Salama Eslam, Mohamed Safaa, Samy Mahmoud, Mensah Kenneth, Ossman Mona, Elkady Marwa F, Shokry Hassan Hassan
Environment and Natural Materials Research Institute (ENMRI), City of Scientific Research and Technological Applications (SRTA-City) New Borg El-Arab City Alexandria 21934 Egypt
Department of Public Works Engineering, Faculty of Engineering, Mansoura University Mansoura 35516 Egypt.
RSC Adv. 2024 Jan 9;14(3):1977-1983. doi: 10.1039/d3ra07370j. eCollection 2024 Jan 3.
In this study, we reported sustainable and economical upcycling methods for utilizing plastics such as polyethylene terephthalate (PET) and polypropylene (PP) compiled from the garbage of a residential area as cheap precursors for the production of high-value carbon materials such as graphene (G), carbon spheres (CS), and carbon nanotubes (CNTs) using different thermal treatment techniques. Graphene, carbon spheres, and carbon nanotubes were successfully synthesized from PET, PP, and PET, respectively catalytic pyrolysis. XRD and FTIR analyses were conducted on the three materials, confirming the formation of carbon and their graphitic structure. TEM images displayed uniform and consistent morphological structures of the fabricated materials. EDX data confirmed that the prepared carbon-based materials only contained carbon and oxygen without any significant contaminations. XPS results revealed significant peaks in the C 1s spectra associated with sp and sp hybridized carbon for the three materials. BET spectra showed that the prepared CNTs (54.872 m g) have the highest surface area followed by carbon spheres (54.807 m g). The thermal stability of graphene surpassed both carbon spheres and carbon nanotubes which is mainly attributed to the stronger inter-molecular bonds of graphene. Based on the characterization of the prepared materials, these materials are promising to be utilized in environmental remediation applications due to their high carbon content, low cost, and high surface area.
在本研究中,我们报告了可持续且经济的升级再造方法,该方法利用从居民区垃圾中收集的聚对苯二甲酸乙二酯(PET)和聚丙烯(PP)等塑料,作为使用不同热处理技术生产石墨烯(G)、碳球(CS)和碳纳米管(CNT)等高价值碳材料的廉价前驱体。通过催化热解分别成功地从PET、PP和PET中合成了石墨烯、碳球和碳纳米管。对这三种材料进行了XRD和FTIR分析,证实了碳的形成及其石墨结构。TEM图像显示了所制备材料均匀一致的形态结构。EDX数据证实,所制备的碳基材料仅含碳和氧,无任何明显杂质。XPS结果显示,三种材料的C 1s光谱中与sp和sp杂化碳相关的显著峰。BET光谱表明,所制备的碳纳米管(54.872 m²/g)具有最高的比表面积,其次是碳球(54.807 m²/g)。石墨烯的热稳定性超过碳球和碳纳米管,这主要归因于石墨烯更强的分子间键。基于所制备材料的表征,这些材料因其高碳含量、低成本和高比表面积,有望用于环境修复应用。