Teodorescu George-Mihail, Vuluga Zina, Oancea Florin, Ionita Andreea, Paceagiu Jenica, Ghiurea Marius, Nicolae Cristian-Andi, Gabor Augusta Raluca, Raditoiu Valentin
National Institute for Research & Development in Chemistry and Petrochemistry-ICECHIM, 202 Spl. Independentei, 060021 Bucharest, Romania.
CEPROCIM S.A., 6 Preciziei, 062203 Bucharest, Romania.
Polymers (Basel). 2023 May 31;15(11):2545. doi: 10.3390/polym15112545.
There is an ever-growing interest in recovering and recycling waste materials due to their hazardous nature to the environment and human health. Recently, especially since the beginning of the COVID-19 pandemic, disposable medical face masks have been a major source of pollution, hence the rise in studies being conducted on how to recover and recycle this waste. At the same time, fly ash, an aluminosilicate waste, is being repurposed in various studies. The general approach to recycling these materials is to process and transform them into novel composites with potential applications in various industries. This work aims to investigate the properties of composites based on silico-aluminous industrial waste (ashes) and recycled polypropylene from disposable medical face masks and to create usefulness for these materials. Polypropylene/ash composites were prepared through melt processing methods, and samples were analyzed to get a general overview of the properties of these composites. Results showed that the polypropylene recycled from face masks used together with silico-aluminous ash can be processed through industrial melt processing methods and that the addition of only 5 wt% ash with a particle size of less than 90 µm, increases the thermal stability and the stiffness of the polypropylene matrix while maintaining its mechanical strength. Further investigations are needed to find specific applications in some industrial fields.
由于废旧材料对环境和人类健康具有危险性,人们对其回收和再利用的兴趣与日俱增。近来,尤其是自新冠疫情开始以来,一次性医用口罩已成为主要污染源,因此关于如何回收和再利用这种废弃物的研究不断增加。与此同时,粉煤灰这种铝硅酸盐废弃物也在各项研究中被重新利用。回收这些材料的一般方法是将它们加工并转化为新型复合材料,使其在各个行业具有潜在应用价值。这项工作旨在研究基于硅铝工业废弃物(灰烬)和一次性医用口罩回收的聚丙烯的复合材料的性能,并挖掘这些材料的用途。通过熔融加工方法制备了聚丙烯/灰烬复合材料,并对样品进行分析以全面了解这些复合材料的性能。结果表明,从口罩回收的聚丙烯与硅铝灰烬一起使用时,可以通过工业熔融加工方法进行处理,并且仅添加5 wt%粒径小于90 µm的灰烬,就能在保持聚丙烯基体机械强度的同时提高其热稳定性和刚度。还需要进一步研究以找到在某些工业领域的具体应用。