蒸汽爆破稻草纤维素的环境友好分离方法及其高价值应用

Guangjun Gou, Wei Wei, Man Jiang, S. Zhang, T. Lu, Xiaoli Xie, F. Meng, Zuowan Zhou
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引用次数: 12

摘要

从农业秸秆中分离纤维素是阻碍此类生物质资源应用的关键瓶颈之一。在本章中,我们提供了三种从蒸汽爆炸预处理的农业秸秆中分离纤维素的环保方法,包括可循环水极性非质子有机溶剂脱木质素、木质素组分的选择性生物降解和以咪唑基离子液体从蒸汽爆炸稻草中提取纤维素。分离的稻草纤维素已被用作全纤维素复合材料(ACCs)和纤维素/水泥复合材料的增强剂。含有活化秸秆纤维素纤维(A-SCF)的活性炭可获得超高的抗拉强度(650.2 MPa)。纤维素/水泥复合材料的抗弯强度和断裂韧性均有显著提高。以尿素为助剂的四丁基氢氧化铵水溶液是纤维素的一种新型非衍生物溶剂。
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Environmentally Friendly Method for the Separation of Cellulose from Steam-Exploded Rice Straw and Its High-Value Applications
Separation of cellulose from agricultural straw is one of the key bottlenecks hindering the application of such kind of biomass resources. In this chapter, we provide three environmental-friendly ways for separation of cellulose from agricultural straw pretreated with steam explosion, which include delignification with recyclable water-polar aprotic organic solvent, selective bio-degradation of the lignin component, and extraction of cellulose with imidazolium-based ionic liquids from the steam-exploded rice straw. The isolated rice straw celluloses have been adopted as an enhancement for all-cellulose composites (ACCs) and cellulose/cement composites. Ultra-high tensile strength (650.2 MPa) can be achieved for the ACCs containing the activated straw cellulose fiber (A-SCF). The cellulose/cement composites show a significant promotion in the flexural strength and fracture toughness. The new nonderivative solvent for cellulose, tetrabutylammonium hydroxide (TBAH) aqueous solution with urea as additives has been proved to be manipulable for dissolving cellulose.
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