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一种原位空间分辨分析技术,可同时探测plug flow 反应器填充床内的气相反应和温度。

An in situ spatially resolved analytical technique to simultaneously probe gas phase reactions and temperature within the packed bed of a plug flow reactor.

机构信息

CenTACat, School of Chemistry and Chemical Engineering, Queen's University Belfast, Belfast, BT9 5AG, Northern Ireland, UK.

出版信息

Analyst. 2013 May 21;138(10):2858-62. doi: 10.1039/c3an00250k.

Abstract

This paper reports the detailed description and validation of a fully automated, computer controlled analytical method to spatially probe the gas composition and thermal characteristics in packed bed systems. As an exemplar, we have examined a heterogeneously catalysed gas phase reaction within the bed of a powdered oxide supported metal catalyst. The design of the gas sampling and the temperature recording systems are disclosed. A stationary capillary with holes drilled in its wall and a moveable reactor coupled with a mass spectrometer are used to enable sampling and analysis. This method has been designed to limit the invasiveness of the probe on the reactor by using the smallest combination of thermocouple and capillary which can be employed practically. An 80 μm (O.D.) thermocouple has been inserted in a 250 μm (O.D.) capillary. The thermocouple is aligned with the sampling holes to enable both the gas composition and temperature profiles to be simultaneously measured at equivalent spatially resolved positions. This analysis technique has been validated by studying CO oxidation over a 1% Pt/Al2O3 catalyst and the spatial resolution profiles of chemical species concentrations and temperature as a function of the axial position within the catalyst bed are reported.

摘要

本文详细描述并验证了一种完全自动化、计算机控制的分析方法,用于空间探测填充床系统中的气体组成和热特性。作为示例,我们研究了在粉末氧化物负载金属催化剂床层中的多相催化气相反应。本文披露了气体取样和温度记录系统的设计。使用带有壁孔的固定毛细管和与质谱仪相连的可移动反应器来实现取样和分析。该方法旨在通过使用实际可行的最小热电偶和毛细管组合来限制探针对反应器的侵入性。已将 80μm(外径)热电偶插入 250μm(外径)毛细管中。热电偶与取样孔对齐,以便能够在等效的空间分辨位置同时测量气体组成和温度分布。通过研究 1%Pt/Al2O3 催化剂上的 CO 氧化,对该分析技术进行了验证,并报告了作为催化剂床层轴向位置函数的物种浓度和温度的空间分辨率分布。

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