high pressure valves, iflow

15 May 2026 | iFlow

Introducing the Bardiani BBYQ High Pressure Hygienic Valve from iFlow

The Bardiani BBYQ High Pressure Valve, supplied by iFlow in the UK, delivers exceptional hygienic performance for high-pressure, sterile processing environments. Designed for reliability and contamination control, it supports critical applications across food, beverage, pharmaceutical and biotech industries.

The Bardiani BBYQ High Pressure Valve from iFlow is engineered to meet the rigorous demands of hygienic and aseptic processing systems. Built with a solid bar valve body, it offers outstanding strength and durability, making it suitable for high-pressure applications up to 150 bar in specific configurations. This robust construction ensures consistent performance in challenging operating environments where safety and cleanliness are paramount.

A key feature of the BBYQ valve is its integrated steam barrier, designed to minimise the risk of external contamination. This makes it an ideal solution for sterile processing, clean-in-place (CIP) systems and high-temperature sterilisation processes. The valve supports hygienic integrity across a wide range of industries, including pharmaceutical manufacturing, biotechnology, and food and beverage production.

Available in sizes ranging from DN25 to DN100 (1” to 4”), the Bardiani BBYQ valve accommodates diverse system requirements. It also offers multiple seal material options, such as EPDM, FKM, HNBR, PTFE and metal, allowing for tailored compatibility with different process conditions.

iFlow provides UK-based stock, fast delivery and expert technical support, helping customers select the right configuration for their specific application. With a service-friendly design and fully serviceable actuator, the BBYQ valve reduces downtime and maintenance costs while maintaining optimal operational efficiency.

For businesses requiring a reliable, high-performance hygienic valve solution, the Bardiani BBYQ from iFlow stands out as a trusted choice for demanding high-pressure environments.