Description:
Max bowl speed 6235 RPM, timed solids discharge, liquid discharged under pressure, 22 KW motor 380/3/50/1450 RPM, top piping and control panel on a skid. FCA Europe. Excellent condition.
The Alfa-Laval VNPX 510 SGD-34GS clarifier centrifuge, 316SS is engineered for high-performance separation processes, making it an ideal choice for various industrial applications. With a maximum bowl speed of 6235 RPM, this centrifuge efficiently separates solids from liquids, ensuring optimal clarity and purity of the discharged liquid. The timed solids discharge feature allows for precise control over the separation process, enhancing operational efficiency and reducing downtime. The liquid is discharged under pressure, which not only improves the overall separation quality but also minimizes the risk of contamination during the process. This centrifuge is powered by a robust 22 KW motor, operating at 380V, 3-phase, 50Hz, and 1450 RPM, providing the necessary power to handle demanding separation tasks with ease.
Designed with user convenience in mind, the Alfa-Laval VNPX 510 SGD-34GS features top piping and a control panel mounted on a skid, facilitating easy access and maintenance. This design ensures that operators can quickly make adjustments and monitor the centrifuge's performance without the need for extensive downtime. The use of 316 stainless steel in its construction not only enhances the durability of the centrifuge but also ensures resistance to corrosion, making it suitable for a wide range of applications, including food processing, pharmaceuticals, and chemical industries. With its excellent condition, this centrifuge represents a reliable investment for businesses looking to enhance their separation processes while maintaining high standards of quality and efficiency.
Key Features:
High-Speed Performance, Timed Solids Discharge, Durable 316 Stainless Steel Construction, User-Friendly Design, Efficient Liquid Discharge
Frequently Asked Questions
We're sorry, but this item has been sold.
Please consider the alternatives below.
