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Merck

SU860099

Supelco

Headspace-Gefäß, Schraubdeckel, abgerundeter Boden (nur Gefäß)

volume 10 mL, clear glass vial, thread for 18, O.D. × H 22.5 mm × 46 mm, pkg of 100 ea

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About This Item

UNSPSC-Code:
41122001
NACRES:
NB.11

Materialien

clear glass vial
round bottom

Leistungsmerkmale

closure type screw top vial

Verpackung

pkg of 100 ea

AD × H

22.5 mm × 46 mm

Volumen

10 mL

Fitting

thread for 18

Kompatibilität

for use with CTC HTC PAL
for use with CTC PAL (Varian, Gerstel, Atas, Shimadzu)

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Allgemeine Beschreibung

Für diese Fläschchen ist eine spezielle Kappe mit einem 18-mm-Gewinde erforderlich. Die standardmäßigen 18-400 Gewindekappen passen hier nicht. Die Bestellnummern der für diese Fläschchen erhältlichen Kappen sind SU860101 (mit PTFE/Silikon, 1,3 mm dick), SU860102 (mit PTFE/Butyl, 1,6 mm dick) und SU860103 (mit PTFE/Silikon, 1,5 mm dick). Diese Kappen sind aus Edelstahl gefertigt und magnetisch.

Anwendung

Headspace vial may be used for the following:
  • In the determination of partition coefficient of ethyl acetate in water at 0° C from independent analyses of the total amount of ethyl acetate present in the vial, by automatic equilibrium headspace gas chromatography and vapor phase calibration (VPC).
  • It may be used in the analysis of volatile polar residual solvents present in pharmaceutical products, during development and optimisation of headspace SPME method by GC-MS.
  • It may also be used in the isotopic analysis of 18O in the leaf water of C3 and C4 grasses, during establishing a grassland signature in veins, as it was found that grasses with different photosynthetic pathway have different interveinal differences.
  • It may also find application, in investigating metabolism by Pseudomonas fluorescens of volatile haloaliphatic hydrocarbons like 1,2-dichloroethane and 1,2-dichloropropane, which are some of the major contaminants of underground aquifers.

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Analysenzertifikate (COA)

Lot/Batch Number

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Kunden haben sich ebenfalls angesehen

Determination of partition coefficients by automatic equilibrium headspace gas chromatography by vapor phase calibration.
Welter KBC and Bichler C.
Chromatographia, 34 (5-8), 235-240 (1992)
B R Helliker et al.
Proceedings of the National Academy of Sciences of the United States of America, 97(14), 7894-7898 (2000-07-08)
We show that 18O evaporative enrichment of bulk leaf water in grass species can be significantly more enriched than predicted by the Craig-Gordon model, with C4 grasses considerably more enriched than C3 grasses. Our results suggest that the unanticipated 18O
P A Vandenbergh et al.
Applied and environmental microbiology, 54(10), 2578-2579 (1988-10-01)
A Pseudomonas fluorescens strain designated PFL12 was isolated from soil and water that were contaminated with various chloroaliphatic hydrocarbons. The isolate was able to metabolize 1,2-dichloroethane, 1,1,2-trichloroethane, 1,2-dichloropropane, 2,2-dichloropropane, and trichloroethylene.
C C Camarasu
Journal of pharmaceutical and biomedical analysis, 23(1), 197-210 (2000-07-18)
A solid-phase microextraction (SPME) method has been developed and optimized for the polar residual solvent determination in pharmaceutical products. Five different polymer-coated fibers were investigated and the Carboxen/polydimethylsiloxane was found to be the most sensitive for all components. Two Headspace
Alexander A Aksenov et al.
Journal of chromatography. B, Analytical technologies in the biomedical and life sciences, 1061-1062, 17-25 (2017-07-12)
Breath analysis has been gaining popularity as a non-invasive technique that is amenable to a broad range of medical uses. One of the persistent problems hampering the wide application of the breath analysis method is measurement variability of metabolite abundances

Protokolle

-ß-Farnesene; Humulene; γ-Muurolene; γ-Selinene; Geranyl isobutyrate; ß-Selinene; a-Muurolene; a-Selinene; γ-Cadinene; Calamenene; Δ-Cadinene; Caryophyllene oxide; Humulene oxide

-ß-Farnesene; Humulene; Alloaromadendrene; a-Curcumene; ß-Selinene; a-Selinene; ß-Bisobolene; a-Bulnesene; Selina-3,7(11)-diene; Caryophyllene oxide ; Humulene oxide; Caryophylla-3,8(13)-dien-5-ol A

High-resolution profiling of terpenes and terpenoids to identify fragrance compounds and distinguish hops and cannabis varieties using SPME-GC/MS.

Terpenes are present in essential oils derived from plants and often impart characteristic aromas to the plant or its oil. The SPME is a convenient, efficient, and easy to automate sample preparation technology for analyzing the terpene/terpenoid profile of these plant materials.

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Verwandter Inhalt

GC/MS/MS Analysis of Bisphenol A (BPA) in a Fruit Flavored Energy Drink on the SLB-PAHms Column After SPME Using an Overcoated SPME Fiber

Unser Team von Wissenschaftlern verfügt über Erfahrung in allen Forschungsbereichen einschließlich Life Science, Materialwissenschaften, chemischer Synthese, Chromatographie, Analytik und vielen mehr..

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