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Research on Micro-VOCs Detecting System Based on multidimensional-GC

机译:基于MultiDimensional-GC的微VOCS检测系统研究

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In this study, we utilized microelectromechanical system (MEMS) processing technology to design and fabricate a micro gas chromatographic (GC) column. Based on the characteristics of separated volatile organic compounds (VOCs) we selected CB-40 (40% phenyl group + 60% polydimethylsiloxane) to fix the chromatographic column and fabricated a capillary-type micro column as the primary separation column. By selecting the same stationary phase of padding as same as Silica Bond Plot, we fabricated a micro filling chromatographic column as the secondary separation column. Moreover, typical VOC gas mixtures, including hydrogen sulfide, methyl mercaptan, carbon disulfide, dimethyl sulfide, benzene, methylbenzene, ethylbenzene, xylene and styrene, were adopted to be separated and detected, Finally, by designing a combination of sample feeding acquisition modules and control heating modules as well as adopting a self-fabricated micro-channel preconcentrator and a photoionization detector with high sensitivity and small volume, the detection precision was improved considerably. The limit of detection (LOD) of benzene and hydrogen sulfide can reach 50 parts per thousand (ppt).
机译:在本研究中,我们利用微机电系统(MEMS)处理技术来设计和制造微气相色谱(GC)柱。基于分离的挥发性有机化合物(VOC),我们选择了CB-40(40%苯基+ 60%聚二甲基硅氧烷)以固定色谱柱和制造的毛细管型微列作为主分离柱的特性。通过选择与二氧化硅键图相同的填充的固定相,我们制造了一种微填充色谱柱作为二次分离塔。此外,采用典型的VOC气体混合物,包括硫化氢,甲硫醇,二硫化碳,二甲基硫醚,苯,甲基苯,乙苯,二甲苯和苯乙烯,最后通过设计样品进料采集模块的组合和控制加热模块以及采用具有高灵敏度和小体积的自制造的微通道前肠道和光离子型检测器,检测精度大大提高。苯和硫化氢的检测极限可达到每千份(PPT)。

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