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About This Item
NACRES:
NB.24
UNSPSC Code:
41104008
material
stainless steel TD tube
agency
EPA TO-2
description
Sealed with TDS³ Storage Container
product line
Carbosieve
feature
preconditioned
packaging
pkg of 10 ea
technique(s)
active air sampling: suitable
O.D. × L
1/4 in. × 3 1/2 in.
matrix
Carbosieve S-III carbon molecular sieve
application(s)
air monitoring
environmental
industrial hygiene
compatibility
for use with PerkinElmer, Markes, DANI, OI Analytical, and Shimadzu Instruments
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R A Borders et al.
American Industrial Hygiene Association journal, 47(3), 158-163 (1986-03-01)
Thermal desorption is a more sensitive alternative to solvent desorption for the determination of acrylonitrile in air. A dual-bed collection tube (Tenax GC and Carbosieve B) was developed for collecting and concentrating low levels of acrylonitrile. Two thermal desorption techniques
Olga A Pogodina et al.
Analytical chemistry, 76(2), 464-468 (2004-01-15)
The determination of organic trace gases in the ambient environment at the lower ppb level is demonstrated based on a novel technique combining sorption tube sampling on Molsieve and Carbosieve S-III, thermal desorption, and detection of the trace analyte by
J Masuda et al.
Water science and technology : a journal of the International Association on Water Pollution Research, 50(4), 121-124 (2004-10-16)
The sensory testing method applied under Japanese law to measure odor concentration has a lower detection limit of 10 in the specified Odor Index. To measure odor below the limit, a condensing procedure using solid sorbents (Tenax-TA, Unicarbon B and
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
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
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