废虾壳羧甲基虾壳聚糖(CMSCh)的合成与表征

Nuran Celikci, C. Ziba, M. Dolaz
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引用次数: 3

摘要

几丁质是蟹、虾等贝类的主要成分,是继纤维素之后应用最广泛的生物聚合物之一。今天,虽然废物的回收利用变得越来越重要,但大量的海鲜壳,如螃蟹和虾,正在世界各地被破坏,没有多少评估。壳聚糖具有无毒、可生物降解、生物相容性好等优点,与几丁质相比具有许多应用优势,在化妆品、医药和农业等领域有着广泛的应用,在化学和物理性能方面均表现出其他生物聚合物所不能比拟的优越性。本研究首先对废虾壳进行脱蛋白、脱矿和脱菌处理,去除虾壳中的矿物质和蛋白质。然后通过分离甲壳素合成壳聚糖和羧甲基虾壳聚糖。采用FT-IR、XRD和NMR等光谱方法对甲壳素-壳聚糖和CMSCh的结构进行了表征,并计算了它们的脱乙酰度。并用SEM和DTA-TG分析了材料的表面形貌和热性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis and characterization of carboxymethyl shrimp chitosan (CMSCh) from waste shrimp shell
Chitin, the main component of shellfish such as crab and shrimp, is one of the most used biopolymers after cellulose. Today, although recycling of waste is becoming increasingly important, large quantities of seafood shells such as crab and shrimp are being destroyed around the world without much evaluation. Chitosan, which is non-toxic, biodegradable-biocompatible and has many application advantages compared to chitin, is used in many sectors, especially cosmetics, pharmaceuticals and agriculture, as it shows superior properties compared to other biopolymers in terms of chemical and physical properties. In this study, in order to evaluate waste shrimp shells (WSS), shrimp shells were first removed from their minerals and proteins by deproteinization, demineralization and deacetilization processes. Then, chitosan and carboxymethyl shrimp chitosan (CMSCh) were synthesized by isolation of chitin. The structures of Chitin-chitosan and CMSCh were characterized by spectroscopic methods (FT-IR, XRD and NMR) and the deacetylation degrees of them were calculated. Also, surface morphologies and thermal properties were analyzed by SEM and DTA-TG, respectively.
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