Air Liquide Australia Limited

Site

Specialty Gases

Accreditation No.

1508

Site No.

1501

Date of Accreditation

12 Feb 1981

Address

40 Bunnett Street
Sunshine North, VIC 3020
Australia

airliquide.com

Contact

Mr Florian Lecarpentier P: +61 0466426969

Availability

Services conditionally available to external clients

Scope of Accreditation

Specialty Gases

ISO/IEC 17025 (2017)

Calibration

  • The uncertainty of measurement is reported as an expanded uncertainty having a level of confidence of 95% unless stated otherwise
Service Product Determinant Technique Procedure Limitations
Chemical metrology - Characterisation of gases Gas blends Concentration Comparison measurement by instrumentation

Capability

Reactive gases2% relative for concentrations ≥ 10 μmol/mol 
5% relative for concentrations ≤ 10 μmol/mol
Non reactive gases1% relative

ISO/IEC 17025 (2017)

Materials

Service Product Determinant Technique Procedure Limitations
Analysis for chemical composition of gas and aerosols Diving gases; Medical gases Carbon dioxide (CO2) Nondispersive infrared (NDIR)

in-house method 9

0.5% to 100% 

Oxygen Zirconia cell

in-house method 10

1 μmol/mol to 20 cmol/mol

Oxygen GC-TCD

in-house methods 2, 6 and 7

100 μmol/mol to 100%

Helium GC-TCD

in-house methods 6 and 7

20 μmol/mol to 100%

Carbon dioxide (CO2) GC-TCD

in-house methods 6 and 7

100 μmol/mol to 100%

Oxygen Paramagnetic cell

in-house method 8

0.1% to 100%

Industrial gas supplies excluding fuels and calibration mixtures Carbon dioxide (CO2) GC-TCD

in-house methods 6 and 7

100 μmol/mol to 100%

Nitric oxide Fourier transform infrared spectroscopy (FTIR)

in-house method 15

5 μmol/mol to 5000 μmol/mol

Carbon monoxide Fourier transform infrared spectroscopy (FTIR)

in-house method 15

5 μmol/mol to 5000 μmol/mol

Carbon dioxide (CO2) Nondispersive infrared (NDIR)

in-house method 9

0.5% to 100% 

Nitrogen GC-HID

in-house method 1

5 μmol/mol to 0.1 %

Sulfur dioxide GC-TCD

in-house method 7

100 μmol/mol to 100%

Hydrogen GC-TCD

in-house method 6 and 7

50 μmol/mol to 100 %

Carbon dioxide (CO2) Fourier transform infrared spectroscopy (FTIR)

in-house method 15

1 μmol/mol to 5000 μmol/mol

Sulfur dioxide Fourier transform infrared spectroscopy (FTIR)

in-house method 15

1 μmol/mol to 5000 μmol/mol

Oxygen GC-HID

in-house method 1

5 μmol/mol to 0.1 %

Oxygen GC-TCD

in-house method 2, 6 and 7

100 μmol/mol to 100%

Oxygen Paramagnetic cell

in-house method 8

0.1% to 100%

Methane Fourier transform infrared spectroscopy (FTIR)

in-house method 15

1 μmol/mol to 2500 μmol/mol

Sulfur dioxide GC-HID

in-house method 1

5 μmol/mol to 1000 μmol/mol

Dinitrogen monoxide (nitrous oxide) GC-HID

in-house method 1

5 μmol/mol to 0.1%

Nitrogen GC-TCD

in-house method 2, 6 and 7

50 μmol/mol to 100 %

Hydrocarbons: C1-C9 GC-FID

in-house method 4

1 μmol to 10%

Carbon dioxide (CO2) GC-FID

in-house method 5

0.5 μmol/mol to 10,000 μmol/mol

Carbon monoxide GC-FID

in-house method 5

0.5 μmol/mol to 10,000 μmol/mol

Carbon monoxide GC-TCD

in-house methods 2, 6 and 7

50 μmol/mol to 100 %

Hydrocarbons: C1-C9 GC-TCD

in-house methods 6 and 7

1000 μmol to 100%

Argon GC-HID

in-house method 2

100 μmol/mol to 100 %

Nitrogen dioxide Fourier transform infrared spectroscopy (FTIR)

in-house method 15

1 μmol/mol to 2500 μmol/mol

Oxygen Zirconia cell

in-house method 10

1 μmol/mol to 20 cmol/mol

Neon GC-TCD

in-house method 6 and 7

100 μmol/mol to 100%

Dinitrogen monoxide (nitrous oxide) Fourier transform infrared spectroscopy (FTIR)

in-house method 15

5 μmol/mol to 2.5 mmol/mol

Helium GC-TCD

in-house methods 6 and 7

50 μmol/mol to 100 %

Hydrogen sulfide GC-HID

in-house method 1

5 μmol/mol to 1000 μmol/mol

Ethanol GC-FID

in-house method 4

50 μmol/mol to 500 μmol/mol

Dinitrogen monoxide (nitrous oxide) GC-TCD

in-house method 2

0.1% to 100%

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