Bambalaza Sonwabo E, Xakalashe Buhle S, Coetsee Yolindi, van Zyl Pieter G, Dyosiba Xoliswa L, Musyoka Nicholas M, Steenkamp Joalet D
Pyrometallurgy Division, Mintek, 200 Malibongwe Drive, Praegville, Johannesburg 2125, South Africa.
Chemical Resource Beneficiation, North West University, Potchefstroom 2531, South Africa.
Materials (Basel). 2023 Mar 30;16(7):2782. doi: 10.3390/ma16072782.
Waste plastics such as polyethylene terephthalate (w-PET) and stockpiled discard coal (d-coal) pose a global environmental threat as they are disposed of in large quantities as solid waste into landfills and are particularly hazardous due to spontaneous combustion of d-coal that produces greenhouse gases (GHG) and the non-biodegradability of w-PET plastic products. This study reports on the development of a composite material, prepared from w-PET and d-coal, with physical and chemical properties similar to that of metallurgical coke. The w-PET/d-coal composite was synthesized via a co-carbonization process at 700 °C under a constant flow of nitrogen gas. Proximate analysis results showed that a carbonized w-PET/d-coal composite could attain up to 35% improvement in fixed carbon content compared to its d-coal counterpart, such that an initial fixed carbon content of 14-75% in carbonized discard coal could be improved to 49-86% in carbonized w-PET/d-coal composites. The results clearly demonstrate the role of d-coal ash on the degree of thermo-catalytic conversion of w-PET to solid carbon, showing that the yield of carbon derived from w-PET (i.e., c-PET) was proportional to the ash content of d-coal. Furthermore, the chemical and physical characterization of the composition and structure of the c-PET/d-coal composite showed evidence of mainly graphitized carbon and a post-carbonization caking ability similar to that of metallurgical coke. The results obtained in this study show potential for the use of waste raw materials, w-PET and d-coal, towards the development of an eco-friendly reductant with comparable chemical and physical properties to metallurgical coke.
聚对苯二甲酸乙二酯等废塑料(w-PET)以及储存的废弃煤(d-coal)对全球环境构成威胁,因为它们作为固体废物大量被丢弃到垃圾填埋场,而且由于d-coal的自燃会产生温室气体(GHG)以及w-PET塑料制品的不可生物降解性,所以特别危险。本研究报告了一种由w-PET和d-coal制备的复合材料的开发情况,该复合材料的物理和化学性质与冶金焦相似。w-PET/d-coal复合材料是在700℃、氮气恒流条件下通过共碳化过程合成的。工业分析结果表明,与d-coal相比,碳化后的w-PET/d-coal复合材料的固定碳含量可提高35%,使得碳化废弃煤中初始14 - 75%的固定碳含量在碳化w-PET/d-coal复合材料中提高到49 - 86%。结果清楚地证明了d-coal灰分对w-PET热催化转化为固体碳程度的作用,表明源自w-PET的碳(即c-PET)的产率与d-coal的灰分含量成正比。此外,对c-PET/d-coal复合材料的组成和结构进行的化学和物理表征表明,主要存在石墨化碳,并且具有与冶金焦相似的碳化后结块能力。本研究获得的结果表明,利用废原料w-PET和d-coal开发一种具有与冶金焦相当的化学和物理性质的环保型还原剂具有潜力。