Co-Carbonization of Discard Coal with Waste Polyethylene Terephthalate towards the Preparation of Metallurgical Coke

被引:1
|
作者
Bambalaza, Sonwabo E. [1 ]
Xakalashe, Buhle S. [1 ]
Coetsee, Yolindi [2 ]
van Zyl, Pieter G. [2 ]
Dyosiba, Xoliswa L. [3 ]
Musyoka, Nicholas M. [3 ]
Steenkamp, Joalet D. [4 ]
机构
[1] Mintek, Pyrometallurgy Div, 200 Malibongwe Dr, ZA-2125 Johannesburg, South Africa
[2] North West Univ, Chem Resource Beneficiat, ZA-2531 Potchefstroom, South Africa
[3] Council Sci & Ind Res CSIR, HySA Infrastruct Ctr Competence, Ctr Nanostruct & Adv Mat CeNAM, Chem Cluster, ZA-0001 Pretoria, South Africa
[4] Expert Proc Solut Glencore, Pyromet & Furnace Integr, 6 Edison Rd, Falconbridge, ON P0M 1S0, Canada
基金
新加坡国家研究基金会;
关键词
discard coal; waste polyethylene terephthalate; co-carbonization; waste utilization; metallurgical coke; CARBON; PYROLYSIS; BEHAVIOR; PLASTICS; ACID; CARBONIZATION; MIXTURES; ASH;
D O I
10.3390/ma16072782
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
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 ? 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.
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页数:20
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