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Direct Enzymatic Production of Oligosaccharide Mixtures from Sugar Beet Pulp: Experimental Evaluation and Mathematical Modeling

机译:从甜菜浆中直接酶法生产寡糖混合物的实验评估和数学建模

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The potential of sugar beet pulp as raw material for neutral and acidic oligosaccharide production by direct enzymatic treatment was evaluated. The effect of the polygalacturonase to solid ratio (PGaseSR), cellulase activity to polygalacturonase activity ratio (CPGaseR), and reaction time (r) on several dependent variables (selected to quantify the mass of recovered liquors, the conversion of each polysaccharide into monosaccharides, and the conversion of each polysaccharide into oligomers) was studied. Mathematical models suitable for reproducing and predicting the experi-mental results were also developed. Operational conditions leading to a maximum oligomer production were calculated from models being PGaseSR = 10 U/g, CPGaseR = 0.725 filter paper units/U, and f = 12.82 h. Under these conditions, the models predicted that 906 kg of liquors containing 26.7 kg of oligosaccharides can be obtained from 100 kg of SBP, the distribution being as follows: 5.9 kg of glucooligosaccharides, 2.4 kg of galactooligosaccharides, 9.7 kg of arabinooligo-saccharides, and 8.7 kg of oligogalacturonides. Therefore, this study demonstrated that pectic oligomers (for which prebiotic properties have been reported) can be obtained from SBP at high yield by direct enzymatic hydrolysis using mixtures of cellulases and pectinases.
机译:评价了通过直接酶处理生产甜菜浆作为原料生产中性和酸性寡糖的潜力。聚半乳糖醛酸酶与固体之比(PGaseSR),纤维素酶活性与聚半乳糖醛酸酶活性之比(CPGaseR)以及反应时间(r)对几个因变量的影响(用于量化回收液的质量,将每种多糖转化为单糖,并研究了每种多糖向低聚物的转化)。还开发了适用于再现和预测实验结果的数学模型。根据以下模型计算出导致最大低聚物产生的操作条件:PGaseSR = 10 U / g,CPGaseR = 0.725滤纸单位/ U,f​​ = 12.82 h。在这些条件下,模型预测,从1​​00千克SBP中可以得到906千克含有26.7千克寡糖的酒,分布如下:5.9千克葡萄糖寡糖,2.4千克低聚半乳糖,9.7千克阿拉伯低聚糖和8.7公斤低聚半乳糖苷。因此,该研究表明,通过使用纤维素酶和果胶酶的混合物直接进行酶水解,可以从SBP以高收率获得果胶低聚物(已报道了其益生元的特性)。

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