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Gas chromatography thermal desorber TD100-xr™
high-throughput

Gas chromatography thermal desorber - TD100-xr™  - Markes International - high-throughput
Gas chromatography thermal desorber - TD100-xr™  - Markes International - high-throughput
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Gas chromatography thermal desorber - TD100-xr™  - Markes International - high-throughput - image - 3
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Characteristics

Other characteristics
for gas chromatography, high-throughput

Description

TD100-xr™ is an automated thermal desorption system for the rapid and unattended processing of up to 100 sorbent tubes in a single sequence. It’s the perfect thermal desorption unit for high-throughput analytical laboratories needing to process large numbers of tube-based samples automatically. TD100-xr is also available with our award winning Multi-Gas functionality, independently certified for operation with a choice of 3 carrier gases: helium, nitrogen and hydrogen. Hydrogen carrier gas offers fast, cost-effective analyses and protection against future helium shortages. Market-leading advantages Eliminate helium dependency – Use of hydrogen, nitrogen or helium as a carrier gas for your automated sorbent tube analysis with our Multi-Gas TD100-xr Sample Security – With quantitative sample re-collection for repeat analysis, TD100-xr offers simple method/data validation and overcomes the ‘one-shot’ limitation of historical systems. Additionally, tubes remain capped at all times, avoiding sample contamination and/or analyte loss. Cost saving – The electrically-cooled focusing trap eliminates the expense and hassle of liquid cryogen and prevents risk of ice blockages thus optimising uptime. Choosing to operate with hydrogen carrier gas with a Multi-Gas thermal desorber will also eliminate dependency on helium and its rising cost. Time saving – Capacity for up to 100 tubes and the ability to use overlap mode allow you to maximise productivity (for example, by running samples unattended all weekend). Broadest available tube analyte and concentration range – TD100-xr is compatible with analysis of VOCs from C3 to C44, including reactive and thermally labile species.

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