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Bio‐palladium: from metal recovery to catalytic applications

机译:生物钯:从金属回收到催化应用

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SummaryWhile precious metals are available to a very limited extent, there is an increasing demand to use them as catalyst. This is also true for palladium (Pd) catalysts and their sustainable recycling and production are required. Since Pd catalysts exist nowadays mostly under the form of nanoparticles, these particles need to be produced in an environment-friendly way. Biological synthesis of Pd nanoparticles (‘bio-Pd’) is an innovative method for both metal recovery and nanocatalyst synthesis. This review will discuss the different bio-Pd precipitating microorganisms, the applications of the catalyst (both for environmental purposes and in organic chemistry) and the state of the art of the reactors based on the bio-Pd concept. In addition, some main challenges are discussed, which need to be overcome in order to create a sustainable nanocatalyst. Finally, some outlooks for bio-Pd in environmental technology are presented.
机译:总结虽然贵金属的供应量非常有限,但人们越来越需要使用它们作为催化剂。钯(Pd)催化剂也是如此,因此需要可持续的回收和生产。由于如今Pd催化剂主要以纳米颗粒形式存在,因此需要以环境友好的方式生产这些颗粒。钯纳米颗粒(“生物钯”)的生物合成是一种用于金属回收和纳米催化剂合成的创新方法。本文将讨论不同的生物钯沉淀微生物,催化剂的应用(既用于环境目的又用于有机化学)以及基于生物钯概念的反应器技术水平。此外,还讨论了一些主要挑战,必须克服这些挑战才能创建可持续的纳米催化剂。最后,介绍了环境技术中生物钯的一些前景。

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