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Titlebook: Analysis with Supercritical Fluids: Extraction and Chromatography; Bernd Wenclawiak Book 1992 Springer-Verlag Berlin Heidelberg 1992 Analy

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期刊全称Analysis with Supercritical Fluids: Extraction and Chromatography
影响因子2023Bernd Wenclawiak
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图书封面Titlebook: Analysis with Supercritical Fluids: Extraction and Chromatography;  Bernd Wenclawiak Book 1992 Springer-Verlag Berlin Heidelberg 1992 Analy
影响因子The use of supercritical fluids in analytical chemistry is still grow­ ing. More and more analysts are discovering the favorable advan­ tages for a number of applications. Especially supercritical fluid extraction (SFE) has attracted a lot of interest in recent years due to its simplicity. Supercritical fluid chromatography (SFC) has become better established and the development of this technique has been accelerated by the many applications with capillary col­ umns which have been published in the literature. At first SFC equipment was based on instruments commonly used for liquid chromatography, and the first commercial in­ struments were derived from this technology. However, capillary columns can be much more easily interfaced to gas chromatogra­ phy equipment especially to the detectors commonly used for Oc. Many stationary phases both for packed micro columns and capillary columns have been designed for SFC purposes extending this technology to LC and OC. The most common fluid applied in SFC and SFE is carbon dioxide. The advantages of supercritical CO , such as having dif­ 2 fusivity like a gas and solvating power depending on temperature and pressure, are also valid for oth
Pindex Book 1992
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978-3-642-77476-8Springer-Verlag Berlin Heidelberg 1992
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Care for Disaster Risk Reductionng two decades did not encourage many researchers to investigate this technique [2–4]. It was not until 1981 after fused silica capillary column SFC was introduced that the number of reports steadily increased, levelling off in recent years [5].
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Risk and Comprehensive Planning,methods, gas chromatography (GC) and liquid chromatography (LC), is the larger number of gradients which may be useful in SFC. Gradients of temperature, pressure, density, linear velocity, and of the composition of the mobile phase, all greatly influence the chromatographic separation. So far, most
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Intergovernmental Implementationquid chromatography (HPLC) [1]. This catalyzed the early development of practical applications of packed column SFC and provided a variety of stationary phase chemistries to optimize individual separations with the limited selection of available supercritical fluids with favorable critical constants
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