20361
Carbotrap® 201
for use with Dynatherm™ 850/890 TDU, I.D. × O.D. × L 1 mm × 6 mm × 4.5 in., glass TD tube (focusing tube)
Synonym(s):
Carbotrap® 201 Dynatherm™ 890, 850
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About This Item
UNSPSC Code:
41104008
material
glass TD tube (focusing tube)
packaging
pkg of 1 ea
I.D. × O.D. × L
1 mm × 6 mm × 4.5 in.
matrix
Carbotrap® 201
application(s)
environmental
industrial hygiene
compatibility
for use with Dynatherm™ 850/890 TDU
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Application
focusing semivolatile to very volatile compounds
Legal Information
Carbotrap is a registered trademark of Merck KGaA, Darmstadt, Germany
Dynatherm is a trademark of CDS Analytical
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Trine Salomón et al.
Cell chemical biology, 24(8), 935-943 (2017-08-19)
The α-oxoaldehyde methylglyoxal is a ubiquitous and highly reactive metabolite known to be involved in aging- and diabetes-related diseases. If not detoxified by the endogenous glyoxalase system, it exerts its detrimental effects primarily by reacting with biopolymers such as DNA
S Ghittori et al.
Giornale italiano di medicina del lavoro, 10(4-5), 201-205 (1988-07-01)
A laboratory study, using generated atmosphere containing 0.14/23.3 mg/m3 of Benzene, was conducted to adapt an existing industrial hygiene monitoring method for measuring low concentrations of Benzene. This method was developed to determine concentrations of Benzene in the ambient air
S Ghittori et al.
Journal of toxicology and environmental health, 38(3), 233-243 (1993-03-01)
Benzene concentrations in urine samples (Cu, ng/L) from 110 workers exposed to benzene in chemical plants and gasoline pumps were determined by injecting urine supernate into a gas chromatograph. The urine was saturated with anhydrous N2SO4 to facilitate the passage
M L Fiorentino et al.
La Medicina del lavoro, 81(2), 107-118 (1990-03-01)
Benzene is a widely diffuse solvent (atmosphere, cigarette smoke, some foods); in the industrial environment benzene is currently present at concentrations of ppm. A valid method of biological monitoring that is easy to perform is needed for assessing occupational and
Yifei Sun et al.
Journal of environmental sciences (China), 25(1), 213-219 (2013-04-17)
A group parameter approach using "total organic halogen" is effective for monitoring gaseous organic halogen compounds, including fluorine, chlorine, and bromine compounds, generated from combustion. We described the use of barrier-discharge radiofrequency-helium-plasma/atomic emission spectrometry, for the detection of semi- and
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