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Facilely reducing recalcitrance of lignocellulosic biomass by a newly developed ethylamine-based deep eutectic solvent for biobutanol fermentation

机译:通过新开发的基于乙胺的深对共晶溶剂进行生物丁醇发酵的基于新开发的乙胺的深对立溶剂,易于降低木质纤维素生物量的核

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摘要

Abstract Background Biobutanol is promising and renewable alternative to traditional fossil fuels and could be produced by Clostridium species from lignocellulosic biomass. However, biomass is recalcitrant to be hydrolyzed into fermentable sugars attributed to the densely packed structure by layers of lignin. Development of pretreatment reagents and processes for increasing surface area, removing hemicellulose and lignin, and enhancing the relative content of cellulose is currently an area of great interest. Deep eutectic solvents (DESs), a new class of green solvents, are effective in the pretreatment of lignocellulosic biomass. However, it remains challenging to achieve high titers of total sugars and usually requires combinatorial pretreatment with other reagents. In this study, we aim to develop novel DESs with high application potential in biomass pretreatment and high biocompatibility for biobutanol fermentation. Results Several DESs with betaine chloride and ethylamine chloride (EaCl) as hydrogen bond acceptors were synthesized. Among them, EaCl:LAC with lactic acid as hydrogen bond donor displayed the best performance in the pretreatment of corncob. Only by single pretreatment with EaCl:LAC, total sugars as high as 53.5 g L−1 could be reached. Consecutive batches for pretreatment of corncob were performed using gradiently decreased cellulase by 5 FPU g−1. At the end of the sixth batch, the concentration and specific yield of total sugars were 58.8 g L−1 and 706 g kg−1 pretreated corncob, saving a total of 50% cellulase. Utilizing hydrolysate as carbon source, butanol titer of 10.4 g L−1 was achieved with butanol yield of 137 g kg−1 pretreated corncob by Clostridium saccharobutylicum DSM13864. Conclusions Ethylamine and lactic acid-based deep eutectic solvent is promising in pretreatment of corncob with high total sugar concentrations and compatible for biobutanol fermentation. This study provides an efficient pretreatment reagent for facilely reducing recalcitrance of lignocellulosic materials and a promising process for biobutanol fermentation from renewable biomass.
机译:摘要背景Biobutanol是传统化石燃料的有前途和可再生的替代品,并且可以通过木质纤维素生物量的梭菌种类生产。然而,生物质是醋批量水解成可发酵的糖,其归因于木质素层的密集填充结构。对表面积的预处理试剂和过程的开发,除去半纤维素和木质素,以及增强纤维素的相对含量是目前是一个极大兴趣的领域。深层共晶溶剂(DESS),新类绿色溶剂,在木质纤维素生物质的预处理中是有效的。然而,实现总糖的高滴度并通常需要与其他试剂进行组合预处理仍然具有挑战性。在这项研究中,我们的目的是开发新的DES,具有高应用潜力的生物量预处理和高生物相容性的生物灭菌发酵。结果合成了几种含有甜菜碱和乙胺氯化物(EACL)作为氢键受体的DES。其中,EACL:LAC与乳酸作为氢键供体在玉米衫的预处理中显示出最佳性能。只有单次预处理eacl:lac,可以达到高达53.5g l-1的总糖。使用梯度降低的纤维素酶5fpu g-1进行用于预处理玉米氏疙瘩的连续批次。在第六批次结束时,总糖的浓度和特定产率为58.8g L-1和706g Kg-1预处理的玉米芯片,节省了总共50%的纤维素酶。利用水解产物作为碳源,通过Clastridium Saccharobutylcum DSM13864,用丁醇产率为137g Kg-1预处理的玉米蛋白来实现10.4g L-1的丁醇滴度。结论乙胺和基于乳酸的深对共晶溶剂在具有高总糖浓度的玉米菌属中具有预处理,并与生物丁醇发酵相容。该研究提供了一种有效的预处理试剂,用于减少木质纤维素材料的顽固性和来自可再生生物质的生物丁醇发酵的有希望的方法。

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