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Intensification studies of heterogeneous catalysts: probing and overcoming catalyst deactivation during liquid phase operation

机译:非均相催化剂的强化研究:在液相操作过程中探索和克服催化剂失活

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摘要

In addition to high levels of catalytic activity and target product selectivity, promising heterogeneous catalysts must also possess sufficient levels of stability for scale up, i.e. intensification, and industrialisation to be realised. However, this third – often determining – keystone is often overlooked, particularly in academic literature. This tutorial review therefore covers several elements related to the study of heterogeneous catalyst stability during liquid phase operation, an increasingly important area of heterogeneous catalysis. Particular emphasis is placed upon how stability data can be obtained and how the various forms of catalyst deactivation can be experimentally identified, and attention is drawn to emerging methods by which such events can be overcome or minimised. Drawing on some of our team's recent research, particular emphasis is placed on the stability studies of Lewis acidic silicates, state-of-the-art catalysts for a range of emerging liquid–solid catalytic processes. Factors related to heterogeneous nanoparticle catalysts are also covered. The purpose of this review is to draw attention to the issue of solid catalyst stability during liquid phase operation, and provide researchers with the information required to begin kinetic and spectroscopic studies of this determining catalytic event.
机译:除了高水平的催化活性和目标产物的选择性外,有希望的非均相催化剂还必须具有足够的稳定性以用于规模化,即要实现的强化和工业化。但是,这往往是决定因素的第三个重点常常被忽略,特别是在学术文献中。因此,本教程概述涵盖了与液相操作过程中非均相催化剂稳定性研究有关的几个要素,液相操作是非均相催化的一个越来越重要的领域。特别强调如何获得稳定性数据以及如何通过实验确定各种形式的催化剂失活,并着重注意可以克服或减少此类事件的新兴方法。借鉴我们团队最近的一些研究,重点特别放在路易斯酸性硅酸盐的稳定性研究上,路易斯酸性硅酸盐是一系列新兴的液固催化方法的最先进催化剂。还涵盖了与非均相纳米颗粒催化剂有关的因素。这篇综述的目的是引起人们对液相操作期间固体催化剂稳定性问题的关注,并为研究人员提供所需的信息,以开始对该决定性催化事件进行动力学和光谱学研究。

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    Hammond, Ceri;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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