College of Engineering, China Agricultural University (East Campus), P.O. Box 191, 17 Qing-Hua-Dong-Lu, Hai-Dian District, Beijing 100083, People's Republic of China.
College of Engineering, China Agricultural University (East Campus), P.O. Box 191, 17 Qing-Hua-Dong-Lu, Hai-Dian District, Beijing 100083, People's Republic of China.
Bioresour Technol. 2017 Oct;241:262-268. doi: 10.1016/j.biortech.2017.05.062. Epub 2017 May 15.
Mechanical fragmentation is an important pretreatment in the biomass biotransformation process. Mechanical fragmentation at the tissue scale significantly reduced the particle size of rice straw but did not significantly change its crystalline properties; the increase in the glucose yield was limited from 28.75% (95.55mg/g substrate) to 35.29% (115.28mg/g substrate). Mechanical fragmentation at the cellular scale destroyed the cell wall structure and reduced its crystalline properties. Thus, the glucose yield also showed a significant increase from 35.29% (115.28mg/g substrate) to 81.71% (287.07mg/g of substrate). The quantitative equations among the particle size, crystalline properties and glucose yield (mg/g substrate) are as follows: CrI=44.14×[1-exp(-0.03658×D)] and CP=(8.403×logD-24.1836)/(1-4.225/D^0.5); GY=-5.636CrI+343.7 and GY=-14.62CP+512.1; and GY=97.218+247.5×exp(-0.03824×D). The quantitative correlations among the mechanical fragmentation scales and crystalline properties can determine the effect and mechanism of mechanical fragmentation on biomass and can further promote the construction of a cost-competitive biotransformation process for biomass.
机械破碎是生物质生物转化过程中的重要预处理步骤。在组织尺度上进行机械破碎可显著减小稻草的颗粒尺寸,但对其结晶性能的改变并不明显;葡萄糖产率的提高幅度有限,从 28.75%(95.55mg/g 基质)增加至 35.29%(115.28mg/g 基质)。在细胞尺度上进行机械破碎会破坏细胞壁结构并降低其结晶性能,因此葡萄糖产率也显著增加,从 35.29%(115.28mg/g 基质)增加至 81.71%(287.07mg/g 基质)。颗粒尺寸、结晶性能和葡萄糖产率(mg/g 基质)之间的定量方程如下:CrI=44.14×[1-exp(-0.03658×D)] 和 CP=(8.403×logD-24.1836)/(1-4.225/D^0.5);GY=-5.636CrI+343.7 和 GY=-14.62CP+512.1;以及 GY=97.218+247.5×exp(-0.03824×D)。机械破碎尺度与结晶性能之间的定量关系可以确定机械破碎对生物质的作用和机制,从而进一步促进构建具有成本竞争力的生物质生物转化过程。