Development of Agro-Industrial Waste Reinforced Natural Rubber Composite: A Potential Formulation for Rubber Flooring Product

T. Kirushanthi, T. Etampawala, D. Edirisinghe, Jagath Pitawala, D. Ratnaweera
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引用次数: 1

Abstract

Agro-industrial waste has become a major environmental issue in most parts of the world. Rice husk is one of the major agricultural wastes especially in Asian countries. It is currently thrown away into landfills or rarely use as an alternative energy source, which in turn produce another waste, rice husk ash (RHA). Silica is the major component in well-burnt RHA. This work was aimed to evaluate the feasibility of utilizing silica extracted from RHA and another industrial waste, used tyre treads, with natural rubber to develop composite with enhanced mechanical properties especially for flooring products such as rugs, pavement blocks, door mats, etc. In this work extracted silica was characterized using Fourier-transform infrared spectroscopy, X-ray diffractometry (XRD), X-ray fluorescence spectroscopy (XRF) and scanning electron microscopy (SEM). The SEM images confirmed that the extracted silica is in the nanometer to sub-micrometer length scale in size. Further our results confirmed that extracted silica has comparable chemical composition and amorphous nature as commercially used silica in rubber compounding. Composites were first formulated using crumb rubber to identify the optimum crumb rubber loading. It is found that 25 phr of crumb rubber provides the optimal mechanical properties. Finally, extracted silica was incorporated to 25 phr crumb rubber loaded composite to further reinforcement. SEM images confirm that 10 phr of silica have enhanced matrix-filler interactions to produce continuous structure, which was not observed in crumb rubber loaded rubber composite.
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农工废弃物增强天然橡胶复合材料的开发:一种有潜力的橡胶地板产品配方
农业工业废弃物已成为世界大部分地区的主要环境问题。稻壳是主要的农业废弃物之一,特别是在亚洲国家。目前它被扔进垃圾填埋场或很少用作替代能源,这反过来又产生了另一种废物,稻壳灰(RHA)。硅是燃烧良好的RHA的主要成分。这项工作的目的是评估利用从RHA和另一种工业废物,旧轮胎胎面中提取的二氧化硅与天然橡胶开发具有增强机械性能的复合材料的可行性,特别是用于地板产品,如地毯,路面砖,门垫等。本文采用傅里叶变换红外光谱、x射线衍射(XRD)、x射线荧光光谱(XRF)和扫描电镜(SEM)对提取的二氧化硅进行了表征。SEM图像证实了所提取的二氧化硅在纳米到亚微米的长度尺度上。我们的研究结果进一步证实,提取的二氧化硅具有相当的化学成分和无定形性质,作为橡胶复合的商用二氧化硅。首先用橡胶屑配制复合材料,确定了橡胶屑的最佳掺量。结果表明,25 phr的颗粒橡胶能提供最佳的力学性能。最后,将提取的二氧化硅掺入25phr的橡胶屑复合材料中进一步增强。SEM图像证实,10 phr的二氧化硅增强了基质与填料的相互作用,形成了连续的结构,这在颗粒橡胶填充的橡胶复合材料中没有观察到。
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