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Preparation of glucosamine by hydrolysis of chitosan with commercial α-amylase and glucoamylase*

机译:用市售α-淀粉酶和葡糖淀粉酶水解壳聚糖制备葡糖胺

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摘要

Objective: In order to overcome the defects of chemical hydrolysis approach to prepare glucosamine, an enzymatic hydrolysis method was developed. Methods: Glucosamine was prepared by hydrolyzing chitosan, employing α-amylase initially, and subsequently, glucoamylase. Results: The optimal hydrolyzing conditions were as follows: reaction time, 4 h; pH, 5.0; temperature, 50 °C; and, α-amylase, 80 U/g for the initial reaction. Subsequently, glucoamylase was added in the presence of α-amylase. The optimal reaction conditions were found to be: reaction time, 8 h; pH, 4.5; temperature, 55 °C; and, glucoamylase, 4 000 U/g. The hydrolysates were subject to filtrating, concentrating to about 20% (w/w), precipitating with five volumes of ethanol, and drying at 60 °C for 2 h. The content and the yield of glucosamine in the dried precipitate were 91.3% (w/w) and 86.2% (w/w), respectively. Conclusions: The method developed in this study is a promising option in the preparation of glucosamine.
机译:目的:为克服化学水解法制备葡萄糖胺的不足,开发了一种酶法水解法。方法:通过水解壳聚糖制备葡萄糖胺,先使用α-淀粉酶,然后再使用葡萄糖淀粉酶。结果:最佳水解条件为:反应时间4 h,反应时间4 h。 pH值5.0;温度,50°C;对于初始反应,α-淀粉酶为80 U / g。随后,在α-淀粉酶的存在下添加葡糖淀粉酶。发现最佳反应条件为:反应时间8h;反应时间8h。 pH值4.5;温度55°C;葡糖淀粉酶为4000 U / g。将水解产物过滤,浓缩至约20%(w / w),用五倍体积的乙醇沉淀,并在60℃下干燥2小时。干燥的沉淀物中葡萄糖胺的含量和产率分别为91.3%(w / w)和86.2%(w / w)。结论:本研究开发的方法是制备葡萄糖胺的有前途的选择。

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