Lazzarini Andrea, Colaiezzi Roberta, Gabriele Francesco, Crucianelli Marcello
Department of Physical and Chemical Sciences, University of L'Aquila, Via Vetoio (COPPITO 2), 67100 L'Aquila, Italy.
Materials (Basel). 2021 Nov 11;14(22):6796. doi: 10.3390/ma14226796.
Heterogeneous catalysts are progressively expanding their field of application, from high-throughput reactions for traditional industrial chemistry with production volumes reaching millions of tons per year, a sector in which they are key players, to more niche applications for the production of fine chemicals. These novel applications require a progressive utilization reduction of fossil feedstocks, in favor of renewable ones. Biomasses are the most accessible source of organic precursors, having as advantage their low cost and even distribution across the globe. Unfortunately, they are intrinsically inhomogeneous in nature and their efficient exploitation requires novel catalysts. In this process, an accurate design of the active phase performing the reaction is important; nevertheless, we are often neglecting the importance of the support in guaranteeing stable performances and improving catalytic activity. This review has the goal of gathering and highlighting the cases in which the supports (either derived or not from biomass wastes) share the worth of performing the catalysis with the active phase, for those reactions involving the synthesis of fine chemicals starting from biomasses as feedstocks.
多相催化剂的应用领域正在逐步扩大,从传统工业化学中每年产量达数百万吨的高通量反应(在该领域它们是关键角色),到精细化学品生产等更细分的应用领域。这些新应用需要逐步减少对化石原料的使用,转而青睐可再生原料。生物质是最容易获取的有机前体来源,其优势在于成本低且全球分布均匀。不幸的是,它们本质上是不均匀的,对其进行有效利用需要新型催化剂。在这个过程中,对进行反应的活性相进行精确设计很重要;然而,我们常常忽视载体在保证稳定性能和提高催化活性方面的重要性。这篇综述的目的是收集并突出那些载体(无论是否源自生物质废物)与活性相共同发挥催化作用的案例,这些案例涉及以生物质为原料合成精细化学品的反应。