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首页> 外文期刊>ChemSusChem >Heterogeneous Catalysis and the Challenges of Powering the Planet, Securing Chemicals for Civilised Life, and Clean Efficient Utilization of Renewable Feedstocks
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Heterogeneous Catalysis and the Challenges of Powering the Planet, Securing Chemicals for Civilised Life, and Clean Efficient Utilization of Renewable Feedstocks

机译:异质催化和行星推动的挑战,保护文明生命的化学品,以及可再生原料的清洁利用

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摘要

This article reviews, first, the prospects, practices and principles of generating solar fuels. It does so with an analysis of recent progress in the light-driven emission of H-2 (and other fuels) as well as O-2 from water. To place this challenge in perspective, some current practices entailing the use of well-proven solid catalysts developed for fossil-based feedstocks, are described. The massive differences between proven methods of generating fuel and chemicals from non-renewable and from solar radiation are emphasized with the aid of numerous quantitative examples. Whilst it is acknowledged that a key action in reducing the liberation of greenhouse gases (GHG) is to tackle the challenge of decreasing their evolution in power generation and in the production of steel, aluminium and other bulk commodities (metals, alloys, concrete and ceramics), nevertheless much can be done to diminish the emission of CO2 (and to use it as feedstock) through the agency of new, designed solid catalysts and microalgae. Solar-thermal converters are also attractive alternatives, even though they are more likely to be used centrally rather than in small modular units like 'artificial leaves,' some of which are promising for the purposes of generating energy (and perhaps fuel) in a delocalized, modular manner.
机译:本文审查,首先,生产太阳能燃料的前景,做法和原则。它在分析H-2(和其他燃料)的光驱动发射中的近期进展以及从水的o-2的分析。为了以透视而放置这一挑战,描述了一些目前的实践,需要使用用于对化石原料的良好的固体催化剂来说。借助于许多定量实施例,强调了产生燃料和从太阳辐射产生燃料和化学品的经过验证方法之间的巨大差异。虽然承认减少温室气体解放(GHG)的关键行动是解决减少其发电中的演变和钢,铝等散装商品(金属,合金,混凝土和陶瓷生产)的挑战然而,通过新的设计的固体催化剂和微藻的机构,可以进行多大程度上减少二氧化碳的排放(并使用它作为原料)。太阳能热转换器也是有吸引力的替代方案,即使它们更有可能被集中而不是像“人造叶子这样的小模块化单位”,其中一些是为了在划分的划分中产生能量(和可能燃料)的目的。 ,模块化的方式。

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