As the main constitute of biomass , lignocellulose was gasified to produce bio-based syngas which can be used to synthesize of dimethyl ether .
作为生物质资源中,数量最为丰富的木质纤维素,气化后的“生物合成气”可以被进一步用于合成二甲醚。
This paper reviews the components and structure of lignocellulose , states some promising pretreatment technologies in recent years , evaluates the main pretreatment technologies .
介绍了木质纤维素的组成及结构特征,阐述了近年来的木质纤维素预处理技术,并对主要预处理技术作了评价。
Study of the enzymatic hydrolysis of lignocellulose from the activities of plant cell wall proteins affords new insight to investigate the mechanisms of enzymatic hydrolysis and efficient hydrolysis ways .
从植物自身细胞壁蛋白出发来研究木质纤维素的酶解,为研究其酶解机制和高效酶解方法提供了新思路。
The result shows that the ultrasonic wave decreases the crystallinity of lignocellulose destroying the intermolecular hydrogen bonding effectively and improves the degradation rate of lignin and the saccharification rate of zymohydrolysis availably .
As the most aboundant renewable resource on the planet , lignocellulose could be used to produce the new energy -- fuel ethanol , which provides a solution to the existing energy crisis , food crisis and environment crisis .
The main cell wall proteins of plant and the potential effects on enzymatic hydrolysis of lignocellulose are reviewed .
本文综述了植物细胞壁中主要蛋白的特征及其与木质纤维素酶解的关系。
Study on biological pretreatment of lignocellulose for biofuels and biorefinery .
木质纤维素能源与炼制的生物预处理研究。
As the energy crisis and food security increase severely , biofuel produced from lignocellulose as the substitution of gasoline has become the hotspot of biomass energy research .