller particle sizes through impact and friction within the mill.
2. Air Classifier: A sophisticated device that separates particles based on size using airflow. Fine particles are carried away, while coarser particles are returned to the ball mill for further grinding.
The combination of these two components creates a closed-loop system that ensures consistent particle size distribution, high efficiency, and minimal waste.
Applications of Ball Mill with Air Classifier
The ball mill with air classifier is a versatile solution used in a wide range of industries to process various materials. Key applications include:
1. Mineral Processing
The system is widely used in the production of minerals such as calcium carbonate, quartz, feldspar, and talc. These finely ground minerals are essential for industries like ceramics, paints, plastics, and rubber.
2. Cement and Construction Materials
Cement and other construction materials require precise particle size control for optimal performance. The ball mill with air classifier ensures uniformity and enhances the quality of construction materials.
3. Chemicals and Pharmaceuticals
Fine powders play a critical role in the chemical and pharmaceutical industries. From active pharmaceutical ingredients (APIs) to industrial chemicals, this system delivers the consistent quality required for these applications.
4. Paints, Coatings, and Pigments
The production of paints and coatings demands ultra-fine powders to achieve smooth finishes and vibrant colors. The ball mill with air classifier produces high-quality powders for superior results.
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#### 5. Food and Agriculture
Food-grade powders such as additives, preservatives, and agricultural products like fertilizers can be efficiently processed using this system, meeting stringent regulatory requirements.
Industries That Benefit from Ball Mill with Air Classifier
Several industries rely on the capabilities of this system to produce fine powders with specific characteristics:
- Ceramics: Produces high-purity powders for tiles, insulators, and advanced ceramics.
- Rubber and Plastics: Creates fillers and additives for improved durability and performance.
- Pharmaceuticals: Ensures consistent particle size for APIs and excipients.
-Construction: Delivers materials for concrete, plaster, and other applications.
Listing
Zheng Zhou Shi
3,684 km
Sand washing plant for silica sand
Wheel bucket / Spiral sand washerSilica / M sand washing machine
Call
Condition: new, functionality: fully functional, power: 11 kW (14.96 HP), Year of construction: 2025, A spiral-type sand washer machine, also known as a spiral sand washing machine or screw sand washer, is a piece of equipment designed for washing, classifying, and dewatering sand and other granular materials. This type of sand washer typically features a spiral or screw-shaped structure for the purpose of lifting, conveying, and washing materials.
Here are key features and aspects of a spiral-type sand washer machine:
1. Spiral Structure: The core component of the machine is a spiral or screw-shaped structure, often enclosed within a tub or trough. This spiral impeller is responsible for lifting, conveying, and washing the sand as it rotates.
2. Tub or Trough Design: The spiral structure is usually housed within a tub or trough that holds the water and sand mixture. This design allows for efficient washing and separation of impurities from the sand.
3. Multiple Blades: The spiral impeller typically has multiple blades or flights that provide mechanical agitation to the sand, ensuring thorough cleaning.
4. Water Injection: Water is injected into the tub or trough to aid in the washing process. The combination of water and the rotating spiral helps to remove impurities from the sand.
5. Adjustable Weirs: Some spiral-type sand washers have adjustable weirs or gates that control the flow of water and the retention time of the sand in the machine, allowing for customization of the washing process.
6. Classification and Dewatering: Spiral sand washers often include features for classifying and dewatering the sand. This may involve the use of a separate compartment or mechanism for fine sand recovery and water drainage.
7. Variable Speed: The rotational speed of the spiral can often be adjusted to optimize the washing process for different types of materials and particle sizes.
8. Capacity: The capacity of a spiral-type sand washer is influenced by factors such as the size of the machine, the pitch of the spiral, and the efficiency of the washing process. Different models are available to suit various production requirements.
9. Materials Handling: Spiral sand washers are commonly used in applications such as aggregate processing, mining, concrete production, and other industries where the removal of impurities from sand is essential.
10. Ease of Maintenance: Many spiral-type sand washers are designed for easy maintenance, with accessible components and inspection points.
Spiral-type sand washer machines are efficient tools for cleaning and processing sand, ensuring that the final product meets quality standards for use in construction, concrete production, and other applications. The specific features and capabilities of these machines can vary between different models and manufacturers.
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Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Sand Aggregate crushing production lineAggregate & Ballast Crusher Equipment
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Condition: new, functionality: fully functional, Year of construction: 2025, Aggregate and ballast crusher equipment are used in the crushing and processing of various materials for construction and infrastructure projects. These crushers are designed to break down large rocks, gravel, or stones into smaller pieces, producing aggregates and ballast that are essential components in the construction industry. Here are some key aspects related to aggregate and ballast crusher equipment:
1. Jaw Crusher:
- Jaw crushers are commonly used for primary crushing in aggregate and ballast production. They operate by compressing the material between a stationary and a movable jaw.
2. Impact Crusher:
- Impact crushers are suitable for shaping and producing fine aggregates. They use impact force to crush the material, making them suitable for various types of rock and ore.
3. Cone Crusher:
- Cone crushers are often used for secondary and tertiary crushing in aggregate production. They are efficient for producing well-shaped and finely graded aggregates.
4. Vertical Shaft Impact (VSI) Crusher:
- VSI crushers are designed for shaping and producing high-quality artificial sand. They use the "rock-on-rock" crushing principle, where rocks are fed into the rotor to be accelerated and crushed against the stationary anvils.
5. Gyratory Crusher:
- Gyratory crushers are primarily used in mining, but they may also be used in the production of aggregates. They have a conical head and a concave surface, which crushes the material between the head and concave.
6. Mobile Crushers:
- Mobile crushers, including mobile jaw crushers and mobile impact crushers, provide flexibility and mobility for on-site crushing of aggregates and ballast. They are often used in construction projects where materials need to be processed directly at the job site.
7. Screens and Scalpers:
- Screens and scalpers are used to separate different sizes of aggregates after the initial crushing stage. Vibrating screens are commonly employed to classify and separate materials based on size.
8. Conveyors:
- Conveyors are crucial for transporting materials between various stages of the crushing process and for stockpiling the final products. They enhance efficiency in material handling.
9. Dust Suppression Systems:
- Crushing operations can generate dust, and dust suppression systems are used to minimize environmental and health impacts. These systems may include water sprays or chemical suppressants.
10. Quality Control:
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- Quality control measures, such as particle size analysis and gradation testing, are essential to ensure that the produced aggregates and ballast meet the required specifications and standards.
11. Environmental Considerations:
- Crusher equipment should adhere to environmental regulations, and measures like dust control, noise reduction, and proper waste disposal should be implemented.
When selecting aggregate and ballast crusher equipment, factors such as the type of material, required product size, production capacity, and mobility requirements should be taken into consideration. Additionally, adherence to safety and environmental standards is crucial in the operation of crushing equipment.
Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Mobile / Stationary stone crusher plantSand & aggregate production plant
Call
Condition: new, Year of construction: 2025, A sand aggregate production plant is a facility where various types of aggregates (such as sand, gravel, crushed stone, or recycled concrete) are produced for use in construction and other applications. These plants typically include various stages of processing, from raw material extraction to the final product.
Here are the key components and processes typically involved in a sand aggregate production plant:
1. Raw Material Extraction:
- Quarrying or Mining: Aggregates are often extracted from quarries, mines, or riverbeds. Depending on the type of aggregate, the extraction process may involve drilling, blasting, or dredging.
2. Primary Crushing:
- Jaw Crusher or Gyratory Crusher: The extracted raw material is usually transported to the plant and fed into a primary crusher, where large rocks are broken down into smaller pieces.
3. Secondary Crushing:
- Cone Crusher or Impact Crusher: The crushed material from the primary crusher may undergo further reduction in size through secondary crushing.
4. Screening:
- Vibrating Screens: After crushing, the material is often screened to separate different sizes of aggregates. This process ensures that the final product meets the required specifications.
5. Washing:
- Sand Washers: In some cases, especially for sand production, washing is done to remove impurities, clay, and fines from the aggregates, ensuring a cleaner and higher-quality product.
6. Grading and Sorting:
- Classifiers or Graders: After washing and screening, the aggregates may go through additional processes to separate them based on size or quality.
7. Stockpiling:
- Stockpiles: The final aggregates are usually stockpiled for storage before being transported to construction sites or other end-users.
8. Aggregate Storage and Handling:
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- Storage Bins or Silos: Larger production plants may have storage facilities, such as bins or silos, to store different types and sizes of aggregates before distribution.
9. Quality Control:
- Laboratory Testing: Regular quality control testing is performed on aggregates to ensure they meet specifications for strength, size, gradation, and other properties.
10. Environmental Considerations:
- Water Management: Some plants incorporate water management systems to recycle and reuse water used in the washing process, minimizing environmental impact.
11. Transportation:
- Conveyors or Trucks: Aggregates are typically transported from the production plant to construction sites by conveyors, trucks, or other means.
Listing
Zheng Zhou Shi
3,684 km
Crushing equipment
Mingyuan stone crusher machinegravel & aggregate production equipment
Call
Condition: new, Year of construction: 2025, Gravel and aggregate production equipment is used to crush, screen, and process stones, rocks, and other materials for the construction industry. This equipment is essential in producing various types of aggregates, including crushed stone, gravel, sand, and recycled concrete, which are used in the construction of roads, buildings, bridges, and other infrastructure projects. Here are some common types of equipment used in gravel and aggregate production:
1. Jaw Crusher:
- Jaw crushers are primary crushers used to break down large rocks into smaller, more manageable pieces. They are essential for the initial stage of aggregate production.
2. Impact Crusher:
- Impact crushers are used to crush rocks and stones with the help of impact force. They are suitable for shaping and producing fine aggregates.
3. Cone Crusher:
- Cone crushers are often used for secondary and tertiary crushing in aggregate production. They produce well-shaped and finely graded aggregates.
4. Vertical Shaft Impact (VSI) Crusher:
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- VSI crushers are designed for shaping and producing high-quality artificial sand. They are suitable for processing materials with high abrasiveness.
5. Screens:
- Vibrating screens are used to separate different sizes of aggregates. They classify the material based on particle size and ensure that the final products meet specified gradation requirements.
6. Scalping Screens:
- Scalping screens are used to remove oversized materials before they reach the primary crusher. This helps to optimize the crushing process and prevent damage to the equipment.
7. Washing Equipment:
- Washing equipment, such as sand screws or log washers, is used to remove impurities and fine particles from aggregates. This is particularly important for producing high-quality concrete sand.
8. Conveyors:
- Conveyors are used to transport materials between different stages of the crushing and screening process. They play a crucial role in enhancing efficiency in material handling.
9. Stackers and Reclaimers:
- Stackers are used to create stockpiles of processed aggregates, while reclaimers are used to retrieve the material from the stockpile. Both are essential for efficient material storage and handling.
10. Crushing Plants:
- Complete crushing plants include various types of crushers, screens, and conveyors integrated into a single system. These plants are designed to handle large volumes of material efficiently.
Listing
Germany
6,760 km
Screening Machine
DinnissenCZ-6
Call
Year of construction: 2020, condition: ready for operation (used), A Dinnissen centrifugal screening machine for classifying screening of bulk materials is available. Screening area: 2.2m², screen basket division: 5, inlet height: 900mm, screen basket fineness: 250µm, min. screening chamber operating pressure: 0.5bar. Machine dimensions X/Y/Z: approx. 2200mm/1050mm/1650mm, weight: approx. 1050kg. Without control cabinet. Documentation available. An on site inspection is possible. Image is an example.
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Listing
Bramshall
7,601 km
Drying system
Hosokawa MicronModel MDH3 Micron Dryer
Call
Condition: new, Model MDH 3 Hosokawa Micron Dryer
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Flash Drying of Filter Cakes, Powders and Granules.
Model MDH 3 Micron Dryer manufactured by Hosokawa Micron.
Installed Power – 45 kW (Rotor)
2,2 kW (Classifier)
Airflow - 6,000 m3/hour
Evaporative 600 kg H2O/hour
Capacity -
Scope of supply includes agitated twin screw feeder, natural gas fired air heater and lubrication system (for rotor drive).
In-built dynamic classifier provides control on particle size and retention time.
Equipment is offered in "as is" condition with no warranty given or implied. PPDS can offer full refurbishment services. Inspection is invited at our premises in Uttoxeter, Staffordshire, United Kingdom (close to East Midlands, Birmingham and Manchester airports).
Powder Process Design Services Ltd has been supplying equipment and systems to the industrial minerals sector for over 20 years. We specialise in the design and supply of minerals processing systems using a combination of new and s/hand refurbished equipment. With approaching 40 years experience we aim to deliver projects that meet and indeed exceed clients expectations. We have satisfied customers throughout the world, including, the United States, South America, New Zealand, South Africa the Middle East and the UK and Ireland.
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Listing
Bramshall
7,601 km
Drying system
Hosokawa MicronModel MDH2 Micron Dryer
Call
Condition: used, Model MDH 2 Hosokawa Micron Dryer
Flash Drying of Filter Cakes, Powders and Granules.
Model MDH 2 Micron Dryer manufactured by Hosokawa Micron.
Machine was built in 1995 for a pilot plant operation drying a Precipitated Calcium Carbonate (PCC) Filter Cake. The dryer ran periodically for around 2 years and has been in storage ever since.
Installed Power – 30 kW (Rotor)
2,2 kW (Classifier)
Airflow - 3,000 m3/hour
Evaporative 310 kg H2O/hour
Capacity -
Scope of supply includes agitated twin screw feeder and lubrication system (for rotor drive).
In-built dynamic classifier provides control on particle size and retention time.
Equipment is offered in "as is" condition with no warranty given or implied. PPDS can offer full refurbishment services. Inspection is invited at our premises in Uttoxeter, Staffordshire, United Kingdom (close to East Midlands, Birmingham and Manchester airports).
Powder Process Design Services Ltd has been supplying equipment and systems to the industrial minerals sector for over 20 years. We specialise in the design and supply of minerals processing systems using a combination of new and s/hand refurbished equipment. With approaching 40 years experience we aim to deliver projects that meet and indeed exceed clients expectations. We have satisfied customers throughout the world, including, the United States, South America, New Zealand, South Africa the Middle East and the UK and Ireland.
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Listing
Töltéstava
6,200 km
Ultracentrifuge
Beckmann CoulterXL-100K
Call
Condition: ready for operation (used), The Optima XL ultracentrifuge is used to generate centrifugal forces for the separation of particles. It is available in three models: the XL-100K, with maximum speed of 100 000 respectively. Classified “S,” it can be used with all currently manufactured Beckman Coulter preparative rotors; it is also designed for zonal and continuous flow operation.
Weight . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 465 kg (1025 lb)
Height . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . (overall) 120.7 cm (47.5 in.)
Width . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 94.0 cm (37 in.)
Depth . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 67.3 cm (26.5 in.)
Clearances . . . . . . . . . . . . . . . . . . . . . . . 5.1 cm (2 in.) sides; 15.2 cm (6 in.) rear
Finish .. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . urethane paint on top surface; general-purpose paint on other surfaces; coated polycarbonate finish on control panel
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Maximum heat dissipation into the room . . . . . . . . . . . . . 1.0 kW (3400 Btu/hr)
Humidity restrictions . . . . . . . . . . . . . . . . . . . . . . . . . .
Listing
Gorzów Wielkopolski
6,448 km
Aspiration 15 000 m3
HolzingRLA 550 VIBER Power 15 000
Call
Condition: new, Year of construction: 2026, Capacity ~ 15,000 m³/h
Motor power 15 kW / 20 HP (optional: 18 kW motor)
Filter surface area 57.9 m²
Exhaust port diameter 400 mm
Voltage 400 V
Filter material polyester
Filter permeability 3 microns
Filter dimensions Ø152 x 1120 mm
Number of filters 108
Dimensions (L x W x H) 4147.5 x 1129 x 2480 mm
Weight 870 kg
Scope of delivery:
Polyester filter, 3 microns
5 containers
3 chimneys
Filter cleaning using a vibration system with control
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The automatic vibration filter cloth cleaning system allows for continuous monitoring of filter operation during breaks and during operation. The filters used are classified as "G" filtration category, which allows for air purification up to 0.2 mg/m3/h (H2).
Listing
Drensteinfurt
6,951 km
Foundry machine
WöhrGießereimaschine Durchlauf-Wirbelmischer
Call
Condition: used, Year of construction: 1994, type of input current: three-phase, Equipment: documentation/manual, I am offering a continuous-flow rotary mixer from Wöhr, available due to a company liquidation.
Includes control system, sand hopper, and sand feeder. Spare blades for the mixing screw are also included. The machine is currently still connected and was operational until the company closed.
Year of manufacture: 1994
Capacity: up to 5 t/h
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Siemens spare parts, as well as a laptop with software and memory chips, are included. 2 folders with documentation. For self-dismantling.
More photos and details, as well as a viewing appointment, are available upon request.
Please feel free to contact me via classified ads with your price offer.
For self-dismantling. Dismantling can be organized for an additional cost.
Sale ONLY to businesses. An invoice with VAT will be issued.
Without warranty.
Listing
Rohrbach
6,919 km
Panel van
VWT5 Transporter 2.0 TDI PARKTRONIK EURO-5 2xSCHIEBETÜR CoC
Call
Condition: used, mileage: 1,36,089 km, power: 62 kW (84.30 HP), first registration: 07/2013, fuel type: diesel, empty load weight: 1,762 kg, maximum load weight: 1,038 kg, overall weight: 2,800 kg, axle configuration: 4x2, wheelbase: 3,000 mm, fuel: diesel, CO₂ emissions: 190 g/km, fuel consumption (urban): 9.4 l/100km, fuel consumption (extra-urban): 6 l/100km, fuel consumption (combined): 7.2 l/100km, color: yellow, driver cabin: other, gearing type: mechanical, emission class: euro5, suspension: other, number of seats: 3, total length: 4,892 mm, loading space length: 2,500 mm, loading space width: 1,600 mm, loading space height: 1,300 mm, Year of construction: 2013, construction height: 1,970 mm, Equipment: ABS, airbag, central locking, electronic stability program (ESP), immobilizer system, onboard computer, soot filter, traction control, Engine damage.
The Volkswagen T5 Transporter 2.0 TDI is a versatile panel van, built in 2013 with a mileage of 136,089 km. It offers an engine output of 62 kW (84 HP) and is equipped with a 2.0-litre diesel engine compliant with Euro 5 emissions standards. The vehicle features a manual transmission and front-wheel drive. With its Ginster Yellow paintwork and 4-cylinder engine configuration, it provides seating for three occupants.
The T5 is fitted with two side sliding doors for easy loading and unloading, and it is classified as a commercial vehicle (truck registration). Its environmentally friendly orientation is highlighted by the green environmental badge (emissions sticker) of class 4. Combined fuel consumption is 7.2 l/100 km, making it relatively efficient for this type of vehicle. Despite the engine damage, the T5 represents a solid base for commercial users seeking a functional means of transport.
The vehicle is in used condition and has had only one previous owner. Further specifications include a wheelbase of 3,000 mm and a gross vehicle weight of 2,800 kg. Viewings are possible without prior appointment, and a registration service is also available.
Sale exclusively to business customers (agriculture, freelancers, small and large enterprises) or for export. Errors and prior sale excepted.
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Listing
Rohrbach
6,919 km
Box van
mercedes-benzSPRINTER 310 CDI MAXI EURO-5 KOFFER REGALE KAMERA DURCHGANG
Call
Condition: used, mileage: 1,37,947 km, power: 70 kW (95.17 HP), first registration: 02/2011, fuel type: diesel, empty load weight: 2,550 kg, maximum load weight: 950 kg, overall weight: 3,500 kg, axle configuration: 4x2, wheelbase: 4,325 mm, next inspection (TÜV): 02/2025, fuel: diesel, CO₂ emissions: 259 g/km, fuel consumption (urban): 11.1 l/100km, fuel consumption (extra-urban): 9.2 l/100km, fuel consumption (combined): 9.8 l/100km, color: yellow, driver cabin: other, gearing type: automatic, emission class: euro5, suspension: other, number of seats: 2, total length: 7,057 mm, loading space length: 4,380 mm, loading space width: 2,000 mm, loading space height: 2,000 mm, Year of construction: 2011, construction height: 2,690 mm, Equipment: ABS, central locking, immobilizer system, onboard computer, traction control, This used Mercedes-Benz Sprinter 310 CDI Maxi in yellow, built in 2011, offers a solid diesel engine with an output of 70 kW (95 hp). The vehicle, which has a mileage of 137,947 km, has a 2,143 cc engine and an automatic transmission with rear-wheel drive. The Sprinter, which is classified according to the Euro 5 emissions class, guarantees an environmentally conscious journey and bears the green environmental badge 4. With a generous loading height of 2,694 mm and a length of 7,057 mm, it is ideal for transporting large goods. The wheelbase of 4,325 mm gives the vehicle stability and driving comfort. The combined fuel consumption is 9.8 l/100 km, while the CO2 emissions are 259 g/km*. These values make it an economical choice for commercial users and exporters.
The car has space for two people and, with four doors, is very accessible. With a valid general inspection until February 2025 and only one previous owner, the vehicle is in good condition and suitable for further use. A viewing appointment can be arranged easily, even without prior registration.
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Only sold to commercial customers (agriculture, freelancers, small and large businesses) or exporters. Subject to errors and prior sale.
Listing
Hessisch Oldendorf
6,847 km
Screening plant
PowerscreenTurbochieftain 1200
Call
Condition: used, functionality: fully functional, Year of construction: 1995, operating hours: 1,765 h, Screen design: 2-deck screen box
Screening system type: 2-deck classifying screen
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Active grate spacing: feed area approx. 4000 x 2500 mm
Feed height: approx. 3500 mm
Trust Seal
Dealers certified through Machineseeker

Listing
Mouvaux
7,272 km
Meat processing machine
MADOMélangeur broyeur MEW 723
Call
Condition: ready for operation (used), functionality: fully functional, The MADO MEW 723 mixing grinder combines mixing and chopping in a single machine. MADO officially classifies it as one of its automatic mixing grinders. It is designed for industrial butcher shops, meat processing plants, and meat processing workshops. It can be used to prepare chopped products, fillings, seasoned mixtures, or bases for sausage production. Its 120-liter hopper is suitable for professional production while minimizing transfers between two separate pieces of equipment.
Operation of the MADO MEW 723
The mixing device distributes the pieces of meat, spices, and other ingredients before they pass through the cutting system. The central arm has four mixing profiles. Then, the screw conveyor regularly directs the product towards the cutting system.
Depending on the configuration, the manufacturer offers, among other options, a five-piece Unger B98 system or an Enterprise size 32 system. Unger D114, E130, or Enterprise E52 systems can also be used in some versions. Therefore, the exact configuration of this machine must be visually confirmed before announcing its cutting system.
This arrangement improves the consistency of the recipes and reduces intermediate handling. The operator can thus prepare a uniform mixture before packaging, portioning, stuffing, or shaping.
According to the manufacturer, the MEW 723 can also process large pieces and materials that have been hardened by cold. However, the actual permissible temperature depends on the installed equipment and the nature of the product. Therefore, the machine is suitable for lines where the consistency of the mixing and particle size directly influences the final quality.
Cleaning and integration into a line
The stainless steel frame meets the common requirements of the food processing environment. The manufacturer also provides a reversing function, a rinsing chamber, a removable mixing device, and a removable cutting body. These elements facilitate access to the work areas, cleaning, and maintenance operations.
A screw extraction tool is also indicated in the model's documentation. Consequently, teams can more easily organize production changes and maintenance operations.
The MADO MEW 723 mixing grinder can be placed after the cutting or preparation of the raw materials. Subsequently, it can feed a stuffer, a former, a portioning machine, or a packaging line. This integration reduces manual steps, improves production continuity, and promotes more consistent quality.
However, options such as integrated cooling, a cartilage and nerve separator, a frequency inverter, or a reinforced drive should only be mentioned if their presence is confirmed on the machine.
This machine has been reconditioned by Europ'Équipement.
Each machine is inspected, cleaned, checked, and tested before being sold to offer a reliable, economical, and durable solution for professionals in the food processing industry.
Technical specifications:
Manufacturer and model: MADO MEW 723
Year and serial number: 2014 – 20002802
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Hopper volume: 120 liters
Power supply: 400 V – three-phase – 50 Hz
Power, current, and protection: 6.6 kW – 14.6 A – IP54 – CE
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Listing
Schierling
6,624 km
Mobile star screen machine screening plant
Alzinger MaschinenbauLepton 5100
Call
Year of construction: 2025, operating hours: 1,250 h, condition: reconditioned (used), functionality: fully functional, Mobile screen separator for biowaste, household waste, residual waste, compost, green waste, biomass, waste wood, wood chips.
Current application: biowaste processing for wet fermentation. The machine provides a contaminant-free, homogeneous fraction for the fermenter, thus preventing the formation of sinking or floating layers.
Inspection & demonstration: Inspection possible during live operation at our partner company in the Kelheim district. Processes can be discussed directly with the plant operator.
Technical data:
Model: Lepton 5100 | Year of construction: 2025 | approx. 1250 operating hours
Location: D-84069 Schierling | Availability: short-term
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Screen decks: Deck 1 (52mm), Deck 2 (43mm)
Equipment: Adjustable metering roller, volume measurement, preparation for air classifier, compressor, LED package, wireless remote control.
Drive: Diesel-electric (Perkins 58kW, without Adblue) + option for external power supply (400V 63A).
Transport dimensions: L: 11.97m / H: 3.98m / W: 2.53m (No special permit required).
Screening material: Compost, green waste, biomass, wood, waste, EBS.
Condition: Very good, fully operational, the machine will be completely refurbished in our workshop before sale.
Listing
Gmunden
6,496 km
Cultivation air separator
TUKWINDBASIC 7
Call
Condition: new, Year of construction: 2025, functionality: fully functional, total width: 1,200 mm, total length: 1,200 mm, total height: 1,550 mm, overall weight: 270 kg, electrical fuse: 16 A, input voltage: 400 V, power: 7.5 kW (10.20 HP), drive type: Elektromotor, TUKWIND BASIC 7 add-on air classifier with special fan impeller and solid housing design.
Our smallest suction fan is suitable for extraction at one suction point. Ideally suited for fine fraction cleaning, Styrofoam extraction, and small screening machines up to 4m drum length.
- Optionally can be supplemented with our PUSH blowers to increase efficiency.
- Easy expansion option as a spot extractor with 10m hand suction hose.
Facts:
- Compact separation system for mounting on existing screening technology (mobile & stationary)
- High suction power - continuously adjustable thanks to built-in frequency converter
- Electric drive, hence very low maintenance costs
- 7.5kW power requirement; Power plug: 32A CEE (16A fuse sufficient)
A wide range of applications is made possible by the robust construction and individual adaptation to conveyor belts, etc.
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Fields of application: construction waste recycling (Styrofoam, plastic films), composting (plastic films), RDF cleaning (plastics), and more.
The device can be purchased either separately or as a complete set. The set includes all necessary accessories such as: extraction hood, hoses, bends, quick clamps, net, etc.
Listing
Thisted
6,917 km
Centrifugal pump
CSFASH 65-4-10/BM.CDPZTH1
Call
Condition: new, Year of construction: 2017, Item: AL-10509-CSF Pump 7.5kW
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CSF Inox Self-Priming Pump – Type ASH65-4-10/BM.CDPZTH1
Manufacturer: CSF Inox S.p.A. – Montecchio Emilia, Italy
Model: ASH 65-4-10/BM.CDPZTH1
Year: 2017 (newer, used)
Material: Stainless steel AISI 316L
Power: 7.5 kW
Speed: 1450 rpm
Voltage: 400/690 V – 50 Hz
ATEX certification: II 2G c T3 (Zone 1)
Connection: 3″ sanitary fittings
Condition: Very good, unused – stored in original wooden crate
Description:
High-quality stainless steel centrifugal pump from CSF Inox, suitable for use in hygienic and ATEX environments.
The ASH-series pumps are designed for gentle and efficient transfer of liquid food products, beverages, dairy, and chemical solutions.
The low-speed 1450 rpm motor provides smooth operation with reduced shear and foaming – ideal for milk, cream, wine, juice, or CIP applications.
The pump housing, impeller, and shaft are made entirely of AISI 316L stainless steel, ensuring long service life and corrosion resistance.
Typical Applications:
Dairy and food processing lines
Beverage, wine, and juice plants
CIP cleaning systems
Chemical and pharmaceutical installations
ATEX classified areas
Status: Ready for immediate delivery
Location: Denmark
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