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Properties and microstructure of lightweight aggregate produced from lignite coal fly ash and recycled glass

机译:褐煤粉煤灰和再生玻璃生产轻质骨料的性能和微观结构

摘要

The effect of glass addition on the processing, physical properties and microstructure of lightweight aggregate made from lignite coal fly ash from the Megalopolis power station in Greece has been investigated. Fly ash/glass mixes have been rapidly sintered at temperatures between 1040 and 1120 °C in a rotary furnace, and the density, water absorption and pellet strength determined. Sintering 60:40 fly ash:waste glass mixes at 1120 °C produced lightweight aggregate with a mean density of 1.35 g/cm3, water absorption of ∼16% and crushing strength of 7.3 MPa. Major crystalline phases in sintered materials were quartz (SiO2), albite (NaAlSi3O8), moissanite (SiC), hematite (Fe2O3), wollastonite (CaSiO3) and diopside (CaMg(Si2O6)). The work indicates that Megalopolis fly ash combined with waste glass can be used to manufacture lightweight aggregate with properties comparable to commercially available products. Fly ash and glass are potential resources that are currently waste materials in Greece. The processing involving pelletising and sintering in a rotary kiln is similar to that required for other commercially available lightweight aggregates manufactured from shales, clays and slate, and therefore processing costs are expected to be similar. However, avoiding the costs and environmental impacts associated with importing lightweight aggregate or using pumice makes the production of FA/glass lightweight aggregate a viable option.
机译:研究了玻璃添加对希腊Megalopolis电站褐煤粉煤灰制轻质骨料的加工,物理性能和微观结构的影响。粉煤灰/玻璃混合物已在1040至1120°C的温度下在旋转炉中快速烧结,并确定了密度,吸水率和颗粒强度。在1120°C的温度下烧结60:40的粉煤灰:废玻璃混合物可制得轻质骨料,平均密度为1.35 g / cm3,吸水率约为16%,抗碎强度为7.3 MPa。烧结材料中的主要晶相是石英(SiO2),钠长石(NaAlSi3O8),硅铝石(SiC),赤铁矿(Fe2O3),硅灰石(CaSiO3)和透辉石(CaMg(Si2O6))。这项工作表明,Megalopolis粉煤灰与废玻璃的结合可用于制造轻质集料,其性能可与市售产品媲美。粉煤灰和玻璃是目前在希腊浪费的潜在资源。涉及在回转窑中进行造粒和烧结的过程与由页岩,粘土和板岩制成的其他市售轻质骨料所需要的过程相似,因此预计加工成本将相似。但是,避免了与进口轻质骨料或使用浮石有关的成本和环境影响,使FA /玻璃轻质骨料的生产成为可行的选择。

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  • 作者

    Kourti I; Cheeseman CR;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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