You Tingting, Shao Lupeng, Wang Ruizhen, Zhang Liming, Xu Feng
Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing, 100083 China.
Biotechnol Biofuels. 2016 Aug 24;9(1):177. doi: 10.1186/s13068-016-0589-8. eCollection 2016.
Solid acid catalyzed inexpensive ionic liquid (IL) pretreatment is promising because of its effectiveness at decreasing biomass recalcitrance to subsequent enzymatic hydrolysis or in situ hydrolysis of carbohydrate oligomers. However, the conventional strategy was limited by the complex non-isothermal process and considering only one aspect of sugar recovery. In this study, facile isothermal pretreatments using Amberlyst 35DRY catalyzed 1-n-butyl-3-methylimidazolium chloride ([C4mim]Cl) at mild conditions were developed on bioenergy crop Arundo donax Linn. to enhance the combined sugars released. The physicochemical differences, enzymatic digestibility, and sugars released in situ were evaluated and compared to define the best set of conditions.
The optimized isothermal pretreatment (110 °C, IL for 3 h, Amberlyst for 1 h) resulted in significant enhancement in combined sugars released (58.4 g/100 g raw materials), recovering 85.0 % of the total reducing glycan in the raw biomass. This remarkable improvement could be correlated to cellulose crystallinity reduction, crystalline conversion, and partial removal of the main chemical components caused by the pretreatment. Particularly, solubilization of hemicelluloses and partial depolymerization of cellulose contributed to the synergetic improvement of sugars production in enzymatic hydrolysis and in situ. Irrespective of the generous differences in mass recovery, the highest cellulose digestibility of 90.2 % and sugar released of 43.0 % (based on initial materials) in the pretreatment liquor were obtained. Interestingly, lignin (0.8-6.1 %) and sugars derived lactic acid (4.70-5.94 %) were produced without any notable deleterious effects.
Isothermal [C4mim]Cl-Amberlyst pretreatment was a highly effective, simple, and convenient process that produced high yields of fermentable sugars from recalcitrant biomass by in situ hydrolysis of soluble biomass and enhancement of cellulose digestibility of the regenerated biomass. Relatively high amount of new revenues beyond sugars of this pretreatment could promote the commercial viability.
固体酸催化的廉价离子液体(IL)预处理具有前景,因为它在降低生物质对后续酶水解或碳水化合物低聚物原位水解的抗性方面有效。然而,传统策略受复杂的非等温过程限制,且仅考虑了糖回收的一个方面。在本研究中,开发了在温和条件下使用Amberlyst 35DRY催化1-正丁基-3-甲基咪唑氯盐([C4mim]Cl)对生物能源作物芦竹进行简便等温预处理的方法,以提高释放的总糖量。评估并比较了物理化学差异、酶消化率和原位释放的糖,以确定最佳条件组合。
优化的等温预处理(110°C,离子液体处理3小时,Amberlyst处理1小时)使释放的总糖量显著提高(58.4克/100克原料),回收了原始生物质中85.0%的总还原聚糖。这种显著的改善可能与预处理导致的纤维素结晶度降低、晶型转变以及主要化学成分的部分去除有关。特别地,半纤维素的溶解和纤维素的部分解聚有助于酶水解和原位过程中糖产量协同提高。尽管质量回收率存在较大差异,但预处理液中获得了最高的纤维素消化率90.2%和糖释放量43.0%(基于初始原料)。有趣的是,产生了木质素(0.8 - 6.1%)和源自乳酸的糖(4.70 - 5.94%),且没有任何明显的有害影响。
等温[C4mim]Cl - Amberlyst预处理是一种高效、简单且便捷的过程,通过可溶性生物质的原位水解和再生生物质纤维素消化率的提高,从顽固生物质中产生了高产率的可发酵糖。该预处理除糖之外相对较高的新收益量可提升其商业可行性。