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植物生物质机械预处理转化的当前成就。

Current achievements in the mechanically pretreated conversion of plant biomass.

机构信息

Laboratory of Solid State Chemistry, Institute of Solid State Chemistry and Mechanochemistry Russian Academy of Sciences, Novosibirsk, Russia.

Department of Technology of Food Production, Novosibirsk State Technical University, Novosibirsk, Russia.

出版信息

Biotechnol Bioeng. 2019 May;116(5):1231-1244. doi: 10.1002/bit.26925. Epub 2019 Jan 31.

Abstract

At present, "mechanochemistry" is synonymous with "grinding," according to the views of a significant number of scientists and technologists. Often, one comes across the opinion that "the less the particle size, the better." The cases of considering chemical reactions occurring during pretreatment, as well as considering changes in the ultrastructure of cell walls are extremely rare. Also, the wrong choice of the type of mechanical impact and the equipment used in most cases leads to excessive consumption of electrical energy and reduce economic efficiency. The review presents the currently available published data on mechanically activated processes for the pretreatment of plant materials and shows that when using mechanical treatment, it is necessary to look more closely at the phenomena occurring, rather than reducing everything to the production of fine and ultrafine powders. As a result of mechanical action, active surface radicals can form, hydrothermal chemical processes can occur, and mechanocomposites can form. The role of interphase processes, changes in surface chemistry, related dimensional effects, and the disordering of the crystal structure and amorphization should be taken into account. In addition, the physicochemical insights in mechanical pretreatment make it possible to more efficiently use the energy delivered to the material, and, consequently, increase the economic efficiency of the activation process.

摘要

目前,“机械化学”在很大程度上与“研磨”同义,这是许多科学家和技术专家的观点。人们经常会遇到这样一种观点,即“粒径越小越好”。考虑预处理过程中发生的化学反应以及考虑细胞壁超微结构变化的情况极为罕见。此外,在大多数情况下,错误选择机械冲击的类型和所用的设备会导致电能过度消耗,降低经济效益。本综述介绍了目前可获得的关于植物材料预处理的机械活化过程的已发表数据,并表明在使用机械处理时,有必要更仔细地观察所发生的现象,而不是将一切都简化为生产细粉和超细粉。由于机械作用,可以形成活性表面自由基、发生水热化学过程并形成机械复合材料。应考虑相间过程、表面化学变化、相关的尺寸效应以及晶体结构无序化和非晶化的作用。此外,机械预处理的物理化学见解使得可以更有效地利用输送到材料的能量,从而提高活化过程的经济效益。

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