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Sugar yields from dilute oxalic acid pretreatment of maple wood compared to those with other dilute acids and hot water

机译:与其他稀酸和热水相比,枫木稀草酸预处理制得的糖产量

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Dilute oxalic acid pretreatment was applied to maple wood to improve compatibility with downstream operations, and its performance in pretreatment and subsequent enzymatic hydrolysis was compared to results for hydrothermal and dilute hydrochloric and sulfuric acid pretreatments. The highest total xylose yield of ~84% of the theoretical maximum was for both 0.5% oxalic and sulfuric acid pretreatment at 160°C, compared to ~81% yield for hydrothermal pretreatment at 200°C and for 0.5% hydrochloric acid pretreatment at 140°C. The xylooligomer fraction from dilute oxalic acid pretreatment was only 6.3% of the total xylose in solution, similar to results with dilute hydrochloric and sulfuric acids but much lower than the ~70% value for hydrothermal pretreatment. Combining any of the four pretreatments with enzymatic hydrolysis with 60 FPU cellulase/g of glucan plus xylan in the pretreated maple wood resulted in virtually the same total glucose plus xylose yields of ~85% of the maximum possible.
机译:将稀草酸预处理应用于枫木,以改善与下游操作的相容性,并将其在预处理和随后的酶水解中的性能与水热,稀盐酸和硫酸预处理的结果进行比较。在160°C时0.5%的草酸和硫酸预处理的最高总木糖产率约为理论最大值的84%,而200°C时水热预处理和140%的0.5%盐酸预处理的最高木糖产率为〜81% ℃。稀草酸预处理中的木糖低聚物分数仅为溶液中总木糖的6.3%,与稀盐酸和硫酸的结果相似,但远低于水热预处理的〜70%值。在经过预处理的枫木中,将四种预处理中的任何一种与60 FPU纤维素酶/ g葡聚糖加木聚糖的酶促水解相结合,可得到几乎相同的总葡萄糖加木糖总产量,约为最大可能量的85%。

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