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Titlebook: Analytical Reaction Gas Chromatography; Viktor G. Berezkin Book 1968 Plenum Press 1968 chemical reaction.chromatography.development

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發(fā)表于 2025-3-21 18:23:19 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱(chēng)Analytical Reaction Gas Chromatography
影響因子2023Viktor G. Berezkin
視頻videohttp://file.papertrans.cn/157/156655/156655.mp4
圖書(shū)封面Titlebook: Analytical Reaction Gas Chromatography;  Viktor G. Berezkin Book 1968 Plenum Press 1968 chemical reaction.chromatography.development
影響因子The most universal and effective method for the analysis of complex multicomponent mixtures of volatile substances is gas chromatography. However, there are a number of limitations asso- ciated with the classical variation of this technique which retard its development and the further expansion of its application: 1) the identification of the components of a complex mix- ture of unknown composition is in itself a complex and difficult problem, unless the homologous series of the component to be identified is known; 2) the overlapping of chromatographic peaks for several compounds makes it difficult, and in a number of cases impossible, to carry out qualitative and quantitative analysis of these components, and leads to the necessity of using several columns of different polarities or to the use of columns with very high efficiency; 3) the direct analysis of unstable and nonvolatile compounds is impossible; 4) the difficulty of quantitative chromatographic analysis using thermal conductivity detectors increases with the necessity of determining individual response (calibration) factors; the insensitivity of the flame ionization detector to a number of substances (inorganic gases) le
Pindex Book 1968
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Some Problems in the Theory of Analytical Reaction Gas Chromatography,cesses of analytical reaction chromatography are characterized not only by the usual parameters for chromatographic separation (number of theoretical plates, retention values, etc.), but also by the parameters of the chemical reaction (rate constant, activation energy, reaction orders, etc.).
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Analysis of Impurities,s for and from industry has become the most important application of analytical chemistry [1]. Gas chromatography is a popular tool in these analyses, giving in a single experiment the concentrations of many impurities in a sample.
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J?rg Dittrich,Peter Mertens,Andreas Hufgard elements are used — chemical reactors in which all or some of the sample components undergo certain chemical conversions. The use of such elements results in new chromatographic systems which should be studied in greater detail since they represent important parts of gas chromatography. The great v
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