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微制造平面玻璃气相色谱与光电离检测。

Microfabricated planar glass gas chromatography with photoionization detection.

机构信息

National Centre for Atmospheric Science, University of York, Heslington, York, YO10 5DD, UK.

出版信息

J Chromatogr A. 2010 Jan 29;1217(5):768-74. doi: 10.1016/j.chroma.2009.12.009. Epub 2009 Dec 4.

Abstract

We report the development of a microfabricated gas chromatography system suitable for the separation of volatile organic compounds (VOCs) and compatible with use as a portable measurement device. Hydrofluoric acid etching of 95x95mm Schott B270 wafers has been used to give symmetrical hemi-spherical channels within a glass substrate. Two matching glass plates were subsequently cold bonded with the channels aligned; the flatness of the glass surfaces resulted in strong bonding through van der Waals forces. The device comprised gas fluidic interconnections, injection zone and 7.5 and 1.4m long, 320microm internal diameter capillaries. Optical microscopy confirmed the capillaries to have fully circular channel profiles. Direct column heating and cooling could be achieved using a combination of resistive heaters and Peltier devices. The low thermal conductivity of glass allowed for multiple uniform temperature zones to be achieved within a single glass chip. Temperature control over the range 10-200 degrees C was achieved with peak power demand of approximately 25W. The 7.5m capillary column was static coated with a 2microm film of non-polar dimethylpolysiloxane stationary phase. A standard FID and a modified lightweight 100mW photoionization detector (PID) were coupled to the column and performance tested with gas mixtures of monoaromatic and monoterpene species at the parts per million concentration level. The low power GC-PID device showed good performance for a small set of VOCs and sub ng detection sensitivity to monoaromatics.

摘要

我们报告了一种适用于分离挥发性有机化合物(VOC)的微加工气相色谱系统的开发,该系统与作为便携式测量设备兼容。使用氢氟酸对 95x95mm 的肖特 B270 晶片进行蚀刻,以在玻璃基板内形成对称的半球形通道。随后,将两个匹配的玻璃板通过对准的通道冷键合;玻璃表面的平整度通过范德华力导致了强键合。该装置包括气体流路连接、注入区以及 7.5 和 1.4m 长、320μm 内径的毛细管。光学显微镜证实了毛细管具有完全圆形的通道轮廓。通过电阻加热器和珀耳帖器件的组合可以实现直接柱加热和冷却。玻璃的低热导率允许在单个玻璃芯片内实现多个均匀的温度区。在 10-200°C 的范围内实现了温度控制,峰值功率需求约为 25W。7.5m 长的毛细管柱用 2μm 厚的非极性二甲基聚硅氧烷固定相进行静态涂层。将标准 FID 和经过改进的轻量级 100mW 光电离检测器(PID)与柱耦合,并使用 ppm 浓度级别的单芳烃和单萜类气体混合物对其性能进行测试。低功耗 GC-PID 装置对一小部分 VOC 表现出良好的性能,对单芳烃的检测灵敏度达到亚纳克级。

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