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Chitin and Chitosan Extracted from Shrimp Waste Using Fish Proteases Aided Process: Efficiency of Chitosan in the Treatment of Unhairing Effluents

机译:用鱼蛋白酶辅助工艺从虾粪中提取甲壳质和壳聚糖:壳聚糖在处理无毛废水中的功效

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Extraction and depolymerisation of chitin and chitosan from shrimp waste material was carried out using fish proteases aided process. A high deproteinization level (80 %) was recorded with an Enzyme/Substrate ratio of 10 U/mg. The demineralization of shrimp waste was completely achieved within 6 h at room temperature in HC1 1.25 M, and the residual content of calcium in chitin was below 0.01 %. The degree of N-acetylation, calculated from the ~(13)C CP/MAS-NMR spectrum, was 85 %. The chitin obtained was converted to chitosan by N-deacetylation. X-ray diffraction patterns also indicated two characteristics crystalline peaks approximately at 10° and 20° (20). Chitosan was then evaluated in the treatment of unhairing effluents from the tanning industry. A result showed that chitosan as a coagulant has good performance in alkaline pH and at concentration of 0.5 g/L. Within these conditions, chitosan could decrease turbidity value, total suspended solids (89 % at 1.5 g/L), biological oxygen demand (33.3 % at 1.5 g/L) and chemical oxygen demand (58.7 % at 1.5 g/L).
机译:使用鱼蛋白酶辅助工艺从虾废料中提取甲壳质和壳聚糖并进行解聚。酶/底物比为10 U / mg时,记录到较高的脱蛋白水平(80%)。在室温下于1.25 M的HCl中于6小时内完全实现了虾废物的脱矿质,甲壳质中钙的残留量低于0.01%。由〜(13)C CP / MAS-NMR谱算出的N-乙酰化度为85%。通过N-脱乙酰化将获得的几丁质转化为壳聚糖。 X射线衍射图还显示了大约在10°和20°处的两个特征结晶峰(20)。然后评估了脱乙酰壳多糖在制革工业中脱毛废水的处理中。结果表明,壳聚糖作为凝结剂在碱性pH和浓度为0.5 g / L时具有良好的性能。在这些条件下,壳聚糖可降低浊度值,总悬浮固体(1.5 g / L时为89%),生物需氧量(1.5 g / L时为33.3%)和化学需氧量(1.5 g / L时为58.7%)。

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