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Developing Ways of Obtaining Quality Hydrolyzates Based on Integrating Catalytic Peroxide Delignification and the Acid Hydrolysis of Birch Wood

机译:基于整合催化过氧化物脱果和桦木酸水解的基于集成催化过氧化物的质量水解产物

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Traditional processes of acid-catalyzed hydrolysis of wood are ineffective due to the low quality of formed glucose solutions contaminated with impurities that inhibit fermentation of glucose to ethanol. This problem grows during the hydrolysis of birch wood containing large amounts of hemicellulose. This work proposes producing quality glucose solutions using sulfuric acid (H~(2)SO~(4), 80%) catalyzed hydrolysis at 25°C the cellulosic products formed during the catalytic peroxide delignification of birch wood. It is established that the composition of cellulosic products strongly affects the contents of glucose, xylose, and impurities inhibiting the enzymatic synthesis of bioethanol: furfural, 5-hydroxymethyl furfural, and levulinic acid. High yields (80.4–83.5 wt %) of glucose are achieved using cellulosic products produced by integrating the processes of sulfuric acid hydrolysis of hemicelluloses from birch wood and peroxide delignification of prehydrolyzed wood in the presence of catalysts: 2% H~(2)SO~(4)and 1% TiO~(2). Concentration of inhibitors of enzymatic processes in these hydrolyzates is below the allowable limits. Hydrolyzates with maximum glucose content (86.4–88.5 wt %) and minimum concentration of inhibiting impurities produced by acid hydrolysis of cellulosic products treated with an 18% solution of NaOH. Gas chromatography, HPLC, and chromato-mass spectrometry are used to analyze the composition of hydrolyzates. Cellulosic products are examined by SEM, XRD, and chemical analysis.
机译:由于抑制葡萄糖发酵至乙醇的杂质,所以由于抑制葡萄糖发酵的杂质,所形成的葡萄糖溶液的低质量,因此酸催化水解的传统方法是无效的。在含有大量半纤维素的桦木水解过程中存在这种问题。这项工作提出使用硫酸(H〜(2)SO〜(4),80%)在25℃下催化水解的优质葡萄糖溶液在桦木木材的催化过氧化物去氧化术中形成的纤维素产品中催化水解。建立纤维素产品的组成强烈影响葡萄糖,木糖和杂质的含量抑制生物乙醇的酶促合成:糠醛,5-羟甲基糠醛和乙酰丙酸。使用通过将半纤维素的硫酸水解方法与来自氟氯磺酸的硫酸水解方法与丙酸木材的过滤剂在催化剂存在下,使用纤维素产物实现高产率(80.4-83.5wt%)葡萄糖,因此2%h〜(2)所以〜(4)和1%TiO〜(2)。这些水解产物中酶法抑制剂的浓度低于允许的限制。用18%NaOH溶液处理的纤维素产物酸水解产生的最大葡萄糖含量(86.4-88.5wt%)和最小浓度的抑制杂质的最小浓度。气相色谱,HPLC和色谱质质谱法用于分析水解产物的组成。通过SEM,XRD和化学分析检查纤维素产品。

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