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使用珠磨技术的可持续贝克曼重排反应:通往对乙酰氨基酚的途径。

Sustainable Beckmann Rearrangement using Bead-Milling Technology: The Route to Paracetamol.

作者信息

Geib Romain, Colacino Evelina, Gremaud Ludovic

机构信息

School of Engineering and Architecture of Fribourg, Department of Chemistry -, Institute of Chemical Technology, HES-SO University of Applied Sciences and Arts Western Switzerland, Boulevard de Pérolles, 80, 1700, Fribourg, Switzerland.

ICGM, Univ Montpellier, CNRS, ENSCM, 34293, Montpellier, France.

出版信息

ChemSusChem. 2024 Jun 24;17(12):e202301921. doi: 10.1002/cssc.202301921. Epub 2024 Feb 29.

DOI:10.1002/cssc.202301921
PMID:38353034
Abstract

To address the growing demand for more sustainable and greener chemistry, mechanochemical methodologies are emerging as key players. However, to date there has been little data highlighting the benefits of these rising mechanochemical technologies with regard to process scale-up activities or implementation in commercial production scale. Herein, we report the first application of bead-mill technology (Dyno®-mill) for the sustainable mechanochemical synthesis of Acetaminophen, known under the brand name Paracetamol. Using the Beckmann rearrangement, the optimized solvent-free methodology delivered a final product on a scale of several tens of grams. In comparison to current production solvent-based process, the proposed process achieves a higher yield while also allowing the removal of solvents in the chemical reaction, hereby reducing one of the extensive drivers to waste generation. The mechanochemical approach was compared to solvent-based process using a combination of green metrics and EcoScale score. The mechanochemical synthesis of paracetamol scores the highest for all the metrics over currently used solution-based processes.

摘要

为满足对更可持续和更绿色化学日益增长的需求,机械化学方法正成为关键手段。然而,迄今为止,几乎没有数据凸显这些新兴机械化学技术在工艺放大活动或商业生产规模实施方面的优势。在此,我们报告了珠磨机技术(Dyno®-mill)在对乙酰氨基酚(商品名扑热息痛)可持续机械化学合成中的首次应用。采用贝克曼重排反应,优化后的无溶剂方法可实现数十克规模的最终产物制备。与当前基于溶剂的生产工艺相比,该工艺不仅产率更高,还能在化学反应中去除溶剂,从而减少了产生大量废弃物的一个主要因素。通过结合绿色指标和生态规模评分,将机械化学方法与基于溶剂的工艺进行了比较。对乙酰氨基酚的机械化学合成在所有指标上的得分均高于目前使用的基于溶液的工艺。

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