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Bimetallic catalysts for upgrading of biomass to fuels and chemicals

机译:双金属催化剂,用于将生物质提升为燃料和化学品

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Research interest in biomass conversion to fuels and chemicals has increased significantly in the last decade as the necessity for a renewable source of carbon has become more evident. Accordingly, many different reactions and processes to convert biomass into high-value products and fuels have been proposed in the literature. Special attention has been given to the conversion of lignocellulosic biomass, which does not compete with food sources and is widely available as a low cost feedstock. In this review, we start with a brief introduction on lignocellulose and the different chemical structures of its components: cellulose, hemicellulose, and lignin. These three components allow for the production of different chemicals after fractionation. After a brief overview of the main reactions involved in biomass conversion, we focus on those where bimetallic catalysts are playing an important role. Although the reactions are similar for cellulose and hemicellulose, which contain C6 and C5 sugars, respectively, different products are obtained, and therefore, they have been reviewed separately. The third major fraction of lignocellulose that we address is lignin, which has significant challenges to overcome, as its structure makes catalytic processing more challenging. Bimetallic catalysts offer the possibility of enabling lignocellulosic processing to become a larger part of the biofuels and renewable chemical industry. This review summarizes recent results published in the literature for biomass upgrading reactions using bimetallic catalysts.
机译:在过去十年中,随着将可再生碳源的必要性变得越来越明显,人们对将生物质转化为燃料和化学品的研究兴趣显着增加。因此,在文献中已经提出了许多不同的反应和方法以将生物质转化为高价值的产品和燃料。对木质纤维素生物质的转化给予了特别关注,其与食物来源不竞争并且作为低成本原料被广泛使用。在本文中,我们首先简要介绍木质纤维素及其组成的不同化学结构:纤维素,半纤维素和木质素。这三种成分允许分馏后产生不同的化学物质。在简要概述了生物质转化涉及的主要反应之后,我们重点介绍了双金属催化剂在其中起重要作用的反应。尽管对于分别包含C6和C5糖的纤维素和半纤维素,反应是相似的,但可获得不同的产物,因此,已分别进行了综述。我们要解决的木质纤维素的第三个主要部分是木质素,由于其结构使催化处理更具挑战性,因此木质素具有很大的挑战要克服。双金属催化剂提供了使木质纤维素加工成为生物燃料和可再生化学工业更大一部分的可能性。这篇综述总结了文献中发表的有关使用双金属催化剂进行生物质提升反应的最新结果。

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