Institute of Solid State Chemistry and Mechanochemistry SB RAS, Kutateladze Str. 18, 630090 Novosibirsk, Russia.
Molecules. 2020 Nov 16;25(22):5345. doi: 10.3390/molecules25225345.
In recent years, we have witnessed an increasing interest in the application of mechanochemical methods for processing materials in biomass refining techniques. Grinding and mechanical pretreatment are very popular methods utilized to enhance the reactivity of polymers and plant raw materials; however, the choice of devices and their modes of action is often performed through trial and error. An inadequate choice of equipment often results in inefficient grinding, low reactivity of the product, excess energy expenditure, and significant wear of the equipment. In the present review, modern equipment employing various types of mechanical impacts, which show the highest promise for mechanochemical pretreatment of plant raw materials, is examined and compared-disc mills, attritors and bead mills, ball mills, planetary mills, vibration and vibrocentrifugal mills, roller and centrifugal roller mills, extruders, hammer mills, knife mills, pin mills, disintegrators, and jet mills. The properly chosen type of mechanochemical activation (and equipment) allows an energetically and economically sound enhancement of the reactivity of solid-phase polymers by increasing the effective surface area accessible to reagents, reducing the amount of crystalline regions and the diffusion coefficient, disordering the supramolecular structure of the material, and mechanochemically reacting with the target substances.
近年来,我们见证了人们对机械化学方法在生物质精炼技术中处理材料的应用越来越感兴趣。研磨和机械预处理是非常流行的方法,用于提高聚合物和植物原料的反应性;然而,设备的选择及其作用模式通常是通过反复试验进行的。设备选择不当往往会导致研磨效率低下、产品反应性低、能耗过高和设备磨损严重。在本综述中,检查和比较了现代设备采用的各种类型的机械冲击,这些设备在植物原料的机械化学预处理方面显示出最大的前景-盘式磨机、搅拌磨和珠磨机、球磨机、行星磨机、振动和振动离心磨机、辊式和离心辊式磨机、挤出机、锤磨机、刀磨机、针磨机、粉碎机和射流磨机。选择适当的机械化学活化类型(和设备)可以通过增加试剂可及的有效表面积、减少结晶区和扩散系数、使材料的超分子结构无序以及与目标物质进行机械化学反应来合理地增强固相聚合物的反应性。