用甘油和琥珀酸对脱水细菌纤维素进行改性,并将其应用于纺织业

IF 1.5 Q2 MATERIALS SCIENCE, TEXTILES
Hung Ngoc Phan, S. Okubayashi
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引用次数: 0

摘要

目的脱水细菌纤维素(BC)固有的刚性限制了其在纺织品、皮革、医疗保健和其他领域的应用。本研究旨在利用甘油和琥珀酸以及催化剂和热量,通过一种可工业化扩展的填充方法,产生一种新颖的细菌纤维素改性方法,以解决细菌纤维素刚度不足的问题,并增强细菌纤维素的性能。设计/方法/途径通过机械脱水生成织物状细菌纤维素,然后利用甘油、琥珀酸、催化剂和热量通过填充方法完成改性。采用了全面的材料表征方法,包括刚度、弯曲性能(悬臂法)、拉伸性能、湿气透过率、含水率和回潮率、洗涤、热重分析、导数热重分析、傅立叶变换红外光谱和比色测量等国际测试标准。研究结果萃取物/甘油/丁二酸的组合极大地增强了多孔结构、伸长率(27.40 ± 6.39%)、柔韧性(弯曲刚度为 21.46 ± 4.01 µN m;弯曲模量为 97.45 ± 18.20 MPa)和湿度管理(水蒸气透过率为 961.07 ± 86.16 g/m2/24 h;含水量为 27.43 ± 2.50%;回潮率为 37.94 ± 4.73%)。这一软化过程改变了 BC 的热稳定性。此外,这项研究还通过在催化剂中添加琥珀酸并加热,缓解了甘油和纤维素之间的亲和力不强所导致的 BC 和甘油洗涤(五个循环)的缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modification of dehydrated bacterial cellulose with glycerol and succinic acid by using padding method for textile applications
Purpose Dehydrated bacterial cellulose’s (BC) intrinsic rigidity constrains applicability across textiles, leather, health care and other sectors. This study aims to yield a novel BC modification method using glycerol and succinic acid with catalyst and heat, applied via an industrially scalable padding method to tackle BC’s stiffness drawbacks and enhance BC properties. Design/methodology/approach Fabric-like BC is generated via mechanical dehydration and then finished by using padding method with glycerol, succinic acid, catalyst and heat. Comprehensive material characterizations, including international testing standards for stiffness, bending properties (cantilever method), tensile properties, moisture vapor transmission rate, moisture content and regain, washing, thermal gravimetric analysis, derivative thermogravimetry, Fourier-transform infrared spectroscopy and colorimetric measurement, are used. Findings The combination of BC/glycerol/succinic acid dramatically enhanced porous structure, elongation (27.40 ± 6.39%), flexibility (flexural rigidity of 21.46 ± 4.01 µN m; bending modulus of 97.45 ± 18.20 MPa) and moisture management (moisture vapor transmission rate of 961.07 ± 86.16 g/m2/24 h; moisture content of 27.43 ± 2.50%; and moisture regain of 37.94 ± 4.73%). This softening process modified the thermal stability of BC. Besides, this study alleviated the drawbacks for washing (five cycles) of BC and glycerol caused by the ineffective affinity between glycerol and cellulose by adding succinic acid with catalyst and heat. Originality/value The study yields an effective padding process for BC softening and a unique modified BC to contribute added value to textile and leather industries as a sustainable alternative to existing materials and a premise for future research on BC functionalization by using doable technologies in mass production as padding.
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来源期刊
Research journal of textile and apparel
Research journal of textile and apparel MATERIALS SCIENCE, TEXTILES-
CiteScore
2.90
自引率
13.30%
发文量
46
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