Production and characterization of polymeric nanocomposite foams based on starch and cellulose nanofibers from oil palm mesocarp fiber

IF 3.674 4区 工程技术 Q1 Engineering
Mariana Costa Souza, Ana Paula Bispo Gonçalves, Emanoel Igor da Silva Oliveira, Juscivaldo Passos dos Santos, Lídia Kunz Lazzari, Ademir José Zattera, Nadia Mamede José
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Abstract

The demand for sustainable and eco-friendly materials has promoted studies over the years to explore different polymeric materials that meet requirements such as biodegradability and sustainability. In this context, biopolymer materials based on cellulose nanoparticles and starch from different botanical sources have been investigated, aiming to achieve satisfactory performance. The present study aims to develop and characterize cassava starch foams based on density, scanning electron microscopy (SEM), and three-point flexure tests, and to evaluate the effect of cellulose nanofibers obtained from palm mesocarp fibers using the ultrafine friction grinding method after different processing times, characterized by X-ray diffractometry (XRD), microscopy, and chemical composition, as a reinforcing filler. The chemical composition and scanning electron microscopy revealed the effectiveness of the cellulose isolation process, with  the analysis of the chemical composition revealing a cellulose content of 55.70% in the fibers after pulping and bleaching, in addition to changes in the visual characteristics of the material after the process aimed at isolating the cellulose. After grinding, XRD showed an increase in crystallinity (76.1% at the maximum grinding time), along with typical microscopy images of cellulose nanofibers. The analysis of the obtained nanocomposites provided insights into the role of these nanostructures in the thermo-expanded starch matrix, indicating that the nanofibers promoted changes such as an increase in mechanical properties and crystallinity, which contributed to improving overall mechanical performance. A 67.48% increase in flexural strength was achieved for the formulation with cellulose nanofibers that underwent 150 min of grinding, without causing major variations in density.

油棕中果皮淀粉和纤维素纳米纤维复合泡沫聚合物的制备及表征
多年来,对可持续和环保材料的需求推动了研究,探索满足生物降解性和可持续性等要求的不同聚合物材料。在这种情况下,基于纤维素纳米颗粒和来自不同植物来源的淀粉的生物聚合物材料已经被研究,旨在获得令人满意的性能。本研究旨在基于密度、扫描电镜(SEM)和三点挠曲测试来开发和表征木薯淀粉泡沫,并通过x射线衍射(XRD)、显微镜和化学成分来评价采用超细摩擦研磨法从棕榈中果皮纤维中获得的纤维素纳米纤维在不同加工时间后作为补强填料的效果。化学成分和扫描电子显微镜显示了纤维素分离过程的有效性,化学成分分析显示,在制浆和漂白后的纤维中纤维素含量为55.70%,此外,在分离纤维素的过程后,材料的视觉特性也发生了变化。粉碎后的XRD结果表明,纤维素纳米纤维的结晶度增加(最大粉碎时间为76.1%),并具有典型的显微图像。对所获得的纳米复合材料的分析提供了这些纳米结构在热膨胀淀粉基质中的作用,表明纳米纤维促进了诸如机械性能和结晶度的增加等变化,从而有助于提高整体机械性能。经过150分钟研磨的纤维素纳米纤维配方的抗弯强度提高了67.48%,而密度没有发生重大变化。
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来源期刊
Applied Nanoscience
Applied Nanoscience Materials Science-Materials Science (miscellaneous)
CiteScore
7.10
自引率
0.00%
发文量
430
期刊介绍: Applied Nanoscience is a hybrid journal that publishes original articles about state of the art nanoscience and the application of emerging nanotechnologies to areas fundamental to building technologically advanced and sustainable civilization, including areas as diverse as water science, advanced materials, energy, electronics, environmental science and medicine. The journal accepts original and review articles as well as book reviews for publication. All the manuscripts are single-blind peer-reviewed for scientific quality and acceptance.
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