Wang Xuancang, Ji Guanyu, Zhang Yi, Guo Yuchen, Zhao Jing
School of Highway, Chang'an University, Xi'an 710064, China.
Materials (Basel). 2021 Apr 17;14(8):2020. doi: 10.3390/ma14082020.
The sustainability of resources is presently a major global concern. Sustainable construction materials can be produced by applying biological waste to engineering. Eggshells, as biological waste, are usually dumped in landfills or discarded. This causes many environmental problems including malodor, noise pollution, and serious waste of resources. To solve these problems, this study combined eggshell waste with bitumen materials for bio-roads construction. This paper investigated the impact of biological waste eggshell powder on the high- and low-temperature characteristics of bitumen materials. Scanning electron microscopy (SEM) revealed the microstructure of eggshell powder. The interaction between eggshell powder and asphalt was analyzed using Fourier transform infrared spectroscopy (FT-IR). The high- and low-temperature characteristics were investigated using conventional performance tests, and dynamic shear rheometer (DSR) and bending beam rheometer (BBR) experiments. These results indicate that eggshell powder (1) has a rough and porous microstructure; (2) has no apparent chemical reaction with asphalt; and (3) improves the consistency, hardness, and high-temperature characteristics. However, it reduces the plastic deformation capacity of asphalt, and the low-temperature crack resistance of asphalt cannot be improved. The research demonstrated that the application of eggshell powder in asphalt is feasible and has long-term resource and environmental advantages.
资源的可持续性是当前全球主要关注的问题。可持续建筑材料可以通过将生物废弃物应用于工程中来生产。蛋壳作为生物废弃物,通常被倾倒在垃圾填埋场或被丢弃。这会引发许多环境问题,包括恶臭、噪音污染以及严重的资源浪费。为了解决这些问题,本研究将蛋壳废弃物与沥青材料相结合用于生物道路建设。本文研究了生物废弃物蛋壳粉对沥青材料高低温特性的影响。扫描电子显微镜(SEM)揭示了蛋壳粉的微观结构。使用傅里叶变换红外光谱(FT-IR)分析了蛋壳粉与沥青之间的相互作用。通过常规性能测试以及动态剪切流变仪(DSR)和弯曲梁流变仪(BBR)实验研究了高低温特性。这些结果表明,蛋壳粉(1)具有粗糙且多孔的微观结构;(2)与沥青没有明显的化学反应;(3)提高了稠度、硬度和高温特性。然而,它降低了沥青的塑性变形能力,且无法提高沥青的低温抗裂性。该研究表明,蛋壳粉在沥青中的应用是可行的,并且具有长期的资源和环境优势。