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自热式、单级、过氧乙酸预处理荻,快速将其生物质组分分馏为富含木质素/半纤维素的液体和纤维素酶可消化的纸浆。

Autothermal, single-stage, performic acid pretreatment of Miscanthus x giganteus for the rapid fractionation of its biomass components into a lignin/hemicellulose-rich liquor and a cellulase-digestible pulp.

机构信息

Carbolea, Chemical and Environmental Science Department, University of Limerick, Ireland.

出版信息

Bioresour Technol. 2012 Apr;109:173-7. doi: 10.1016/j.biortech.2012.01.007. Epub 2012 Jan 11.

Abstract

A novel approach to the performic acid pulping of biomass enables effective delignification and fractionation in a time frame not achieved heretofore. An autothermal decomposition reaction was triggered when 100mg/L Fe(2)(SO(4))(3) in 4.0 M NaOH was added to 5% or 7.5% H(2)O(2) in aqueous formic acid containing chipped Miscanthus x giganteus. Peroxy-decomposition resulted in pressures of 19 and 35 bar in the 5% and 7.5% peroxide liquors and reduced the lignin content in the resulting pulps to <6% within 140 and 30 min, respectively. Solubilised lignin was available for recovery from the liquor by subsequent dilution with water. Hemicellulose removal to the liquor was 68% and 89% for the 5% and 7.5% peroxide solutions. Crystalline cellulose yields were >99% and >95% and the rate of glucose release from cellulase digestion of the pulps in 24h was more than 20-fold that for the raw Miscanthus.

摘要

一种新方法用于过氧酸法制浆,在以前未曾达到的时间范围内实现了生物质的有效脱木质素和分级。当 100mg/L 的 Fe(2)(SO(4))(3)在 4.0M NaOH 中加入到含有切成片的杂交狼尾草的 5%或 7.5% H(2)O(2)的水性甲酸中时,引发了自热分解反应。过氧分解导致在 5%和 7.5%的过氧液体中产生 19 和 35 巴的压力,并分别在 140 和 30 分钟内将纸浆中的木质素含量降低到<6%。溶解的木质素可通过随后用水稀释从液体中回收。5%和 7.5%的过氧溶液中半纤维素的去除率分别为 68%和 89%。结晶纤维素的产率>99%和>95%,并且在 24 小时内纤维素酶消化纸浆中葡萄糖的释放速率比原料杂交狼尾草高 20 多倍。

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