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Merck
CN

21028

GC 固定相

phase Carbowax 1540, pkg of 50 g

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UNSPSC Code:
23151817
NACRES:
SB.54
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packaging

pkg of 50 g

parameter

50-175 °C temp. range

technique(s)

gas chromatography (GC): suitable

matrix active group

Carbowax 1540 phase

Quality Level

column type

packed GC

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General description

合成的产品更纯净,分子量范围窄,不含用作 GC 固定相的痕量催化剂或杂质。
GC methods are divided into two classes depending on the nature of stationary phases; gas-solid chromatography (GSC) and gas-liquid chromatography (GLC). GSC has solid adsorptive material and solute particles are removed from mobile phase by electrostatic forces. GLC has a thin layer of liquid coated or bonded on the surface of an inert particle or on the walls of the column where solute particles are retained in the liquid phase based on their partition coefficients. The primary necessity of a stationary phase is to provide sample separation sustaining phase integrity over a reasonable period of time. It should be stable for the chemical and thermal changes. Selectivity, peak symmetry, analysis time, degree of separation, peak tailing are few parameters that should be considered before choosing a stationary phase. Carbowax 1450 was also known as Carbowax 1540, it is a water-soluble solid wax with a melting temperature range of 43-46°C. It is suitable for cytological applications.

Application

Carbowax 1540 stationary phase may be used for studying the correlation between retention index and Van der Waals′ volume in homologous series of n-alcohols, n-aldehydes and esters.

仅试剂盒组分

产品编号
说明

  • Carbowax® 1540

存储类别

10 - Combustible liquids

wgk

WGK 1

flash_point_f

281.5 °F - closed cup

flash_point_c

138.6 °C - closed cup

ppe

Eyeshields, Gloves, type N95 (US)

法规信息

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分析证书(COA)

Lot/Batch Number

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Gary Gill
Stationary Phases in Gas Chromatography (2012)
Correlations between Van der Waals' volume and retention index general equation applicable to different homologous series.
Calixto, F. Saura, and A. Garcia Raso.
Chromatographia, 14, 596-598 (1981)
James P. Lodge, Jr.
Methods of Air Sampling and Analysis, 98-98 (1988)
David B. Troy, Paul Beringer
Remington: The Science and Practice of Pharmacy, 605-605 (2006)

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