Arfelis Sergi, Martín-Perales Ana I, Nguyen Remy, Pérez Antonio, Cherubin Igor, Len Christophe, Malpartida Irene, Bala Alba, Fullana-I-Palmer Pere
UNESCO Chair in Life Cycle and Climate Change ESCI-UPF, Pg. Pujades 1, 08003, Barcelona, Spain.
Deasyl, S.A., Plan-les-Ouates, Geneva, Switzerland.
Heliyon. 2024 Jul 15;10(14):e34655. doi: 10.1016/j.heliyon.2024.e34655. eCollection 2024 Jul 30.
The need to explore contemporary alternatives for industrial production has driven the development of innovative techniques that address critical limitations linked to traditional batch mechanochemistry. One particularly promising strategy involves the integration of flow processes with mechanochemistry. Three noteworthy technologies in this domain are single-screw extrusion (SSE) and twin-screw extrusion (TSE) and Impact (Induction) in Continuous-flow Heated Mechanochemistry (ICHeM). These technologies go beyond the industrial production of polymers, extending to the synthesis of active pharmaceutical ingredients, the fabrication of (nano)materials, and the extraction of high-added value products through the valorisation of biomass and waste materials. In accordance with the principles of green chemistry, ball milling processes are generally considered greener compared to conventional solvothermal processes. In fact, ball milling processes require less solvent, enhance reaction rates and reaction conversion by increasing surface area and substituting thermal energy with mechanochemical energy, among others. Special attention will be given to the types of products, reactants, size of the milling balls and reaction conditions, selecting 60 articles after applying a screening methodology during the period 2020-2022. This paper aims to compile and analyze the cutting edge of research in utilizing mechanochemistry for green chemistry applications.
探索工业生产当代替代方法的需求推动了创新技术的发展,这些技术解决了与传统间歇式机械化学相关的关键局限性。一种特别有前景的策略是将流动过程与机械化学相结合。该领域三项值得关注的技术是单螺杆挤出(SSE)、双螺杆挤出(TSE)以及连续流加热机械化学中的冲击(感应)(ICHeM)。这些技术不仅适用于聚合物的工业生产,还扩展到活性药物成分的合成、(纳米)材料的制造,以及通过生物质和废料的增值来提取高附加值产品。根据绿色化学原理,与传统溶剂热法相比,球磨工艺通常被认为更环保。事实上,球磨工艺所需溶剂更少,通过增加表面积以及用机械化学能替代热能等方式提高反应速率和反应转化率。将特别关注产品类型、反应物、研磨球尺寸和反应条件,在应用筛选方法后,从2020年至2022年期间挑选60篇文章。本文旨在汇编和分析利用机械化学进行绿色化学应用的前沿研究。