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I. 應用氣相層析質譜儀於大氣中揮發性有機物之量測; II. 綠色萃取技術於傳統中草藥(大黃及蛇苺)有效成分分離及應用

吳倍任-2008-01-01
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TL;DRAbstract

This thesis contains two parts. In the first part, measurement of various environment gases and pollution source are based on canister/automatic gas chromatography/ mass spectrometer. The designed Canister-Automated GC/MS System was to analyze simultaneously widespread species (C2-C10 HCs, CFCs, compounds). Because of its highly automated, the system designed has better data quality, manpower saving, and analytical efficiency than other methods. The precision of this system for most target compounds was in 3% ,and the method detection limits (MDLs) were in the range of 0.1 ppbv to 1 ppbv. The system has been practically applied to demonstrate the spatial distribution of pollutant concentrations in urban, industrial area, gas stations, and wastewater treatment plants. Acquired data with the combination of local meteorological information were discussed further to establish fingerprints of pollutant sources, and to evaluate the quality of air. In the second part, this study is to extract

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This thesis contains two parts. In the first part, measurement of various environment gases and pollution source are based on canister/automatic gas chromatography/ mass spectrometer. The designed Canister-Automated GC/MS System was to analyze simultaneously widespread species (C2-C10 HCs, CFCs, compounds). Because of its highly automated, the system designed has better data quality, manpower saving, and analytical efficiency than other methods. The precision of this system for most target compounds was in 3% ,and the method detection limits (MDLs) were in the range of 0.1 ppbv to 1 ppbv. The system has been practically applied to demonstrate the spatial distribution of pollutant concentrations in urban, industrial area, gas stations, and wastewater treatment plants. Acquired data with the combination of local meteorological information were discussed further to establish fingerprints of pollutant sources, and to evaluate the quality of air. In the second part, this study is to extract

Keywords

Supercritical fluid extractionChromatographyExtraction (chemistry)Supercritical fluidEnvironmental scienceHigh-performance liquid chromatographyGas chromatographyPollutant

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