GN Solids Control, has successfully dispatched 10 sets of fully hydraulic-driven(FHD) centrifuges to cater to the needs of clients in the Middle East.
These centrifuges, developed in collaboration with the renowned Swiss hydraulic centrifuge brands Viscotherm and ROTODIFF, adhere to international standards and fulfill the composite requirements of foreign customers.

FHD Decanter Centrifuge
The FHD decanter centrifuge is specifically designed to operate in high-temperature environments, facilitating the separation of mud slurries. Its single-point lifting structure ensures ease of on-site installation, adding to its operational efficiency.
Comprising a hydraulic pump, drum-driven hydraulic motor, and helical-driven (hydraulic differential) components, the fully hydraulic-driven centrifuge operates through two separate hydraulic oil delivery lines. The hydraulic pump delivers hydraulic oil to the drum-driven hydraulic motor, which powers both the drum and the hydraulic differential, thereby driving the helical structure. The electric motor drives the hydraulic pump, with each working line equipped with an independent hydraulic pump and control system. This enables the centrifuge to continuously and independently manually adjust the drum speed and helical differential during operation.

This innovative solution not only meets the demanding operational requirements of the Middle East but also showcases GN Solids Control's commitment to providing cutting-edge equipment tailored to the specific needs of its global clientele. The collaboration with Viscotherm and ROTODIFF further reinforces GN Solids Control's position as a leader in the solid control industry.
As GN Solids Control continues to deliver reliable and efficient solutions, the fully hydraulic-driven centrifuge stands out as a testament to the company's dedication to technological innovation and customer satisfaction. The continuous and independent manual speed adjustment capability during operation ensures optimal performance and adaptability in various operational scenarios.