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Recent developments in the application of nanomaterials to understanding molecular level processes in cobalt catalysed Fischer–Tropsch synthesis.

机译:纳米材料在理解钴催化的费托合成中的分子水平过程中的最新进展。

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摘要

This perspective offers an overview of using nanomaterials for understanding cobalt catalysed Fischer–Tropsch chemistry. Nanomaterials now afford unprecedented control of size, shape and structure at the nanometre scale. This makes them invaluable tools for studying heterogeneous catalysis. The Fischer–Tropsch reaction, especially using cobalt based catalysts, is a linchpin in many processes for utilising other feedstocks (via gasification) that have been envisaged as short/medium term replacements for crude oil. The underlying chemistry has therefore garnered considerable renewed interest. The current state of the art in mechanistic understanding is summarised and the application of nanomaterials to developing this further is explored. Several specific questions, to which nanomaterials have already contributed answers, are addressed: how do nanomaterials contribute to our understanding of cobalt particle size effects, reducibility, and the effect of support porosity and how do precious metal promoters operate in cobalt catalysed Fischer–Tropsch chemistry? Future possible uses for nanomaterials in studying this field are also identified.
机译:该观点概述了使用纳米材料理解钴催化的费-托化学的过程。纳米材料现在可以对纳米级的尺寸,形状和结构进行前所未有的控制。这使它们成为研究多相催化的宝贵工具。费-托反应,特别是使用钴基催化剂,在许多利用其他原料(通过气化)的方法中起着关键作用,这些方法被设想为原油的短期/中期替代品。因此,基础化学已经引起了相当大的兴趣。总结了有关机械理解的最新技术,并探讨了纳米材料在进一步发展中的应用。纳米材料已经为之做出了回答,它解决了几个具体问题:纳米材料如何帮助我们理解钴的粒径效应,可还原性以及载体孔隙率的影响,以及贵金属促进剂如何在钴催化的费托化学中起作用?还确定了纳米材料在研究该领域中的未来可能用途。

著录项

  • 作者

    Beaumont Simon K.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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