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利用天然交联剂调控基于褐藻藻酸盐的纤维性能以用于可持续纺织和时尚应用

Modulating the Properties of Brown Alga Alginate-Based Fibers Using Natural Cross-Linkers for Sustainable Textile and Fashion Applications.

作者信息

Badruddin Ishrat J, Silva Mariana P, Tonon Thierry, Gomez Leonardo D, Rahatekar Sameer S

机构信息

Composites and Advanced Materials Centre, School of Aerospace, Transport and Manufacturing, Cranfield University, Bedfordshire MK43 0AL, United Kingdom.

Centre for Novel Agricultural Product, Department of Biology, University of York, Wentworth Way, York YO10 5DD, United Kingdom.

出版信息

ACS Omega. 2024 Aug 21;9(35):37002-37011. doi: 10.1021/acsomega.4c03037. eCollection 2024 Sep 3.

Abstract

Seaweed-derived alginate shows promise in the textile industry as a sustainable alternative to synthetic and natural materials. However, challenges arise due to its low mechanical strength. We addressed this limitation by sustainably extracting alginates from European brown algae and employing novel manufacturing methods. Using natural cross-linkers, such as chitosan, ferulic acid, and citric acid, we have successfully modulated the mechanical properties of alginate fibers. Mechanical properties of ferulic acid and citric acid-cross-linked alginate solutions were spinnable, producing fibers with a diameter of 73-75 μm. Ferulic acid cross-linked alginate fibers exhibited stiffness, with a tensile strength of 52.97 MPa and a strain percentage of 20.77, mechanical properties comparable to those of wool, polyester, and rayon. In contrast, citric acid-cross-linked fibers showed partial elasticity, with a tensile strength of 14.35 MPa and a strain percentage of 45.53, comparable to those of nylon. This ability to control the mechanical properties of seaweed-derived fibers represents a significant advancement for their application in sustainable textiles and the fashion industry.

摘要

源自海藻的藻酸盐在纺织工业中显示出有望成为合成材料和天然材料的可持续替代品。然而,由于其机械强度低,出现了一些挑战。我们通过可持续地从欧洲褐藻中提取藻酸盐并采用新颖的制造方法来解决这一限制。使用壳聚糖、阿魏酸和柠檬酸等天然交联剂,我们成功地调节了藻酸盐纤维的机械性能。阿魏酸和柠檬酸交联的藻酸盐溶液的机械性能是可纺的,生产出直径为73 - 75μm的纤维。阿魏酸交联的藻酸盐纤维表现出刚性,其拉伸强度为52.97MPa,应变百分比为20.77,机械性能与羊毛、聚酯和人造丝相当。相比之下,柠檬酸交联的纤维表现出部分弹性,其拉伸强度为14.35MPa,应变百分比为45.53,与尼龙相当。这种控制源自海藻的纤维机械性能的能力代表了它们在可持续纺织品和时尚产业应用方面的重大进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4da8/11375709/2464bea13659/ao4c03037_0001.jpg

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