Optimizing process parameters of clay-based ceramics with addition of construction and demolition waste

B. Angjusheva, V. Ducman, Monika Fidancevska, V. Jovanov
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引用次数: 1

Abstract

Construction and demolition waste produced in the Republic of North Macedonia remains a major economic and environmental problem because all construction and demolition waste ends up in local dumps or is disposed of in a landfill. The objective of this study was to investigate the influence of the process parameters on the physical and mechanical properties of clay-based ceramics with partial replacement of clay with construction and demolition waste. Determination of the chemical composition of the waste demolition brick using X-ray fluorescence showed that it consisted of different oxides such as SiO2, Al2O3, Fe2O3 and CaO and minor contents of alkaline and earth alkaline oxides. Production of these ceramics was conducted through the consolidation of clay and waste demolition brick with the evaluation of the main process parameters such as sintering temperature [ST], the content of waste demolition brick [WDB] and isothermal period at the final temperature [IP]. The final model equations for density and bending strength dependence of the main process parameters were obtained and presented. The microstructure of the ceramics determined by SEM shows that the waste material is homogeneously dispersed in the clay matrix.
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掺加建筑垃圾和爆破垃圾对粘土基陶瓷工艺参数的优化
北马其顿共和国产生的建筑和拆除废物仍然是一个重大的经济和环境问题,因为所有建筑和拆除废物最后都在当地的垃圾场或填埋场处理。本研究的目的是研究工艺参数对粘土基陶瓷的物理力学性能的影响,用建筑和拆除垃圾部分代替粘土。利用x射线荧光法测定废拆迁砖的化学成分,发现其主要由SiO2、Al2O3、Fe2O3和CaO等多种氧化物组成,并含有少量碱性和土碱性氧化物。通过对粘土和废拆迁砖进行固结,并对烧结温度[ST]、废拆迁砖含量[WDB]、终温等温周期[IP]等主要工艺参数进行评价,制备了这些陶瓷。最后给出了主要工艺参数对密度和抗弯强度的依赖关系模型方程。通过扫描电镜对陶瓷的微观结构进行分析,发现废料均匀地分散在粘土基体中。
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