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Carbosieve SIII Thermal Desorption Tube

greener alternative

stainless steel, O.D. x I.D. x L 6 mm × 4 mm × 7 in., preconditioned, pkg of 1 ea

Sinónimos:

Carbosieve S-III SS TD TUBE, 7 IN., FOR GERSTEL

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About This Item

Código UNSPSC:
41104008
NACRES:
NB.24

Nombre del producto

Carbosieve SIII, stainless steel TD tube, O.D. × I.D. × L 6 mm × 4 mm × 7 in., preconditioned, pkg of 1 ea

Materiales

stainless steel TD tube

Agency

EPA TO-2

descripción

Sealed with TDS³ Storage Container

Línea del producto

Carbosieve

Características

preconditioned

envase

pkg of 1 ea

características de los productos alternativos más sostenibles

Waste Prevention
Safer Solvents and Auxiliaries
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

técnicas

active air sampling: suitable

D.E. × D.I. × L

6 mm × 4 mm × 7 in.

Matriz

Carbosieve S-III carbon molecular sieve (CMS)

aplicaciones

air monitoring
environmental
industrial hygiene

compatibilidad

for use with Gerstel® TDS A & TDS 2

categoría alternativa más sostenible

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Descripción general

Carbosieve SIII is a prepacked stainless steel sampling tube, fully compatible with the Gerstel TDS and TDSA instruments. It is thermally conditioned and batch tested for backpressure and background.
We are committed to bringing you greener alternative products, which adhere to one or more of The 12 Principles of Greener Chemistry. Thermal desorption tubes are reusable at least 50 to 100 times, and reduces the usage of accessories like transfer vials, caps, and pipette tips, thus aligns with “Waste Prevention”. Also, these tubes eliminate the usage of toxic solvents like CS2 to extract the VOCs of interest, and thus aligns with “Safer Solvents and Auxiliaries” principle. Click here for more information.

Información legal

GERSTEL is a registered trademark of Gerstel GmbH & Co. KG

Código de clase de almacenamiento

11 - Combustible Solids

Punto de inflamabilidad (°F)

Not applicable

Punto de inflamabilidad (°C)

Not applicable


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Yannick Juillet et al.
The Analyst, 130(6), 977-982 (2005-05-25)
Among the chemicals belonging to the schedules of the Chemical Weapons Convention (CWC), sampling and analysis of highly volatile compounds such as hydrogen cyanide (HCN) require special consideration. The latter is present in numerous old chemical weapons that are stockpiled
C Y Peng et al.
Journal of environmental monitoring : JEM, 2(4), 313-324 (2001-03-16)
Air sampling, using sorbents, thermal desorption and gas chromatography, is a versatile method for identifying and quantifying trace levels of volatile organic compounds (VOCs). Thermal desorption can provide high sensitivity, appropropriate choices of sorbents and method parameters can accommodate a
D R Nelson et al.
Applied microbiology, 28(2), 258-261 (1974-08-01)
A gas chromatographic procedure for the simultaneous analysis of (14)C-labeled and unlabeled metabolic gases from microbial methanogenic systems is described. H(2), CH(4), and CO(2) were separated within 2.5 min on a Carbosieve B column and were detected by thermal conductivity.
Juliane Hollender et al.
Journal of chromatography. A, 962(1-2), 175-181 (2002-08-30)
A simple method using active trapping on adsorbents and thermal desorption followed by GC-MS analysis was developed for the indoor air monitoring of monoterpenes. The study was carried out using a dynamically generated atmosphere consisting of 11 monoterpenes: camphene, camphor
Piotr Kowalczyk et al.
Environmental science & technology, 42(8), 2931-2936 (2008-05-24)
Light membranes composed of single-walled carbon nanotubes (SWNTs) can serve as efficient nanoscale vessels for encapsulation of tetrafluoromethane at 300 K and operating external pressure of 1 bar. We use grand canonical Monte Carlo simulation for modeling of CF4 encapsulation

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