壳聚糖:对其提取、应用、限制因素和未来前景的深入分析

Shreya Hegde, S. Selvaraj
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摘要

本综述的主要重点是一种生态友好型生物聚合物壳聚糖,它主要是通过将环境废物转化为有用的应用而生产出来的。 壳聚糖具有抗微生物、可生物降解和无毒等独特特性,因此备受关注。 本研究探讨了从甲壳类动物、真菌和昆虫等各种来源生产和提取壳聚糖的多种方法。 现有技术分为化学方法和生物方法,并进一步分为酶法和发酵法。本综述还涉及壳聚糖生产过程中的上游和下游步骤。此外,还介绍了几种用于表征壳聚糖的技术,包括傅立叶变换红外光谱法、电位滴定法、差示扫描量热法、热重分析法、X 射线粉末衍射法和发射扫描电子显微镜法。此外,还对从昆虫和真菌菌株等来源提取的壳聚糖的特性进行了比较。将从真菌菌株和昆虫等来源获得的壳聚糖的特性与商业壳聚糖的特性进行了比较。 本研究还关注壳聚糖在医疗领域、污水处理厂、农业领域、食品包装行业和化妆品行业的最新应用。此外,还讨论了与壳聚糖在卫生领域相关的一些专利。最后,报告得出结论,有必要对壳聚糖及其衍生物进行进一步研究,以充分了解这种聚合物的优势。 报告还强调了从甲壳类动物、昆虫和真菌中提取壳聚糖的困难。 为了充分发掘这种聚合物的优势,结论是有必要进一步研究壳聚糖及其衍生物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CHITOSAN: AN IN-DEPTH ANALYSIS OF ITS EXTRACTION, APPLICATIONS, CONSTRAINTS, AND FUTURE PROSPECTS
The primary focus of this review is an eco-friendly biopolymer chitosan which is mainly produced by the conversion of environmental wastes into useful applications.  Chitosan has drawn much interest due to its unusual characteristics, including anti-microbial, biodegradability, and non-toxicity.  This study explores numerous approaches available for the production and extraction of chitosan from various sources, including crustaceans, fungi, and insects.   The available techniques are classified into chemical and biological methods and further divided into enzymatic and fermentation methods. This review also covers the steps in the upstream and downstream processes that are involved in the production of chitosan. Additionally, a few techniques available for the characterization of chitosan are covered, including Fourier transform infrared spectroscopy, potentiometric titration, differential scanning calorimetry, thermogravimetric analysis, X-ray powder diffraction, and emission scanning electron microscopy. Comparisons are also made between the characteristics of chitosan derived from sources like insects and fungal strains. Characteristics of chitosan obtained from sources such as fungal strains and insects are compared with those of commercial chitosan.  This study also focuses on the most recent applications of chitosan in the medical sector, wastewater treatment plant, agricultural sector, food packaging industry, and cosmetic industry. A few patents related to chitosan in the health sector are also discussed. Finally, it concludes that further research on chitosan and its derivatives is necessary to fully understand the advantages of this polymer.  It also emphasizes the difficulties involved in extracting chitosan from crustaceans, insects, and fungi.  To fully explore the advantages of this polymer, it is concluded that further research into chitosan and its derivatives is necessary.
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