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GAS CHROMATOGRAPHY-ION MOBILITY SPECTROMETRY INSTRUMENT FOR ANALYZING VOLATILE ORGANIC COMPOUNDS IN ENCLOSED ATMOSPHERE OF SPACECRAFTS

机译:气相色谱 - 离子迁移光谱仪,用于分析围绕航天器气氛中的挥发性有机化合物

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Research findings revealed that online monitoring of air contaminants in spacecrafts is a prominent factor in Environmental Control and Life Support System (ECLSS).Over the years, Ion Mobility Spectrometry (IMS) which refers to the techniques and cutting-edge instruments for characterizing of analytes by their gas phase mobility has been gaining popularity and validity among scientific researchers for detecting Volatile Organic Compounds (VOCs) in manned space missions.This novel gas sensor, with its high analytical speed, low detection limits, ease of use and ruggedness during transport has also become the dominant commercial technology in different industries.In spite of these paramount advantages, IMS has difficulty identifying matrix compounds.To overcome this problem a Gas Chromatograph (GC) can be used to introduce individual components of mixture into an IMS.The output signal of the hyphenated GC-IMS method is an extraordinary small, time-dependent current produced by mobile ions in atmospheric pressure.In the present paper an attempt is made to evaluate the capability of home-made GC-IMS as a novel and effective analytical technique for detection of VOCs.The GC-IMS instrument used in this research was designed and constructed in Material and Institute of Esfahan, Detector Department and can be used as an on-board Volatile Organic Analyzer (VOA) in space missions.The efficacy of the constructed device will be proved by offering experiments related to enclosed atmosphere.
机译:研究结果表明,航天器中空气污染物的在线监测是环境控制和生命支持系统(ECLS)的突出因素。多年来,离子迁移光谱(IMS)是指用于表征分析物的技术和尖端器械通过他们的气相流动性,在载人空间任务中检测挥发性有机化合物(VOC)的科学研究人员之间的普及和有效性。这种新型气体传感器,其分析速度高,检测限,在运输过程中易用和坚固性也成为不同行业的主导商业技术。尽管有这些最重要的优势,IMS难以识别矩阵化合物。克服该问题,气相色谱仪(GC)可用于将混合物的单独组分引入IMS。输出信号HyPhenated GC-IMS方法是由移动离子产生的非凡的小,时间依赖电流在大气压力下。本文试图评估自制GC-IMS作为一种用于检测VOC的新颖有效分析技术的能力。本研究中使用的GC-IMS仪器设计并构建埃斯法罕,探测器部门的材料和研究所,可以用作太空任务中的板载挥发性有机分析仪(VOA)。通过提供与封闭式气氛有关的实验,将证明构建装置的功效。

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