Description:
Max bowl speed 4440 RPM, rated @ 12,000 LPH re-refining. 11 KW motor 380/3/50/1450 RPM, back-pressure valve. Prior use: Edible oil. 1975 vintage. Excellent condition. Located in Europe.
The Alfa-Laval SRG 214H-14H hermetic separator, 316SS, is engineered to deliver exceptional performance in the re-refining of edible oils. With a maximum bowl speed of 4440 RPM, this separator is capable of processing up to 12,000 liters per hour, making it an ideal choice for operations that require high throughput and efficiency. The robust 11 KW motor operates at 380V, 3-phase, 50 Hz, and 1450 RPM, ensuring reliable power delivery and consistent performance. The inclusion of a back-pressure valve further enhances the operational efficiency by allowing for precise control of the separation process, which is critical in maintaining the quality of the final product. Despite its vintage from 1975, this unit has been maintained in excellent condition, demonstrating the durability and longevity that Alfa-Laval equipment is known for.
Constructed from high-quality 316 stainless steel, the Alfa-Laval SRG 214H-14H hermetic separator is designed to withstand the rigors of industrial applications while providing superior resistance to corrosion and wear. This material choice not only enhances the separator's longevity but also ensures that it meets stringent hygiene standards, making it suitable for food-grade applications. The hermetic design minimizes the risk of contamination, thereby preserving the integrity of the processed oils. Given its prior use in edible oil applications, this separator has proven its capability in handling sensitive materials, which is a crucial factor for buyers looking to invest in reliable processing equipment. Located in Europe, this unit is readily available for inspection and purchase, providing an excellent opportunity for businesses looking to upgrade their processing capabilities with a trusted piece of equipment.
Key Features:
High-Speed Performance, Durable Construction, Efficient Processing, Hygienic Design, Reliable Power Delivery
