PG & Research Department of Physics, Holy Cross College (Autonomous), Nagercoil, India; Manonmanium Sundaranar University, Tirunelveli, 627012, Tamil Nadu, India.
School of Chemical Engineering, Yeungnam University, Gyeongsan-si, 712-749, South Korea.
Environ Res. 2023 Sep 15;233:116415. doi: 10.1016/j.envres.2023.116415. Epub 2023 Jun 19.
The production of reinforced composite materials can generally benefit greatly from the use of natural cellulosic woody fibers as good sustainable resources. Natural plants like hemp, cotton, and bamboo are great options for knitters and crocheters looking to make eco-friendly goods. The current study examines the properties of natural fiber obtained from the stem of the Acacia pennata (AP) plant, as well as its basic physico-chemical, structural, thermal, and mechanical characteristics. The key goal of this work was to investigate how alkali treatment affected the AP fibers' morphology, chemical composition, tensile capabilities, morphological changes, structural changes, and thermal degradation (APFs). The SEM image and pXRD analyses support the improved surface roughness of the fiber, and that was seen after the alkaline treatment. From XRD analysis, the fiber crystallinity index (54.65%) was improved and it was connected to their SEM pictograms in comparison to untreated APF. Alkali-treated AP fibers include a higher percentage of chemical components including cellulose (51.38%) and ash (5.13%). Alkali-treated AP fibers have a lower amount of hemi-cellulose (30.30%), lignin (20.96%), pectin (8.77%), wax (0.12%), and moisture (13.44%) than untreated APF. Their low density and high cellulosic content will improve their ability to fiber matrices. The thermal behavior of AP fiber at various temperatures was demonstrated by TG-DTA analysis, and tensile strength was also investigated.
增强复合材料的生产通常可以从使用天然纤维素木质纤维作为良好的可持续资源中受益匪浅。对于希望制作环保产品的编织者和钩针编织者来说,大麻、棉花和竹子等天然植物是不错的选择。本研究考察了从金合欢属植物茎中获得的天然纤维的性能,以及其基本的物理化学、结构、热和机械特性。这项工作的主要目的是研究碱处理如何影响 AP 纤维的形态、化学成分、拉伸性能、形态变化、结构变化和热降解(APFs)。SEM 图像和 pXRD 分析支持纤维表面粗糙度的提高,这是在碱性处理后观察到的。从 XRD 分析可以看出,纤维结晶度指数(54.65%)得到了提高,与未经处理的 APF 相比,这与它们的 SEM 图像有关。经过碱处理的 AP 纤维含有更多的化学物质,包括纤维素(51.38%)和灰分(5.13%)。经过碱处理的 AP 纤维的半纤维素(30.30%)、木质素(20.96%)、果胶(8.77%)、蜡(0.12%)和水分(13.44%)含量低于未经处理的 APF。它们的低密度和高纤维素含量将提高其与纤维基质的结合能力。通过 TG-DTA 分析研究了 AP 纤维在不同温度下的热行为,并对拉伸强度进行了研究。