Zhang Xiaolin, Wang Xinran, Fan Wei, Liu Yi, Wang Qi, Weng Lin
School of Textile-Science and Engineering, Xi'an Polytechnic University, Xi'an 710048, China.
Key Laboratory of Functional Textile Material and Product, Xi'an Polytechnic University, Ministry of Education, Xi'an 710048, China.
Polymers (Basel). 2022 Aug 8;14(15):3227. doi: 10.3390/polym14153227.
As a natural linear polysaccharide, alginate can be gelled into calcium alginate fiber and exploited for functional material applications. Owing to its high hygroscopicity, biocompatibility, nontoxicity and non-flammability, calcium alginate fiber has found a variety of potential applications. This article gives a comprehensive overview of research on calcium alginate fiber, starting from the fabrication technique of wet spinning and microfluidic spinning, followed by a detailed description of the moisture absorption ability, biocompatibility and intrinsic fire-resistant performance of calcium alginate fiber, and briefly introduces its corresponding applications in biomaterials, fire-retardant and other advanced materials that have been extensively studied over the past decade. This review assists in better design and preparation of the alginate bio-based fiber and puts forward new perspectives for further study on alginate fiber, which can benefit the future development of the booming eco-friendly marine biomass polysaccharide fiber.
作为一种天然线性多糖,海藻酸盐可凝胶化为海藻酸钙纤维,并用于功能材料应用。由于其高吸湿性、生物相容性、无毒和不燃性,海藻酸钙纤维已发现多种潜在应用。本文全面综述了海藻酸钙纤维的研究,从湿法纺丝和微流控纺丝的制备技术开始,接着详细描述了海藻酸钙纤维的吸湿能力、生物相容性和固有耐火性能,并简要介绍了其在生物材料、阻燃剂和其他先进材料中的相应应用,这些应用在过去十年中得到了广泛研究。这篇综述有助于更好地设计和制备基于海藻酸盐的生物基纤维,并为海藻酸盐纤维的进一步研究提出新的观点,这有利于蓬勃发展的环保型海洋生物质多糖纤维的未来发展。