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Biorecovery of chitin from shrimp shell waste(Litopenaeus vanamme)using fermentation and co-fermentation of L.plantarum and B.thuringiensis

机译:用L.Plantarum和B的Chitim壳废物(Litopenaeus vanamme)从虾壳废物(Litopenaeus vanamme)的生物冻过.thuringiensis

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Litopenaeus vanamme shrimp shell waste, which is abundantly available in Indonesia, could be optimally utilized through chitin extraction.The high-temperature chemical process is a fast and simple conventional method for extracting chitin.However, for economical and environmentally friendly process, it need a green extraction method through bacterial fermentation.Therefore in this research, biological process was carried out through Litopenaeus vanamme shrimp shell fermentation using various bacteria, such as Lactobacillusplantarum(A), Bacillus thuringiensis(B), and the combination of both bacteria(C)compared to chemical method(D).The yield of method A, B, C and D were: 80.67±0.43%;71.25±0.45%;63.91±1.20%;and 31.46±0.06% respectively.Co-fermentation method(method C)resulting in brighter color, higher deproteination and demineralization degree than single-fermentation methods(method A and B).The deproteination and demineralization degree of method A;B;C;D were: 28.51±0.69%, 17.41±0.89%;47.71±1.01%, 15.08±0.36%;50.29±1.14%, 34.33±1.04%;and 85.17±0.10%, 50.13 ± 0.72% respectively.Chitin produced from biological and chemical method had total nitrogen less than 7%.Based on the calculations through FTIR data, chitin from biological method resulted in higher degree of acetylation than chemical method.The higher the degree of acetylation obtained, the less the polymer is degraded which can preserve chitin structure.
机译:Litopenaeus vanamme虾壳废物在印度尼西亚大量提供,可以通过壳髓萃取来最佳地利用。高温化学过程是一种快速简便的常规方法,用于提取壳酸。然而,对于经济和环保的过程,需要一个通过细菌发酵的绿色提取方法。因此,通过使用各种细菌,例如乳杆菌(A),芽孢杆菌(A),芽孢杆菌(A),Bacillus(c)的组合进行了生物过程,如乳杆菌胰蛋白酶(a),和比较的两种细菌(c)的组合化学方法(D)。方法A,B,C和D的产率为:80.67±0.43%; 71.25±0.45%; 63.91±1.20%;分别为31.46±0.06%。可发酵方法(方法C)导致比单发酵方法更亮,更高的脱核和脱矿质程度(方法A和B)。方法A的脱保护和脱矿度; B; C; D为:28.51±0.69%,17.41±0.89%; 47.71±1.01%,15.08±0.36%; 50.29±1.14%,34.33±1.04%,分别为85.17±0.10%,50.13±0.72%。从生物和化学方法中产生的苯都含量超过7%。基于7%。基于7%通过FTIR数据的计算,从生物学方法中依甲酸丁引起的乙酰化高于化学方法。所获得的乙酰化程度越高,聚合物降低的较少,可以保留几丁质结构。

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