Try before you buy
Where any bespoke requests are being made, calculations will need to be made to assess the impact on containment performance – especially if airflow along the plane of the sash is likely to be disrupted. This may require the development of a fluid dynamics model to test what is possible.
However, before placing an order that may be worth hundreds of thousands, it is sensible to develop an initial 3D CAD model and then create a hard prototype so a full ergonomic review can be performed. This is not standard practice across the industry but the ability to experiment with these mock-ups is invaluable – and can make all the difference for operators. If a sash needs to be narrower or a tap moved lower, this prototype will reveal that requirement before it’s too late.
Conduct a site review
The environment around a fume cupboard can make a big difference to the performance of the unit. An over or under supply of air can severely impede the unit’s containment performance. This can be an issue when the room where the fume cupboard will sit is too small or where supply air diffusers are positioned too close to the unit.
To prevent environmental factors interfering with performance, a site review will be necessary to assess the heating, ventilation and air conditioning (HVAC) designs and the dimensions of the room. Be sure that this review is conducted by someone who is qualified to assess HVAC designs and understands the potential implications for fume cupboards. In our experience, this is one of the most common reasons for a unit not performing after having been commissioned.
Test thoroughly
Before going into operation, customised and bespoke fume cupboards will need to pass the appropriate tests. Engineers will need to demonstrate that their manufacturer has met the commissioning, qualification and validation (CQV) requirements – and should expect documentation and equipment databooks that show compliance.
A fume cupboard will also need to pass a factory acceptance test (FAT) to ensure the equipment works as intended and meets all specifications, as laid out in the URS. This will also include a site acceptance test (SAT), which will prove that the fume cupboard operates as expected in situ (e.g. it is not impacted by local environment factors, as mentioned above) and it is safe for operators to use.
Creating a best in class lab
It’s not unusual to see engineers trying to shoehorn off-the-shelf fume cupboards into industrial environments. They might be fortunate and find a standard unit that will do the job – but this is not something we would generally recommend.
If laboratories are looking to gain a competitive edge and attract top scientists with the best possible working environment, the need to customise is inevitable. Engineers should not be afraid to push boundaries and set high expectations for the performance of their fume cupboards. Creative solutions that are both fit for purpose and compliant are now achievable thanks to technological innovation.
This article originally appeared in Lab News in August 2022. You can read it here >