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Surface acoustic wave technology provides hygienic flow measurement for pharmaceutical manufacturer

When active pharmaceutical ingredient (API) developer and manufacturer, Veranova, wanted to build a new manufacturing suite, it needed accurate control over volumetric flow to optimise process efficiency. As the suite would be installed within an existing area of the facility, the flowmeter had to contribute to a compact overall footprint. Handling various media, including solvents and acids as well as low conductivity liquids, the device also had to enable a clean in place (CIP) process. Veranova turned to Bürkert and its surface acoustic wave (SAW) technology to fulfil its requirements. 

At Veranova’s Edinburgh facility, the company planned a new manufacturing suite for high potency APIs, increasing production capacity from the lab to full-scale manufacturing. While Veranova has developed its own portfolio of APIs, the company is moving further into contract manufacturing, which will be supported by the additional capacity of the new production suite. To optimise manufacturing at a higher scale and ensure process efficiency, Veranova needed accurate control over the total flow of raw materials for API production, as well as the flow rate of chemicals in the CIP line.

Optimised manufacturing at a higher scale

Physical space is typically at a premium in API production, and Veranova’s manufacturing suite had to fit within the footprint of its existing facility, so compact dimensions were even more important. This ruled out Coriolis meters, even though Veranova often uses them within its processes, because of their comparatively large size, as well as the extended pipework they need. Since the requirement was flow measurement rather than mass flow, an alternative solution would also be more cost effective. 

The flow meter also had to be capable of measuring various fluids, including water-based solvents, and acids, that would flow down the same line following a flush. As some of the solvents involved have low conductivity, this would also rule out certain flow measurement technologies. Following detailed research and testing, Veranova determined that Bürkert’s FLOWave flowmeter closely achieved its key requirements.

Hygienic flow measurement and process efficiency

FLOWave has a smooth bore that is completely free of mechanical obstructions, preventing retention of any residue from media or the CIP process, ensuring optimum hygiene. The device is also constructed from 316L stainless steel, which compared to standard 316 has a lower carbon content, increasing its resistance to corrosion and improving hygiene. This was an important factor for Veranova that uses dilute acids within its process. The device achieves hygienic flow measurement thanks to SAW technology, generating surface acoustic waves that travel through the fluid. Calculating time differences of the waves proportional to the flow, FLOWave can determine real time flow rates, total flow and flow velocity. The technique also enables FLOWave to measure irrespective of fluid conductivity. 

While surface acoustic wave technology isn’t new, some pharmaceutical manufacturers can be hesitant in deviating from the mainstream type of flowmeter, so why did Veranova make the selection? “It was easily the best fit,” says Richard. “We looked at various alternative brands and technologies, but none of them could achieve a compact design to hygienically measure the flow of multiple liquid types, including low conductivity media, as effectively as FLOWave.”

With the suite now installed and commissioning almost complete, Richard says that set-up of FLOWave was simple and straightforward, and Veranova is looking to make the first batch from its new system very soon. The flowmeter also gives a flexibility to change production if needed.

Type 8098

FLOWave SAW flowmeter

Type 8098
  • No obstacles inside the measuring tube, compact, lightweight and low energy consumption
  • Conforms to hygienic requirements, CIP/SIP compatible
  • Ideal for liquids with low or no conductivity
  • Digital communication, parameterisation via Communicator, display
  • Optional: ATEX/IECEx certification, II 3G/D