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用于多相催化剂原位荧光和透射X射线吸收光谱研究的多功能高温光谱池。

Versatile and high temperature spectroscopic cell for operando fluorescence and transmission x-ray absorption spectroscopic studies of heterogeneous catalysts.

作者信息

Eggart Daniel, Zimina Anna, Cavusoglu Gülperi, Casapu Maria, Doronkin Dmitry E, Lomachenko Kirill A, Grunwaldt Jan-Dierk

机构信息

Institute for Chemical Technology and Polymer Chemistry (ITCP), Karlsruhe Institute of Technology (KIT), Engesserstraße 20, 76131 Karlsruhe, Germany.

Institute of Catalysis Research and Technology (IKFT), Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.

出版信息

Rev Sci Instrum. 2021 Feb 1;92(2):023106. doi: 10.1063/5.0038428.

Abstract

A modular high-temperature cell consisting of a plug-flow microreactor with a fixed catalyst bed and long heating zone has been established for operando x-ray absorption/fluorescence spectroscopic and diffraction studies. The functionality of the cell is demonstrated for two important areas: emission control using 2 wt. % Pd/AlO acting as a three-way catalyst and direct conversion of methane to olefins and aromatics on a 0.5% Fe/SiO catalyst. The performance has been determined by online infrared spectroscopy and mass spectrometry, respectively. In addition, the cell can be combined with optical spectroscopy, such as Raman spectroscopy. The catalyst, present as powdered/sieved samples, can be measured under reaction conditions at temperatures of up to 1050 °C. Another key aspect is a long isothermal heating zone with a small temperature gradient (<3 °C/mm at 1000 °C without reaction) including an inert zone for pre-heating of the reactant gas. Due to the small size of the microreactor and the heating system including a water cooling system, heating/cooling rates of up to 100 °C/min can be achieved. Moreover, due to the compact design and the autonomous control system, the high temperature operando setup fits to the space at the majority of synchrotron beamlines. In many cases, the concentration of the element of interest in the catalysts is low requiring x-ray absorption spectroscopy measurements in the fluorescence measurement mode. Hence, the microreactor was designed to fit such needs as well. More specifically, the case of Fe-containing catalysts was particularly considered by using iron-free materials for the reactor housing.

摘要

已建立了一个模块化高温反应池,它由一个带有固定催化剂床和长加热区的活塞流微反应器组成,用于进行原位X射线吸收/荧光光谱和衍射研究。该反应池的功能在两个重要领域得到了验证:使用2 wt.% Pd/Al₂O₃作为三效催化剂进行排放控制,以及在0.5% Fe/SiO₂催化剂上直接将甲烷转化为烯烃和芳烃。分别通过在线红外光谱和质谱测定了其性能。此外,该反应池可与光学光谱(如拉曼光谱)相结合。以粉末/筛分样品形式存在的催化剂可在高达1050°C的反应条件下进行测量。另一个关键方面是具有小温度梯度(在1000°C无反应时<3°C/mm)的长等温加热区,包括用于反应物气体预热的惰性区。由于微反应器和包括水冷系统的加热系统尺寸小,加热/冷却速率可达100°C/min。此外,由于紧凑的设计和自主控制系统,高温原位装置适合大多数同步加速器光束线的空间。在许多情况下,催化剂中感兴趣元素的浓度较低,需要在荧光测量模式下进行X射线吸收光谱测量。因此,微反应器的设计也满足了此类需求。更具体地说,通过使用无铁材料作为反应器外壳,特别考虑了含铁催化剂的情况。

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