Enhancing hemp fiber performance: insights into chitosan treatment and structural evolution

Xue Wang, Fuwang Zhao, T. Cheung, Cheng-hao Lee, Li Li
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Abstract

Hemp fiber, recognized for its eco-friendliness, wide availability, and biodegradability, stands as a renewable resource with promising applications. To fully harness its potential, it is crucial to study the relationship between chitosan concentration and both the mechanical and thermal properties of hemp fiber. Understanding these effects can provide a direction to improve the properties and functionalities of hemp fiber, which are essential for many applications, including textiles and construction and automotive materials. Chitosan is known to enhance the antimicrobial and adsorption properties of fibers by changing the chemical properties of the fiber surface. However, up to now, a very limited number of studies have focused on the exact effect of chitosan on the mechanical and thermal stability properties of hemp fibers. Here, the effect of treatment with different concentrations of chitosan solutions is investigated to enhance the properties of hemp fibers and the treated hemp fibers are characterized. It is found that chitosan solution treatment can effectively improve the various properties of hemp fibers. The chitosan treatment improved the surface roughness of hemp fibers. The tensile strength and flexibility of hemp fibers were enhanced. The CSHF-1.5% sample exhibited the highest tensile strength of 616.11 MPa and the lowest tensile modulus of 15.61 GPa. The fiber swelling rate increased to 24.73% at a chitosan solution concentration of 1.5%. The results of thermogravimetric analysis and differential scanning calorimetry analysis demonstrated the effectiveness of chitosan solution treatment in enhancing the thermal stability of hemp fibers. These findings propose a promising method for a significant modification of hemp fiber's mechanical and thermal stability.
提高麻纤维性能:壳聚糖处理和结构演变的启示
大麻纤维因其生态友好性、广泛的可用性和生物降解性而被公认为一种具有广阔应用前景的可再生资源。要充分利用其潜力,研究壳聚糖浓度与大麻纤维机械性能和热性能之间的关系至关重要。了解这些影响可为改善大麻纤维的特性和功能提供方向,而这些特性和功能在纺织品、建筑材料和汽车材料等许多应用中都至关重要。众所周知,壳聚糖可通过改变纤维表面的化学性质来增强纤维的抗菌和吸附性能。然而,迄今为止,关于壳聚糖对麻纤维机械和热稳定性能的确切影响的研究非常有限。在此,我们研究了用不同浓度的壳聚糖溶液处理大麻纤维对提高大麻纤维性能的影响,并对处理后的大麻纤维进行了表征。研究发现,壳聚糖溶液处理能有效改善大麻纤维的各种性能。壳聚糖处理改善了大麻纤维的表面粗糙度。大麻纤维的抗拉强度和柔韧性得到提高。CSHF-1.5%样品的抗拉强度最高,为616.11 MPa,拉伸模量最低,为15.61 GPa。壳聚糖溶液浓度为 1.5%时,纤维膨胀率增至 24.73%。热重分析和差示扫描量热分析的结果表明,壳聚糖溶液处理能有效提高麻纤维的热稳定性。这些发现为显著改变大麻纤维的机械和热稳定性提供了一种可行的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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