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Chitin Extraction from Lobster Shell Waste using Microbial Culture-based Methods

机译:基于微生物培养的方法从龙虾壳废料中提取几丁质

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摘要

Background and Objective: Lobster shell waste from seafood processing industry was used as the source of raw material to produce the valuable biopolymer chitin. Chemical and biological treatments of lobster shell waste were performed and compared. Material and Methods: The chemical method required the use of aqueous solutions of HCl and NaOH. Biological treatment included the use of co-cultures with a protease-producing bacterium, either Bacillus megaterium NH21 or Serratia marcescens db11, and an organic acid-producing bacterium Lactobacillus plantarum . The optimal culture conditions, including co-cultivation strategies and glucose concentrations, were identified to improve efficiency of lobster shell deproteinization and demineralization. Results and Conclusion: Overall, the successive treatment with a combination of Serratia marcescens db11 and Lactobacillus plantarum resulted in the best co-removal of CaCO 3 and proteins and chitin yield (82.56%) from lobster shell biomass, with total deproteinization of 87.19% and total demineralization of 89.59%. The results from the proof-of-concept study described here suggest that microbial treatment may be an environmentally friendly alternative to the chemical method of chitin extraction.
机译:背景与目的:以海鲜加工行业的龙虾壳废料为原料,生产有价值的生物聚合物甲壳质。进行了龙虾壳废物的化学和生物处理,并进行了比较。材料和方法:化学方法要求使用HCl和NaOH的水溶液。生物处理包括与产生蛋白酶的细菌(巨型芽孢杆菌NH21或粘质沙雷氏菌db11)和产生有机酸的细菌植物乳杆菌(Lactobacillus plantarum)共同培养。确定了最佳培养条件,包括共培养策略和葡萄糖浓度,以提高龙虾壳脱蛋白和脱矿质的效率。结果与结论:总体而言,粘质沙雷氏菌db11和植物乳杆菌的连续处理导致龙虾壳生物量对CaCO 3和蛋白质和几丁质产量的共去除效果最好(82.56%),总脱蛋白率为87.19%,总脱盐率为89.59%。此处描述的概念验证研究的结果表明,微生物处理可能是几丁质提取化学方法的一种环保选择。

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