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Optimization studies of chitin and chitosan production from Penaeus notialis shell waste

机译:对虾壳废料生产甲壳素和壳聚糖的优化研究

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Optimization studies of extraction of chitin and chitosan from pink shrimp (Penaeus notialis) shell waste and of the degree of deacetylation (DDA) of extracted chitosan were investigated via the Box-Behnken design of experiments using response surface methodology. Robust quadratic models for predicting the extraction yields of chitin and chitosan and DDA of chitosan were obtained. These models were verified by determining their eigenvalues and determinants, thereby revealing the nature of the optimum points and Hessian matrices. The respective modelled optimization conditions for the maximum yields of chitin and chitosan and for the highest DDA of chitosan were obtained thus: (3.25 M HCl solution, 19.03 h demineralization time, 2.43 M NaOH solution, and 2.03 h deproteinization time), (50% w/w NaOH solution, 87.9°C deacetylation temperature, and 145.26 min deacetylation time) and (50% w/w NaOH solution, 97.2°C deacetylation temperature, and 90 min deacetylation time). Excellent agreements were achieved between the experimental responses (extraction yields of chitin and chitosan, and DDA of extracted chitosan) and their predicted values with % error <5 in all cases.
机译:通过Box-Behnken设计,采用响应面方法,对粉虾(Penaeus notialis)壳废料中的几丁质和壳聚糖的提取以及脱乙酰壳多糖的脱乙酰度(DDA)进行了优化研究。获得了用于预测甲壳素和壳聚糖提取率以及壳聚糖的DDA的鲁棒二次模型。通过确定它们的特征值和行列式来验证这些模型,从而揭示了最佳点和Hessian矩阵的性质。从而获得了分别为甲壳质和壳聚糖的最大产率和壳聚糖的最高DDA的各自模型优化条件:(3.25 M HCl溶液,19.03 h脱矿时间,2.43 M NaOH溶液和2.03 h脱蛋白时间),(50% w / w NaOH溶液,87.9°C脱乙酰基温度和145.26分钟脱乙酰基时间)和(50%w / w NaOH溶液,97.2°C脱乙酰基温度和90分钟脱乙酰基时间)。在所有情况下,实验响应(几丁质和壳聚糖的提取率以及提取的壳聚糖的DDA)与它们的预测值之间均达到了极好的一致性,且误差%<5。

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