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采用带程序升温热解器的气相色谱-质谱联用仪对水性涂料进行分析。

Analysis of waterborne paints by gas chromatography-mass spectrometry with a temperature-programmable pyrolyzer.

作者信息

Nakamura S, Takino M, Daishima S

机构信息

Yokogawa Analytical Systems Inc., Tokyo, Japan.

出版信息

J Chromatogr A. 2001 Apr 6;912(2):329-34. doi: 10.1016/s0021-9673(01)00596-9.

Abstract

Gas chromatography-mass spectrometry (GC-MS) with a temperature-programmable pyrolyzer was used for the analysis of waterborne paints. Evolved gas analysis (EGA) profiles of the waterborne paints were obtained by this temperature-programmed pyrolysis directly coupled with MS via a deactivated metal capillary tube. The EGA profile suggested the optimal thermal desorption conditions for solvents and additives and the subsequent optimal pyrolysis temperature for the remaining polymeric material. Polymers were identified from pyrograms with the assistance of a new polymer library. The solvents were identified from the electron ionization mass spectra with the corresponding chemical ionization mass spectra. The additive was identified as zinc pyrithione by comparison with authentic standard. Zinc pyrithione cannot be analyzed by GC-MS as it is. However, the thermal decomposition products of zinc pyrithione could be detected. The information on the decomposition temperature and products was useful for the identification of the original compound.

摘要

采用配备温度程序控制热解器的气相色谱 - 质谱联用仪(GC - MS)对水性涂料进行分析。通过这种温度程序热解直接与质谱联用,经钝化金属毛细管获得水性涂料的逸出气体分析(EGA)图谱。EGA图谱表明了溶剂和添加剂的最佳热脱附条件以及剩余聚合物材料随后的最佳热解温度。借助新的聚合物库从热解图中鉴定聚合物。从电子电离质谱以及相应的化学电离质谱中鉴定溶剂。通过与标准品比较,将添加剂鉴定为吡啶硫酮锌。吡啶硫酮锌本身不能通过GC - MS进行分析。然而,吡啶硫酮锌的热分解产物可以被检测到。关于分解温度和产物的信息对于鉴定原始化合物很有用。

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