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Uncertainty analysis of a dynamic vapor sorption-fast gas chromatography-flame ionization detection method for the rapid analysis of volatile release from glassy matrices

机译:动态气相吸附-快速气相色谱-火焰电离检测法快速分析玻璃状基质中挥发物的不确定度分析

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Uncertainty analysis was conducted with a dynamic vapor sorption-fast gas chromatography-flame ionization detection (DVS-fast GC-FID) method, developed to rapidly analyze the extent of volatile release that occurs from carbohydrate glasses due to humidification and temperature increases. Triplicate samples progressed through a two-step special automatic operation method in the DVS. 3 Samples were exposed to relative humidities ranging from 40 to 90% (in 10% increments) at 15, 25, and 35 degrees C. Uncertainty analysis shows that the DVS-fast GC-FID method uncertainty is smaller than the natural sample uncertainty, indicating that the variability in a sample's physical properties has a dominant impact on the overall uncertainty of the volatile retention results obtained using the DVS-fast GC-FID method. Uncertainty analysis also indicates that the variance associated with the mass of benzaldehyde measured by the DVS-fast GC-FIE) is the largest contributor to the overall benzaldehyde retention variance when the cumulative mass of benzaldehyde measured is small.
机译:不确定性分析是通过动态气相吸附-快速气相色谱-火焰电离检测(DVS-快速GC-FID)方法进行的,该方法可快速分析由于加湿和温度升高而从碳水化合物玻璃中产生的挥发物释放的程度。一式三份的样品通过DVS中的两步特殊自动操作方法进行处理。 3个样品在15、25和35摄氏度下的相对湿度为40至90%(以10%为增量)。不确定度分析表明,DVS-fast GC-FID方法的不确定度小于自然样品的不确定度,表明样品物理性质的可变性对使用DVS-fast GC-FID方法获得的挥发物保留结果的总体不确定性具有主要影响。不确定性分析还表明,当苯甲醛的累积质量较小时,与通过DVS-fast GC-FIE测量的苯甲醛质量相关的方差是造成总体苯甲醛保留方差的最大因素。

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