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Development of Portable Gas Chromatography / Photoionization Detector System

机译:便携式气相色谱/光电离检测器系统的开发

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The portable gas chromatography system was developed which was consisted of ambient vapor sampler(AVS), short capillary column(3 m long, 0.32 mm i.d. GC(SCCGC), photoionization detector (PID) and vacuum pump which was operated at subambient pressure. The seletion of capillary column was based on the theoretical calculation from Golay equation. The pressure ratio of column inlet and outlet appropriated between 1.03 and 1.2 in the system. The available column flow were 0.87?-4.63 ml/min at the pressure ratios. The AVS consisted of three concentric tubes and enables rapid, repetitive introduction of vapor samples directly into capillary column and showed good reproducibility. The subambient column outlet pressure with PID resulted in a significant increase in the optimum column flow, permitting rapid analysis. The baseline separation of m-xylene and o-xylene was able to within 40 second with the system. Parameters affecting the column resolving power were sampling duration, column length and diameter, and the pressure ratio. Effects of these parameters were investigated using bezene derivative compounds.
机译:开发了便携式气相色谱系统,该系统由环境蒸气采样器(AVS),短毛细管柱(3 m长,内径为0.32 mm的气相色谱仪(SCCGC),光电离检测器(PID)和在真空下操作的真空泵组成。毛细管柱的选择基于Golay方程的理论计算,系统中柱入口和出口的压力比介于1.03至1.2之间,在压力比下可用柱流量为0.87?-4.63 ml / min。由三个同心管组成,可快速,重复地将蒸气样品直接直接引入毛细管色谱柱,并显示出良好的重现性;采用PID的低压色谱柱出口压力导致最佳色谱柱流量显着增加,从而可以进行快速分析。 -二甲苯和邻二甲苯在系统中能够在40秒内完成,影响色谱柱分离能力的参数包括采样时间,色谱柱长度和直径,以及压力比。使用苯衍生物化合物研究了这些参数的影响。

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