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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A novel kinetic model for polysaccharide dissolution during atmospheric acetic acid pretreatment of sugarcane bagasse
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A novel kinetic model for polysaccharide dissolution during atmospheric acetic acid pretreatment of sugarcane bagasse

机译:蔗糖常压乙酸预处理过程中多糖溶解的动力学模型

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摘要

Acetic acid (AcH) pretreatment of sugarcane bagasse with the catalysis of sulfuric acid (SA) could greatly enhance the enzymatic digestibility of cellulose. However, polysaccharide dissolution happened inevitably during the pretreatment. It was found that the simplest model, which assumes that the total polysaccharides were reactive to be dissolved, could not well describe the kinetic behavior of polysaccharide dissolution. A novel pseudo-homogenous kinetic model was thus developed by introducing a parameter termed as "potential dissolution degree'' (δd_d) based on the multilayered structure of cell wall. It was found that solid xylan and glucan dissolutions were a first-order reaction with respect to the dissolvable fraction. Due to the delignification action of AcH, polysaccharide dissolutions were enhanced in AcH media compared with those in aqueous system. Acetylizations of cellulose and sugars were also observed, and AcH concentration showed a significant influence on the degree of acetylization.
机译:乙酸(SAH)催化甘蔗渣的醋酸(AcH)预处理可以大大提高纤维素的酶消化率。但是,在预处理过程中不可避免地会发生多糖溶解。发现最简单的模型(假设总多糖具有反应性,可以溶解)不能很好地描述多糖溶解的动力学行为。因此,通过在细胞壁的多层结构的基础上引入称为“潜在溶解度”(δd_d)的参数,建立了一种新的拟均相动力学模型,发现固体木聚糖和葡聚糖的溶解是一阶反应。与水溶体系相比,由于AcH的去木质素作用,多糖在AcH介质中的溶解度得到了增强,纤维素和糖的乙酰化作用也受到明显影响,并且AcH的浓度对乙酰化度有显着影响。

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