Active Oxygen Pretreatment of Corn Stalk to Facilitate Biorefining: Structural Elucidation of Hemicelluloses in Yellow Liquor
文献类型: 外文期刊
作者: Shi, Jianbin 1 ; Xiang, Xia 2 ; Yang, Qiulin 3 ; Lin, Lu 4 ; He, Jianjun 1 ; Chen, Xueling 1 ; Mei, Xin 1 ; Guan, Jian 1 ; C 1 ;
作者机构: 1.Hubei Acad Agr Sci, Inst Agroprod Proc & Nucl Agr Technol, Wuhan 430064, Hubei Province, Peoples R China
2.Chinese Acad Agr Sci, Dept Prod Proc & Nutriol, Key Lab Oil Crops Biol,Inst OilCrops Res, Hubei Key Lab Lipid Chem & Nutr,Minist Agr, Wuhan 430062, Peoples R China
3.Tianjin Univ Sci & Technol, Coll Mat Sci & Chem Engn, Tianjin 300457, Peoples R China
4.Xiamen Univ, Sch Energy Res, Xiamen 361005, Fujian Province, Peoples R China
关键词: Active oxygen;Biomass pretreatment;Corn stalk;Hemicelluloses;Yellow liquor
期刊名称:BIORESOURCES ( 影响因子:1.614; 五年影响因子:1.923 )
ISSN: 1930-2126
年卷期: 2015 年 10 卷 4 期
页码:
收录情况: SCI
摘要: Biorefining is a potential pathway to cover the shortage of fuels, power, and chemicals from lignocellulosic biomass in the future. However, pretreatment of the biomass is recognized as a technological bottleneck for the cost-effective development of biorefineries, especially for the production of bio-fuels and chemicals. Active oxygen pretreatment is both an eco-friendly and efficient pretreatment process. To elucidate the effect of different chemicals on corn stalk and its hemicellulosic structure, five pretreatment processes were formed with MgO, H(2)0(2), and O-2. Additionally, the MgO was also replaced by NaOH and Mg(HO)(2). Results show that MgO, which can be completely replaced by Mg(OH)(2), is an alkali source and a protective agent in preventing raw material from carbonizing and cellulose from degrading during pretreatment. High pressure oxygen is the main chemical for depolymerizing corn stalk. The removal degrees of lignin and hemicelluloses in the pretreatment processes with oxygen were 81.1 to 87.7% and 73.3 to 83.0%, respectively. Without oxygen, much lower removal degree were achieved (19.3 to 49.0% and 55.5 to 67.6%, respectively). Corn stalk hemicelluloses were composed of (1 -> 4)-beta-D-xylopyranose substituted with a-L-arabinofuranosyl residues and 4-O-methyl-alpha-D-glucuronic acid units. The molecular weight of hemicelluloses decreased from 22,000 g/mol to the range 3100 to 6400 g/mol.
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