Department of Biological and Agricultural Engineering, Campus Box 7625, North Carolina State University, Raleigh, NC 27695-7625, USA.
Bioresour Technol. 2010 Apr;101(8):2900-3. doi: 10.1016/j.biortech.2009.12.015. Epub 2009 Dec 29.
To improve the enzymatic digestibility of switchgrass at mild temperatures, lime pretreatment of switchgrass was explored at 50 and 21 degrees Celsius, and compared with that at 121 degrees Celsius. The effects of residence time, lime loading, and biomass washing on the sugar production efficiency were investigated. Pretreatments were evaluated based on the yields of biomass-derived sugars in the subsequent enzymatic hydrolysis. Under the best pretreatment conditions (50 degrees Celsius, 24 h, 0.10 g Ca(OH)(2)/g raw biomass, and wash intensity of 100 ml water/g raw biomass), the yields of glucose, xylose, and total reducing sugars reached 239.6, 127.2, and 433.4 mg/g raw biomass, which were respectively 3.15, 5.78, and 3.61 times those of untreated biomass. The study on calcium-lignin bonding showed that calcium ions crosslinked lignin molecules under alkaline conditions, which substantially decreased lignin solubilization during pretreatment, but the resulting high lignin contents of the pretreated biomass did not compromise the improvement of enzymatic digestibility.
为了在温和温度下提高柳枝稷的酶解可消化性,在 50 和 21°C 下探索了石灰预处理柳枝稷,并与 121°C 下的预处理进行了比较。考察了停留时间、石灰用量和生物质洗涤对产糖效率的影响。根据后续酶解中生物质衍生糖的产率来评估预处理。在最佳预处理条件(50°C,24 h,0.10 g Ca(OH)2/g 原料生物质,生物质洗涤强度为 100 ml 水/g 原料生物质)下,葡萄糖、木糖和总还原糖的产率分别达到 239.6、127.2 和 433.4 mg/g 原料生物质,分别是未处理生物质的 3.15、5.78 和 3.61 倍。对钙-木质素键合的研究表明,在碱性条件下钙离子交联木质素分子,这大大减少了预处理过程中木质素的溶解,但预处理生物质中高含量的木质素并不会降低其酶解可消化性的提高。