Owing to high petroleum prices, there has been a major push in recent years to use lignocellulosic biomass as biorefinery feedstocks. Unfortunately, by nature's design, lignocellulosic biomass is notoriously recalcitrant. Cellulose is the most abundant renewable carbon source on the planet and comprises glucan polysaccharides which self-assemble into paracrystalline microfibrils. The extent of cellulose crystallinity largely contributes to biomass recalcitrance. Additionally, cellulose microfibrils are embedded into both hemicellulose and lignin polymeric networks, making cellulose accessibility an additional obstacle. Pretreatment is necessary before enzymatic hydrolysis in order to liberate high yields of glucose and other fermentable sugars from biomass polysaccharides. This work discusses two pretreatment methods, supercritical CO2 and ionic liquids (ILs). Both methods utilize green solvents that do not emit toxic vapours. Mechanisms for destroying or weakening biomass recalcitrance have been explored. Various pretreatment operating parameters such as temperature, pressure, time, dry biomass/solvent ratio, water content, etc. have been investigated for the pretreatment of various biomass types such as corn stover, switchgrass, sugarcane bagasse, soft and hard wood. The two pretreatment methods have their pros and cons. For example, supercritical CO2 explosion pretreatment uses inexpensive CO2, but requires a high pressure. By comparison, while IL pretreatment does not require an elevated pressure, ILs are still too expensive for large-scale uses. Further research and development are needed to make the two green pretreatment methods practical.

译文

由于高油价,近年来大力推动使用木质纤维素生物质作为生物精炼原料。不幸的是,根据自然界的设计,木质纤维素生物质是出了名的顽固性。纤维素是地球上最丰富的可再生碳源,包括葡聚糖多糖,它们自组装成副结晶微纤维。纤维素结晶度的程度在很大程度上有助于生物质的顽固性。此外,纤维素微纤维嵌入半纤维素和木质素聚合物网络中,这使纤维素的可及性成为另一个障碍。为了从生物质多糖中释放高产量的葡萄糖和其他可发酵糖,在酶水解之前必须进行预处理。这项工作讨论了两种预处理方法,超临界CO2和离子液体 (ILs)。两种方法都使用不散发有毒蒸气的绿色溶剂。已经探索了破坏或削弱生物量顽固性的机制。研究了各种预处理操作参数,如温度、压力、时间、干生物质/溶剂比、含水量等,用于玉米秸秆、柳枝稷、甘蔗渣、软硬木材等各种生物质类型的预处理。两种预处理方法各有优劣。例如,超临界CO2爆炸预处理使用廉价的CO2,但需要高压。相比之下,尽管IL预处理不需要升高的压力,但ILs对于大规模使用而言仍然过于昂贵。需要进一步的研究和开发,以使两种绿色预处理方法切实可行。

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