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虾壳废弃物制备壳聚糖过程中脱乙酰度和摩尔质量的同步优化

Simultaneous Optimization of Deacetylation Degree and Molar Mass of Chitosan from Shrimp Waste.

作者信息

Dinculescu Daniel Dumitru, Apetroaei Manuela Rossemary, Gîjiu Cristiana Luminița, Anton Mirela, Enache Laura, Schröder Verginica, Isopescu Raluca, Rău Ileana

机构信息

Faculty of Chemical Engineering and Biotechnologies, National University of Science and Technology POLITEHNICA Bucharest, 011061 Bucharest, Romania.

Faculty of Navigation and Naval Management, Mircea cel Bătrân Naval Academy, 900218 Constanta, Romania.

出版信息

Polymers (Basel). 2024 Jan 6;16(2):170. doi: 10.3390/polym16020170.

Abstract

Shrimp waste is a valuable source for chitin extraction and consequently for chitosan preparation. In the process of obtaining chitosan, a determining step is the chitin deacetylation. The main characteristic of chitosan is the degree of deacetylation, which must be as high as possible. The molar mass is another important parameter that defines its utilizations, and according to these, high or low molar masses are required. The present study is an attempt to optimize the deacetylation step to obtain chitosan with a high degree of deacetylation and high or low molar mass. The study was carried out based on experimental data obtained in the frame of a central composite design where three working parameters were considered: NaOH concentration, liquid:solid ratio, and process duration. The regression models defined for the degree of deacetylation (DD) and for the mean molar mass (MM) of chitosan powders were used in the formulation of optimization problems. The objectives considered were simultaneous maximum DD and maximum/minimum MM for the final chitosan samples. For these purposes, multiobjective optimization problems were formulated and solved using genetic algorithms implemented in Matlab. The multiple optimal solutions represented by trade-offs between the two objectives are presented for each case.

摘要

虾壳废料是提取甲壳素从而制备壳聚糖的宝贵来源。在获取壳聚糖的过程中,一个决定性步骤是甲壳素的脱乙酰化。壳聚糖的主要特性是脱乙酰化程度,该程度必须尽可能高。摩尔质量是定义其用途的另一个重要参数,根据这些用途,需要高或低摩尔质量。本研究旨在优化脱乙酰化步骤,以获得具有高脱乙酰化程度和高或低摩尔质量的壳聚糖。该研究基于在中心复合设计框架内获得的实验数据进行,其中考虑了三个工作参数:氢氧化钠浓度、液固比和处理持续时间。为壳聚糖粉末的脱乙酰化程度(DD)和平均摩尔质量(MM)定义的回归模型用于优化问题的制定。所考虑的目标是最终壳聚糖样品同时达到最大DD和最大/最小MM。为此,使用Matlab中实现的遗传算法制定并解决了多目标优化问题。针对每种情况,给出了由两个目标之间的权衡表示的多个最优解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc08/10820840/8d13d5a073f0/polymers-16-00170-g001.jpg

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