有机溶剂
生物炼制
蒸汽爆炸
木质素
制浆造纸工业
生物量(生态学)
纤维素
半纤维素
生物转化
木质纤维素生物量
生物燃料
分馏
化学
生物能源
可再生资源
原材料
废物管理
可再生能源
农学
食品科学
有机化学
发酵
工程类
生物
电气工程
作者
Λεωνίδας Μάτσακας,Vijayendran Raghavendran,Olga Yakimenko,Gustav Persson,Eva Olsson,Ulrika Rova,Lisbeth Olsson,Paul Christakopoulos
标识
DOI:10.1016/j.biortech.2018.11.055
摘要
For a transition to a sustainable society, fuels, chemicals, and materials should be produced from renewable resources. Lignocellulosic biomass constitutes an abundant and renewable feedstock; however, its successful application in a biorefinery requires efficient fractionation into its components; cellulose, hemicellulose and lignin. Here, we demonstrate that a newly established hybrid organosolv - steam explosion pretreatment can effectively fractionate spruce biomass to yield pretreated solids with high cellulose (72% w/w) and low lignin (delignification up to 79.4% w/w) content. The cellulose-rich pretreated solids present high saccharification yields (up to 61% w/w) making them ideal for subsequent bioconversion processes. Moreover, under high-gravity conditions (22% w/w) we obtained an ethanol titer of 61.7 g/L, the highest so far reported for spruce biomass. Finally, the obtained high-purity lignin is suitable for various advanced applications. In conclusion, hybrid organosolv pretreatment could offer a closed-loop biorefinery while simultaneously adding value to all biomass components.
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