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Merck

23446-U

ORBO-93 Sorbent Tube

ORBO tube I.D. × L 6 mm × 95 mm, Bed A 180 mg, Bed B 90 mg, 60/80 mesh, pkg of 25 ea

Synonym(s):

Carboxen® 1000

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25 EA

CZK 13,400.00

CZK 13,400.00


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About This Item

NACRES:
NB.24
UNSPSC Code:
12190000

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Product Name

ORBO-93 Sorbent Tube, ORBO tube I.D. × L 6 mm × 95 mm, Bed A 180 mg, Bed B 90 mg, 60/80 mesh, pkg of 25 ea

product line

ORBO

composition

Bed A, 180 mg
Bed B, 90 mg

packaging

pkg of 25 ea

technique(s)

active air sampling: suitable

ORBO tube I.D. × L

6 mm × 95 mm

particle size

60/80 mesh

application(s)

air monitoring
environmental
industrial hygiene

Quality Level

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This Item
20255-U20254-U54020-U
composition

Bed A, 180 mg , Bed B, 90 mg

composition

Bed A, 350 mg , Bed B, 175 mg

composition

Bed A, 100 mg , Bed B, 50 mg

composition

Bed A, 300 mg , Bed B, 150 mg

technique(s)

active air sampling: suitable

technique(s)

active air sampling: suitable

technique(s)

active air sampling: suitable

technique(s)

active air sampling: suitable

product line

ORBO

product line

ORBO

product line

ORBO

product line

ORBO

packaging

pkg of 25 ea

packaging

pkg of 25 ea

packaging

pkg of 25 ea

packaging

pkg of 20 ea

ORBO tube I.D. × L

6 mm × 95 mm

ORBO tube I.D. × L

-

ORBO tube I.D. × L

-

ORBO tube I.D. × L

-

particle size

60/80 mesh

particle size

20-40 mesh

particle size

20-40 mesh

particle size

20-40 mesh

General description

ORBO sorbent tubes (matrix Carboxen® 1000, ORBO tube I.D. × L 6 mm × 95 mm, Bed B 90 mg, Bed A 180 mg, 60/80 mesh) contain two beds of the same selective adsorbent separated by glass wool or foam, for gas and vapor sampling. The dual-layer or two-bed construction of the tube allows for any sample breakthrough to be captured in the smaller back-up bed.

Legal Information

Carboxen is a registered trademark of Merck KGaA, Darmstadt, Germany
ORBO is a trademark of Sigma-Aldrich Co. LLC

Storage Class

11 - Combustible Solids

wgk

nwg

flash_point_f

Not applicable

flash_point_c

Not applicable


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Filippo Maggi et al.
Chemistry & biodiversity, 8(1), 95-114 (2011-01-25)
Headspace solid-phase microextraction (HS-SPME) coupled with GC/FID and GC/MS was applied for the first time in the analysis of the volatile fraction of an Ephedra species. Notably, six Italian populations (Marche, Abruzzo, and Sardinia) of Ephedra nebrodensis subsp. nebrodensis, covering
Frank Sporkert et al.
Journal of chromatography. B, Analytical technologies in the biomedical and life sciences, 772(1), 45-51 (2002-05-23)
A new and in part automated headspace solid-phase microextraction method for quantitative determination of the highly toxic rodenticide fluoroacetic acid (FAA) in serum and other biological samples has been developed. FAA and deuterated acetic acid (internal standard) were extracted from
Dawn M Chapman et al.
Journal of agricultural and food chemistry, 52(17), 5431-5435 (2004-08-19)
A rapid and automated solid phase microextraction (SPME) stable isotope dilution gas chromatography/mass spectrometry (GC-MS) method for 2-methoxy-3-isobutylpyrazine (MIBP) quantification in red wine was developed. Wines with 30% (w/v) NaCl and 2-methoxy-(2)H(3)-3-isobutylpyrazine internal standard were sampled with a 2 cm
Sebastien Allard et al.
Journal of chromatography. A, 1238, 15-21 (2012-04-13)
Trihalomethanes are predominantly formed during disinfection of water via reactions of the oxidant with natural organic matter. Even though chlorinated and brominated trihalomethanes are the most widespread organic contaminants in drinking water, when iodide is present in raw water iodinated
Jacek A Koziel et al.
Journal of the Air & Waste Management Association (1995), 55(8), 1147-1157 (2005-09-29)
Odorous gases associated with livestock operations are complex mixtures of hundreds if not thousands of compounds. Research is needed to know how best to sample and analyze these compounds. The main objective of this research was to compare recoveries of

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