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Static headspace analysis

See alsa Distillation. Enzymes Overview Enzyme-Based Electrodes. Food and Nutritional Analysis Antioxidants and Preservatives Alcoholic Beverages. Forensic Sciences Alcohol in Body Fluids Blood Analysis. Headspace Analysis Static Purge and Trap. Infrared Spectroscopy Overview. Optical Spectroscopy Refractometry and Reflectometry. Quality Assurance Quality Control. Sensors Amperometric Oxygen Sensors. [Pg.1168]

See also-. Gas Chromatography Environmental Applications. Headspace Analysis Static. Water Analysis ... [Pg.2058]

See also Activation Analysis Neutron Activation. Atomic Absorption Spectrometry Principles and Instrumentation. Atomic Emission Spectrometry Principles and Instrumentation. Chromatography Overview Principles. Gas Chromatography Pyrolysis Mass Spectrometry. Headspace Analysis Static Purge and Trap. Infrared Spectroscopy Near-Infrared Industrial Applications. Liquid Chromatography Normal Phase Reversed Phase Size-Exclusion. Microscopy Techniques Scanning Electron Microscopy. Polymers Natural Rubber Synthetic. Process Analysis Chromatography. Sample Dissolution for Elemental Analysis Dry... [Pg.3732]

See also Extraction Solvent Extraction Principles Solid-Phase Extraction. Fluorescence Environmental Applications. Gas Chromatography Mass Spectrometry Environmental Applications. Gravimetry. Headspace Analysis Static Purge and Trap. Immunoassays Overview. Infrared Spectroscopy Overview. Liquid Chromatography Overview. Sampling Theory. [Pg.5092]

Blood Thermally decarboxylated subjected to static headspace analysis GC/ECD (for metabolite trichloroacetic acid) 2 ppb 101-109 Ziglio et al. 1984... [Pg.230]

Sample in sealed vial subjected to static headspace analysis... [Pg.231]

The key advantage of this headspace method, compared to static headspace analysis, is the sensitivity obtained. While static headspace shows the status at equilibrium and can measure thermodynamic constants, purge-and-trap or dynamic headspace can measure the kinetics of... [Pg.1008]

Static headspace analysis/AEDA (SHA) of two cold-pressed olive oils T561... [Pg.412]

Gan et al. [330] have reviewed the application of static headspace analysis to the determination of fumigants such as methyl bromide in soil. [Pg.132]

Headspace Extraction Headspace (HS) extraction is a well-known method of sample preparation and is frequently used in many laboratories, especially in industrial applications. It involves a partitioning equilibrium between the gas phase and a sample (liquid or solid). In this technique, an aliquot of gas phase is sampled into GC. There are two types of analysis, static and d3Uiamic. In the static version, when the equilibrium is reached, the gas phase is injected into GC. In dynamic analysis, the volatiles are exhaustively extracted by the stream of gas. However, matrix effects result in decreased sensitivity for certain substances, especially polar and hydrophilic samples. A comprehensive book describing HS techniques was presented by Kolb [31]. [Pg.408]

Technical guide. A technical guide for static headspace analysis using GC, Restek, Bellefonte, PA, USA, Application note (2000)... [Pg.424]

The basic set-up for headspace analysis comprises an HS element — the characteristics of which depend on the particular mode used for pretreatment and a gas chromatograph or, less often, an alternative detector for measurement. Static and dynamic headspace (purge and trap included) differ in the type of equipment required multiple headspace uses the same automated device as static headspace. [Pg.93]

Soil spiked with trichloroethylene and toluene was analysed using a gas chromatograph equipped with a PT concentrator that was found to be replaceable by a headspace unit in order to simplify the overall assembly. The headspace analysis of soil samples was found to be restricted by incomplete desorption of the contaminants in soil-water mixtures this shortcoming, however, was effectively overcome by the addition of methanol. Henry s law constants for volatile organics in methanol must previously be determined if the method is to be applied to soils [142]. A comparison of the performance of static and dynamic (PT) headspace modes in the determination of nine VOCs in five different soils revealed poor PT recoveries in relation to those of static headspace (which ranged from 68 to 88%) the latter, however, required longer development times [143],... [Pg.126]

Dills RL. Kent SD, Checkoway H. et al. 1991. Quantification of volatile solvents in blood by static headspace analysis. Talanta 38 365-374. [Pg.198]

Static headspace analysis has been used for liquid samples in closed containers after equilibration between the liquid and gas phases. [Pg.53]

The detection of low level concentrations of volatile petroleum hydrocarbons in either soil or water can be performed by static headspace analysis. In this technique, the gas phase in thermodynamic equilibrium with the matrix is analysed. The soil is placed in a headspace vial to which water and soluble salts such as sodium chloride are added to aid the transfer of hydrocarbons into the headspace. Internal standards and surrogate spikes can also be introduced. The vial is heated and an aliquot of the static headspace vapour is directly injected onto the column of the gas chromatograph. The advantages of this technique for volatiles such as gasoline range organics are less sample handling which minimises losses, no introduction of solvents which can interfere with the compounds of interest (MTBE), and the technique can be easily automated. [Pg.144]


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See also in sourсe #XX -- [ Pg.818 ]




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