UNITY-xr by Markes International Ltd

5.0
/
5.0
  |  2 reviews

Versatile single-tube analytical thermal desorption unit for GC or GC–MS


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UNITY-xr
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Average Rating: 5.0
2 Scientists have reviewed this product

5 out of 5
Ease of use
5 out of 5
After sales service
5 out of 5
Value for money


  • Status:

    Reviewer
  • Member since: 2020

  • Organization: University of Lagos Central Research Lab



  • Ease of use
    5 out of 5
    After sales service
    5 out of 5
    Value for money
    5 out of 5
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Simply perfect and reliable
Rating: 5.0

  • Application Area: Analyze VOCs and PAMS in whole air in canisters

"As an Air Quality Analyst I find the UNITY-xr Thermal Desorber most suitable for the Whole Air in canisters analysis. The cryogen free setup works effectively to preconcentrate the sample air stream in GCMS giving results in trace ppb/ppt levels. The UNITY-xr is most reliable for accurate and quality data for VOCs, OVOCs, VVOCs in air."

Review date: 11 Feb 2022 | UNITY-xr
  • Status:

    Reviewer

  • Member since: 2016

  • Organization: city of Houston



  • Ease of use
    5 out of 5
    After sales service
    5 out of 5
    Value for money
    5 out of 5
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Very good
Rating: 5.0

  • Application Area:Analyze ambient air

"Good service, reliable. A major drawback is that the instrument needs to use air to purge the moisture in the Unity."

Review date: 03 Aug 2016 | UNITY-xr

 

UNITY-xr is the most versatile thermal desorber for the analysis of VOCs and SVOCs in air and materials.

 

Features:

  • Compatible with all major makes of GC and GC–MS
  • Quantitative recovery of C2 to C44, including reactive and thermally labile species, from percent to sub-ppt concentrations
  • Quantitative re-collection of split flows for easy method validation and repeat analysis of critical samples
  • Electrical cooling eliminates the need for liquid cryogen
  • Combines with ULTRA-xr for 100-tube automation, Air Server-xr for online analysis, and CIA Advantage for canister/bag samples
  • Re-collection of all split flows to overcome the ‘one-shot’ limitation of older TD systems and compliance with international standard methods