Dietrich Markus, Rauch Dieter, Porch Adrian, Moos Ralf
Department of Functional Materials, University of Bayreuth, 95440 Bayreuth, Germany.
School of Engineering, Cardiff University, Cardiff, CF24 3AA, Wales, UK.
Sensors (Basel). 2014 Sep 10;14(9):16856-68. doi: 10.3390/s140916856.
The catalytic behavior of zeolite catalysts for the ammonia-based selective catalytic reduction (SCR) of nitrogen oxides (NOX) depends strongly on the type of zeolite material. An essential precondition for SCR is a previous ammonia gas adsorption that occurs on acidic sites of the zeolite. In order to understand and develop SCR active materials, it is crucial to know the amount of sorbed ammonia under reaction conditions. To support classical temperature-programmed desorption (TPD) experiments, a correlation of the dielectric properties with the catalytic properties and the ammonia sorption under reaction conditions appears promising. In this work, a laboratory test setup, which enables direct measurements of the dielectric properties of catalytic powder samples under a defined gas atmosphere and temperature by microwave cavity perturbation, has been developed. Based on previous investigations and computational simulations, a resonator cavity and a heating system were designed, installed and characterized. The resonator cavity is designed to operate in its TM010 mode at 1.2 GHz. The first measurement of the ammonia loading of an H-ZSM-5 zeolite confirmed the operating performance of the test setup at constant temperatures of up to 300 °C. It showed how both real and imaginary parts of the relative complex permittivity are strongly correlated with the mass of stored ammonia.
沸石催化剂用于基于氨的氮氧化物选择性催化还原(SCR)的催化行为在很大程度上取决于沸石材料的类型。SCR的一个基本前提是先前在沸石酸性位点上发生的氨气吸附。为了理解和开发SCR活性材料,了解反应条件下吸附氨的量至关重要。为了辅助传统的程序升温脱附(TPD)实验,将介电性质与催化性质以及反应条件下的氨吸附相关联似乎很有前景。在这项工作中,开发了一种实验室测试装置,该装置能够通过微波腔微扰在限定的气体气氛和温度下直接测量催化粉末样品的介电性质。基于先前的研究和计算模拟,设计、安装并表征了一个谐振腔和一个加热系统。谐振腔设计为在1.2 GHz的TM010模式下运行。对H-ZSM-5沸石氨负载量的首次测量证实了该测试装置在高达300°C的恒定温度下的运行性能。它表明相对复介电常数的实部和虚部如何与储存氨的质量密切相关。