首页> 外文会议>International Conference on Microreaction Technology Frankfurt/M. on April 18-21, 1999 >Fast response heating module for temperature programmed GC analysis in microreaction systems
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Fast response heating module for temperature programmed GC analysis in microreaction systems

机译:快速响应加热模块,用于微反应系统中的程序升温气相色谱分析

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摘要

For monitoring the reactant and product concentrations of a gas phase microreactor for ethylene oxide synthesis the development of a miniaturised device for fast GC analysis suitable for operation in conjunction with the microreactor is advantageous. Therefore, a method employing short (0.2-0.4 m) packed capillary columns was deveoped. Highly crosslinked polystyrene microspheres proved to be the most suitable adsorbent enabling a high separation efficiency. For fast temperature programming design concepts for an efficient heating module capable to be used with short capillary columns were developed. In principle, planar as well as cylindrical designs are suitable for integration of a resistive heating device, cooling microchannels and structures to accommodate a short GC capillary column. First experiments using a planar prototype module show that 10 to 15 times higher heating rates can be achieved compared to a standard GC oven, thus, leading to a 6-fold decrease in retention time. Further improvement employing a cylindrical design is deduced from simulation results.
机译:为了监测用于环氧乙烷合成的气相微反应器的反应物和产物浓度,开发适用于与微反应器一起操作的用于快速GC分析的小型化装置是有利的。因此,开发了一种采用短(0.2-0.4 m)填充毛细管柱的方法。高度交联的聚苯乙烯微球被证明是实现高分离效率的最合适的吸附剂。为了进行快速温度编程,开发了可与短毛细管柱一起使用的高效加热模块的设计概念。原则上,平面设计和圆柱设计都适合集成电阻加热装置,冷却微通道和结构以容纳较短的GC毛细管柱。使用平面原型模块的首次实验表明,与标准GC柱箱相比,加热速率可以提高10到15倍,从而使保留时间减少了6倍。由圆柱体设计得出的进一步改进可从仿真结果中得出。

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