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Co-production of biofuels and value-added compounds from industrial Eucalyptus globulus bark residues using hydrothermal treatment

机译:使用水热处理的工业桉树甘露树皮残留物的生物燃料和增值化合物的共同生产

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In this work, hydrothermal treatment was assessed for the fractionation of industrial Eucalyptus globulus bark residue (EBR) to obtain biofuels and value-added compounds (such as oligosaccharides and phenolic compounds) in separated streams. Hydrothermal treatment was evaluated under non-isothermal regimen in the range of maximum temperature (T-max) of 177-228 degrees C or severities (S-0) between 2.76 and 4.25. The highest oligosaccharides concentration (17.5 g/L) was achieved at S-0 of 3.69, corresponding to hemicellulose recovery of 77.30%. Under all severities evaluated in this work, over 90.94% and 84.17% of cellulose and lignin remained in the solid phase, respectively. The increase of S-0 improved 4.38-fold the enzymatic saccharification of cellulose, the highest glucose yield (84%) being achieved at S-0 of 4.04. Considering the maximal recovery of polysaccharides as glucose and oligosaccharides from the liquid and solid phases, S-0 of 4.04 was selected for bio-ethanol production using high solid loadings and following different strategies (simultaneous saccharification and fermentation - SSF and pre-saccharification and simultaneous saccharification and fermentation - PSSF). The utilization of 15% hydrothermally pretreated EBR without nutrient supplementation resulted in 26 g/L of ethanol, independently of the strategy used. An increase up to 17.5% solids and employing nutrient supplementation enabled the production of 38 g/L (or 4.8% v/v) of ethanol by PSSF.
机译:在这项工作中,评估了水热处理,用于工业桉树小树皮残留物(EBR)的分馏,以在分离的物流中获得生物燃料和增值化合物(例如低聚糖和酚类化合物)。在2.76和4.25之间的最高温度(T-MAX)的最大温度(T-MAX)范围内的非等温方案在非等温方案下评价水热处理。在3.69的S-0达到最高的寡糖浓度(17.5g / L),对应于半纤维素回收率为77.30%。在这项工作中评估的所有严重因素下,超过90.94%和84.17%的纤维素和木质素仍然存在于固相中。 S-0的增加改善了4.38倍的酶糖化纤维素,在4.04的S-0实现最高的葡萄糖产率(84%)。考虑到从液体和固相的葡萄糖和寡糖的最大回收多糖和寡糖,选择4.04的S-0用于使用高固体载体和以下不同策略(同时糖化和发酵 - SSF和糖化前和同时糖化和同时糖化和同时糖化和发酵 - PSSF)。利用15%的水热预处理EBR,没有营养素补充,导致26g / L的乙醇,独立于所用的策略。增加高达17.5%的固体,并采用营养素补充使得通过PSSF产生38g / L(或4.8%V / V)的乙醇。

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