Development of Environmentally Ecofriendly Composites Based on Polypropylene/Bahia Beige Waste: Effect of Reinforcement Content on Physical, Mechanical, Chemical, and Microstructural Properties

Rayara Silva dos Santos, Pedro Henrique Poubel Mendonça da Silveira, Beatriz Cruz Bastos, Marceli do Nascimento da Conceição, Roberto Carlos da Conceição Ribeiro, Daniele Cruz Bastos
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Abstract

This article presents the development and characterization of environmentally friendly composites comprising polypropylene (PP) reinforced with Bahia Beige (BB) marble waste. The composites were prepared using different PP/BB weight ratios and analyzed for their chemical, physical, mechanical, microstructural, and thermal properties. X-ray fluorescence (XRF) analysis revealed the composition of BB, which exhibited a significant concentration of CaO, indicating the presence of calcite and other oxides. X-ray diffraction (XRD) analysis confirmed the presence of PP and identified calcite, dolomite, and quartz phases in the composites. Due to enhanced ceramic reinforcement, the composites displayed increased crystallinity with higher BB content. Fourier-transform infrared (FTIR) analysis demonstrated the interaction between PP and BB, with the bands corresponding to PP being replaced by bands related to BB as filler content increased. The density tests indicated a slight increase in composite density without deviating significantly from pure PP, which is advantageous for low-density applications. The hardness of the composites increased with filler content, while the impact resistance decreased notably. Scanning electron microscopy (SEM) images showed the good distribution of BB within the composites and the presence of ductile characteristics on the composite surface. The heat deflection temperature (HDT) results revealed that adding BB up to 40% by weight increased HDT, whereas a significant reduction occurred at a 50% BB content. These composites demonstrated favorable properties for engineering applications, offering a sustainable solution through utilizing natural waste resources and contributing to Brazilian sustainability efforts.
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基于聚丙烯/巴伊亚米色废料的环保复合材料的开发:增强剂含量对物理、机械、化学和微观结构性能的影响
本文介绍了巴伊亚米色(BB)大理石废料增强聚丙烯(PP)环保复合材料的开发和表征。使用不同的PP/BB重量比制备了复合材料,并对其化学、物理、机械、微观结构和热性能进行了分析。X射线荧光(XRF)分析揭示了BB的组成,其表现出显著的CaO浓度,表明存在方解石和其他氧化物。X射线衍射(XRD)分析证实了PP的存在,并确定了复合材料中的方解石、白云石和石英相。由于增强的陶瓷增强,复合材料显示出结晶度增加,BB含量更高。傅立叶变换红外光谱(FTIR)分析证明了PP和BB之间的相互作用,随着填料含量的增加,与PP对应的谱带被与BB相关的谱带取代。密度测试表明,复合材料密度略有增加,但没有明显偏离纯PP,这有利于低密度应用。复合材料的硬度随填料含量的增加而增加,但抗冲击性能显著下降。扫描电子显微镜(SEM)图像显示BB在复合材料中的良好分布以及复合材料表面的韧性特征。热偏转温度(HDT)结果显示,添加高达40重量%的BB会增加HDT,而在BB含量为50%时会显著降低。这些复合材料具有良好的工程应用性能,通过利用自然废物资源提供了可持续的解决方案,并为巴西的可持续发展努力做出了贡献。
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