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Published: 22 August 2025
Recently, GN Separation proudly announced the official opening of its state-of-the-art Pilot Testing Workshop at its manufacturing headquarters. This newly constructed facility is strategically designed to act as a collaborative epicenter for clients, offering them the unique opportunity to test separation equipment under customized conditions. Such an approach ensures that clients can validate the optimal performance of the equipment and make well-informed selections tailored precisely to their specific operational requirements.
Diverse Testing Modules for Industry-Specific Challenges
The pilot testing workshop is a comprehensive setup, integrating five specialized testing modules. Each module is meticulously crafted to tackle distinct industrial challenges, spanning across sectors like mining, drilling, and environmental engineering. This reflects GN Separation's unwavering commitment to delivering end-to-end solutions that cater to the complex and varied demands of material separation.
1. Mining Vibrating Screen Module: Achieving Precision in Mineral Processing
This module is engineered to replicate full-scale production environments, providing a realistic setting for evaluating critical ore processing operations such as classification, dewatering, and desliming. Clients have the flexibility to experiment with different screen configurations and particle size distributions, enabling them to fine-tune their processes for maximum throughput and recovery rates.
2. Drilling Mud Shaker Module: Efficient Mud Management Across Sectors
Specifically designed to meet the needs of the oil, gas, trenchless, and geothermal industries, this module simulates drilling mud recycling systems under dynamic operating conditions. Engineers can rigorously assess screen durability, blinding resistance, and solids control efficiency across a wide range of mud formulations, including water-based, oil-based, and synthetic variants.
3. Decanter Centrifuge Testing Module: Versatile Solid-Liquid Separation Solutions
The Decanter Centrifuge Testing Module is a versatile platform that supports applications across multiple industries. It allows clients to evaluate the performance of centrifugal separation for various processes like sludge dewatering, biomass recovery, and wastewater treatment. With variable-speed drives and adjustable differential speeds, clients can exercise precise control over cake dryness and centrate clarity, ensuring optimal results.
4. Combined Vibrating Screen-Centrifuge Module: Tackling Complex Multi-Stage Processing
For materials that require sequential separation stages, such as drilling cuttings or industrial slurries, this combined module offers an integrated solution. It effectively addresses the challenges posed by wide particle size distributions and variable feed compositions, providing a comprehensive approach to complex material separation.
5. Solid Vacuum Pump Module: Validating Pneumatic Conveying Performance
The solid vacuum pump module is dedicated to evaluating material transfer systems for powders, granules, and slurries. Clients can conduct tests to determine vacuum pump capacities, pipeline diameters, and air-to-material ratios, enabling them to prevent blockages and maintain consistent flow rates for efficient material handling.
Client-Centric Approach and Global Influence
Each testing module is equipped with advanced monitoring capabilities, allowing clients to track key performance indicators such as separation efficiency, energy consumption, and wear rates. The dedicated team of GN engineers provides onsite support throughout the testing process, offering expert guidance and developing predictive maintenance protocols to ensure long-term equipment reliability.
With the launch of its Pilot Testing Workshop, GN Separation solidifies its position as a leading professional provider of industrial separation solutions. This innovative facility empowers clients to navigate technological transitions with confidence and agility, driving progress and efficiency in their respective industries.