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Development of a sintering process for recycling oil shale fly ash and municipal solid waste incineration bottom ash into glass ceramic composite

机译:开发一种将油页岩粉煤灰和城市固体垃圾焚烧底灰回收为玻璃陶瓷复合材料的烧结工艺

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摘要

Oil shale fly ash and municipal solid waste incineration bottom ash are industrial and municipal by-products that require further treatment before disposal to avoid polluting the environment. In the study, they were mixed and vitrified into the slag by the melt-quench process. The obtained vitrified slag was then mixed with various percentages of oil shale fly ash and converted into glass ceramic composites by the subsequent sintering process. Differential thermal analysis was used to study the thermal characteristics and determine the sintering temperatures. X-ray diffraction analysis was used to analyze the crystalline phase compositions. Sintering shrinkage, weight loss on ignition, density and compressive strength were tested to determine the optimum preparation condition and study the co-sintering mechanism of vitrified amorphous slag and oil shale fly ash. The results showed the product performances increased with the increase of sintering temperatures and the proportion of vitrified slag to oil shale fly ash. Glass ceramic composite (vitrified slag content of 80%, oil shale fly ash content of 20%, sintering temperature of 1000 ℃ and sintering time of 2 h) showed the properties of density of 1.92 ± 0.05 g/cm~3, weight loss on ignition of 6.14 ± 0.18%, sintering shrinkage of 22.06 ± 0.6% and compressive strength of 67 ± 14 MPa. The results indicated that it was a comparable waste-based material compared to previous researches. In particular, the energy consumption in the production process was reduced compared to conventional vitrification and sintering method. Chemical resistance and heavy metals leaching results of glass ceramic composites further confirmed the possibility of its engineering applications.
机译:油页岩粉煤灰和城市固体废物焚烧底灰是工业和市政副产品,在处置前需要进一步处理以避免污染环境。在研究中,通过熔融淬火工艺将它们混合并玻璃化成炉渣。然后将获得的玻璃化炉渣与不同百分比的油页岩粉煤灰混合,并通过随后的烧结过程转化为玻璃陶瓷复合材料。使用差热分析来研究热特性并确定烧结温度。 X射线衍射分析用于分析结晶相组成。测试了烧结收缩率,灼烧失重,密度和抗压强度,确定了最佳的制备条件,研究了玻璃化无定形矿渣与油页岩粉煤灰的共烧结机理。结果表明,产品性能随烧结温度的升高和玻璃渣与油页岩粉煤灰的比例的增加而提高。玻璃陶瓷复合材料(玻璃渣含量为80%,油页岩粉煤灰含量为20%,烧结温度为1000℃,烧结时间为2 h)显示出1.92±0.05 g / cm〜3的密度,失重灼烧率为6.14±0.18%,烧结收缩率为22.06±0.6%,抗压强度为67±14MPa。结果表明,与以前的研究相比,它是可比的废物基材料。特别地,与常规的玻璃化和烧结方法相比,降低了生产过程中的能耗。玻璃陶瓷复合材料的耐化学性和重金属浸出结果进一步证实了其工程应用的可能性。

著录项

  • 来源
    《Waste Management》 |2015年第4期|185-193|共9页
  • 作者单位

    Key Laboratory of Industrial Ecology and Environmental Engineering (MOE), School of Environmental Science & Technology, Dalian University of Technology, Dalian 116024, PR China;

    Key Laboratory of Industrial Ecology and Environmental Engineering (MOE), School of Environmental Science & Technology, Dalian University of Technology, Dalian 116024, PR China;

    Key Laboratory of Industrial Ecology and Environmental Engineering (MOE), School of Environmental Science & Technology, Dalian University of Technology, Dalian 116024, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Glass ceramic composite; Heavy metals; MSWI bottom ash; Oil shale fly ash; Sintering; Vitrification;

    机译:玻璃陶瓷复合材料;重金属;MSWI底灰;油页岩粉煤灰;烧结;玻璃化;

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