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Michael Dunn

  Organisation : Newcastle University Publish :19th September 2016

Background

With several laboratory grade nitrogen gas generators already installed with service support contracts in place, the Medical Toxicology Centre at Newcastle University has been a long-standing and valued customer of Peak Scientific. So, it was no surprise that when the university made the decision to refurbish the centre, aiming to transform it into a state of the art facility with new laboratories and offices, that it was Peak they approached and chose to provide the total nitrogen gas generation solution for the whole building.

Project

The eventual project was extensive and involved the installation & supply of a 300 Litre per minute nitrogen gas generator, an oil-free air compressor and the construction of a new gas ring main, around and throughout the facility building. Given the fact that the main generation equipment was required to be housed in an underground basement, project delivery was no mean feat.  Peak’s team of professional engineers undertook the task with great enthusiasm, assembling the compressor system & all other components as per project specifications – getting the large nitrogen generator in place was rather challenging in itself and was required to be expertly lowered by a telescopic crane. Each step of the project had to be managed with great care & precision.

Solution

The new system is now in place and the Peak nitrogen gas generator is supplying all of the LC-MS instruments in the laboratories on the 1st floor of the building.  When asked of his experience of working with Peak Gas Generation, Dr Michael Dunn, Mass Spectrometrist at the Newcastly university Medical Toxicology Centre, had the following to say:

“We have worked with Peak for several years. We know how good their generators are and have always been delighted with the service & support they have provided us. When we decided to go for one large system to supply the whole building, Peak was always going to be our preferred supplier.”

Dr Michael Dunn

Mass Spectrometrist, Newcastle University Medical Toxicology Centre

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*Figures for illustration purposes only & may vary based on specific requirements. Investment cost amortized over typical generator lifespan.

Liquid/Bottled N2

= value EURO

  • 120 000
  • 100 000
  • 80 000
  • 60 000
  • 40 000
  • 20 000

Typical On-site N2 Generator*

= value EURO

  • 120 000
  • 100 000
  • 80 000
  • 60 000
  • 40 000
  • 20 000

i-Flow Generator*

= value EURO

  • 120 000
  • 100 000
  • 80 000
  • 60 000
  • 40 000
  • 20 000

Liquid/Bottled N2

= value EURO

  • Cost of liquid/bottled N2 :value
  • Transport cost : value
  • Lease equipment : value
  • energy cost : value
  • Investment cost : value
  • Service cost : value
  • Environmental Tax : value
  • Total yearly cost : value

Typical On-site N2 Generator*

= value EURO

  • Cost of liquid/bottled N2 :value
  • Transport cost : value
  • Lease equipment : value
  • energy cost : value
  • Investment cost : value
  • Service cost : value
  • Environmental Tax : value
  • Total yearly cost : value

i-Flow Generator*

= value EURO

  • Cost of liquid/bottled N2 :value
  • Transport cost : value
  • Lease equipment : value
  • energy cost : value
  • Investment cost : value
  • Service cost : value
  • Environmental Tax : value
  • Total yearly cost : value
  • liquid/bottled N2Cost of liquid/bottled N2
  • InvestmentInvestment cost
  • TransportTransport cost
  • ServiceService cost
  • LeaseLease equipment
  • EnvironmentalEnvironmental Tax
  • EnergyEnergy cost