首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Single photon ionization time-of-flight mass spectrometry with a windowless RF-discharge lamp for high temporal resolution monitoring of the initial stage of methanol-to-olefins reaction
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Single photon ionization time-of-flight mass spectrometry with a windowless RF-discharge lamp for high temporal resolution monitoring of the initial stage of methanol-to-olefins reaction

机译:单光子电离飞行时间质谱法,具有无窗口RF放电灯,用于高时分辨率监测甲醇 - 烯烃反应的初始阶段

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摘要

Methanol-to-olefins (MTO) is a very important industrial catalysis technique for the production of light olefins, which is of great economic value and strategic significance. However, it is a great challenge for the traditional analytical methods to obtain the real-time information of product variation during MTO reaction process, which is vital for the conversion process research and mechanism explanation. In this study, a single photon ionization time-of-flight mass spectrometry (SPI-TOFMS) based on a windowless RF-discharge (WLRF) lamp was developed for real-time measurement of catalytic product during the initial stage of MTO reaction. The vacuum ultraviolet (VUV) photon energy was easily adjusted by changing the discharge gas. Argon (Ar) gas was eventually adopted as the discharge gas, since it produces photons with appropriate energy of 11.6 eV and 11.8 eV for ionization of light olefin molecules. The detection sensitivities of ethylene and propylene were largely improved to a substantially similar level with limits of detection (LODs) down to 16.98 and 9.64 ppbv, respectively. The initial stage of MTO reaction was real-time monitored with a high temporal resolution of 0.5 s, revealing that ethylene was the first olefin product followed by propylene. The successful application of WLRF-SPI-TOFMS in the monitoring of MTO catalytic process indicated broad application prospects of this instrument in the industrial reaction process monitoring.
机译:甲醇制烯烃(MTO)是用于生产轻质烯烃,这是具有重大的经济价值和战略意义非常重要的工业催化技术。然而,对于传统的分析方法一个很大的挑战,以获得在MTO反应过程中,这是转换过程研究和机制的解释至关重要的产品差异化的实时信息。在这项研究中,基于一个没有窗户的RF放电(WLRF)灯单光子电离时间飞行质谱(SPI-TOFMS)是为催化产物的实时测量期间MTO反应的初始阶段发展。的真空紫外(VUV)光子能量容易通过改变放电气体的调整。氩(Ar)气,最终获得通过作为放电气体,因为它产生的光子与11.6电子伏特的适当的能量和11.8电子伏特为轻烯烃分子的电离。乙烯和丙烯的检测灵敏度在很大程度上提高到与检测限(检测限)降为16.98和9.64 ppbv的,基本相似的水平。 MTO反应的初始阶段,用0.5秒的高时间分辨率的实时监测,表明乙烯是第一烯烃产物,随后丙烯。 WLRF-SPI-TOFMS的在MTO催化过程的监测的成功应用表明该仪器在工业反应过程监视的广阔的应用前景。

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