首页> 外文会议>Conference on Air Quality Ⅱ: Mercury, Trace Elements, and Particulate Matter, Sep 19-21, 2000, McLean, Virginia >DEVELOPMENT OF A JET-REMPI BASED CONTINUOUS EMISSIONS MONITOR FOR DIOXINS AND FURANS
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DEVELOPMENT OF A JET-REMPI BASED CONTINUOUS EMISSIONS MONITOR FOR DIOXINS AND FURANS

机译:基于JET-REMPI的二恶英和呋喃连续排放监测仪的开发

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The need for a continuous emissions monitor for the determination of dioxins and furans at realistic (ppt or sub-ppt) concentrations in real time (minutes) is widely recognized in the waste combustion community. Such an instrument would enable rapid experimentation on incinerators, so as to test and develop control strategies. It would also be extremely useful in laboratory kinetics experiments seeking to understand formation, interconversion, and destruction processes for dioxins and their precursors. The key issues are overall sensitivity, and selectivity among the many congeners found in real applications. At SRI International we are developing an instrument to meet these needs. Our instrument is based on supersonic jet expansion and cooling, followed by resonantly enhanced multiphoton ionization (REMPI) into a mass spectrometer. This furnishes the dual selectivity of tuned laser absorption and mass analysis. We have examined a number of mono- and dichlorinated dioxins, including mixtures of similar congeners in the 50-100 ppt range. Using the well known spectroscopy of benzene, we have characterized the internal temperature in our gas expansion and investigated its variation with distance from the nozzle exit, as well as the corresponding gas density distribution. This characterization will lead to improved sensitivity through optimization of the ionization conditions.
机译:废物燃烧界已广泛认识到,需要连续排放监测器,以实时(分钟)实时(ppt或低于ppt的)浓度测定二恶英和呋喃。这种仪器将能够对焚化炉进行快速实验,从而测试和制定控制策略。在试图了解二恶英及其前体的形成,相互转化和破坏过程的实验室动力学实验中,它也将非常有用。关键问题是整体灵敏度以及在实际应用中发现的许多同类物之间的选择性。在SRI International,我们正在开发一种满足这些需求的工具。我们的仪器基于超音速喷射膨胀和冷却,然后共振增强的多光子电离(REMPI)进入质谱仪。这提供了调谐激光吸收和质量分析的双重选择性。我们已经研究了许多一氯和二氯二恶英,包括50-100 ppt范围内类似同类物的混合物。使用众所周知的苯光谱,我们已经表征了气体膨胀中的内部温度,并研究了其与喷嘴出口之间的距离以及相应的气体密度分布的变化。这种表征将通过优化电离条件而提高灵敏度。

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