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首页> 外文期刊>Journal of magnetic resonance >Monitoring mass transport in heterogeneously catalyzed reactions by field-gradient NMR for assessing reaction efficiency in a single pellet.
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Monitoring mass transport in heterogeneously catalyzed reactions by field-gradient NMR for assessing reaction efficiency in a single pellet.

机译:通过场梯度NMR监测异相催化反应中的传质,以评估单个颗粒中的反应效率。

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摘要

An important aspect in assessing the performance of a catalytically active reactor is the accessibility of the reactive sites inside the individual pellets, and the mass transfer of reactants and products to and from these sites. Optimal design often requires a suitable combination of micro- and macropores in order to facilitate mass transport inside the pellet. In an exothermic reaction, fluid exchange between the pellet and the surrounding medium is enhanced by convection, and often by the occurrence of gas bubbles. Determining mass flow in the vicinity of a pellet thus represents a parameter for quantifying the reaction efficiency and its dependence on time or external reaction conditions. Field gradient Nuclear Magnetic Resonance (NMR) methods are suggested as a tool for providing parameters sensitive to this mass flow in a contact-free and non-invasive way. For the example of bubble-forming hydrogen peroxide decomposition in an alumina pellet, the dependence of the mean-squared displacement of fluid molecules on spatial direction, observation time and reaction time is presented, and multi-pulse techniques are employed in order to separate molecular displacements from coherent and incoherent motion on the timescale of the experiment. The reaction progress is followed until the complete decomposition of H2O2.
机译:评估催化活性反应器性能的一个重要方面是各个粒料内部反应位点的可及性,以及反应物和产物进出这些位点的传质。最佳设计通常需要微孔​​和大孔的适当组合,以促进颗粒内部的质量传输。在放热反应中,颗粒与周围介质之间的流体交换通过对流以及通常通过气泡的出现而得以增强。因此,确定颗粒附近的质量流量代表了用于量化反应效率及其对时间或外部反应条件的依赖性的参数。建议使用场梯度核磁共振(NMR)方法,以无接触且无创的方式提供对该质量流量敏感的参数。以氧化铝颗粒中气泡形成的过氧化氢分解为例,提出了流体分子的均方位移对空间方向,观察时间和反应时间的依赖性,并采用多脉冲技术来分离分子实验时间尺度上相干运动和非相干运动引起的位移。跟踪反应进程直到H 2 O 2完全分解。

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