Gambacorta Guido, Sharley James S, Baxendale Ian R
Department of Chemistry, University of Durham, Stockton Road, Durham, DH1 3LE, United Kingdom.
Beilstein J Org Chem. 2021 May 18;17:1181-1312. doi: 10.3762/bjoc.17.90. eCollection 2021.
Due to their intrinsic physical properties, which includes being able to perform as volatile liquids at room and biological temperatures, fragrance ingredients/intermediates make ideal candidates for continuous-flow manufacturing. This review highlights the potential crossover between a multibillion dollar industry and the flourishing sub-field of flow chemistry evolving within the discipline of organic synthesis. This is illustrated through selected examples of industrially important transformations specific to the fragrances and flavours industry and by highlighting the advantages of conducting these transformations by using a flow approach. This review is designed to be a compendium of techniques and apparatus already published in the chemical and engineering literature which would constitute a known solution or inspiration for commonly encountered procedures in the manufacture of fragrance and flavour chemicals.
由于其固有的物理性质,包括在室温和生物温度下能够以挥发性液体的形式存在,香料成分/中间体成为连续流制造的理想候选物。本综述突出了一个数十亿美元产业与有机合成学科中蓬勃发展的流动化学子领域之间的潜在交叉。这通过香料和香精行业特有的具有工业重要性的转化的选定实例来说明,并强调了使用流动方法进行这些转化的优势。本综述旨在成为化学和工程文献中已发表的技术和仪器的汇编,这些技术和仪器将为香料和香精化学品制造中常见的程序提供已知的解决方案或灵感。