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    摻垃圾焚燒飛灰製燒結磚物相及相變研究

    Study on mineralogical component and phase transformation of ceramic brick made with MSWI fly as an admixture

    • 摘要: 研究了生活垃圾焚燒飛灰的微觀形貌、差熱分析、礦物及化學組成🤵🏽,利用飛灰、陶泥🧑‍🚒、石英砂及長石研製燒結磚,並分析了最佳配比燒結磚的物相、相變及浸出毒性👏🏽🏇🏽。實驗結果顯示⤵️:飛灰屬二氧化矽–三氧化二鋁–金屬氧化物體系,主要化學成分是二氧化矽與三氧化二鋁等,可用作燒結磚的原材料;飛灰中含有類玻璃微珠,玻璃相含量超過50%;溫度高於1240 ℃時飛灰顯示出較強的活性;燒結磚主晶相是石英、莫來石、堇青石🫲、矽灰石🙇‍♀️、頑火輝石與鈣鐵榴石;這些晶相在溫度升高的過程中逐步形成,其含量隨著溫度的升高先增加後減少;玻璃相含量隨溫度的升高不斷增加;最佳配比燒結磚重金屬浸出毒性均達標,重金屬的浸出率遠低於坯體。

       

      Abstract: Microstructure,differential thermal analysis, mineralogical and chemical component analysis was performed on municipal solid waste incineration fly ash, which was used to make ceramic brick together with yellow ceramic clay, ripe sand and feldspar. Besides, mineralogical component, phase transformation and `leaching toxicity were analyzed on ceramic bricks made according to the optimum proportion. It is found that main mineralogical components of fly ash are calcium silicates and alumino-silicates, and that it registers as a SiO2 – Al2O3 – metal oxides system, which can be used as a raw material of ceramic brick. Fly ash contains particles resembling glass bead and over 50% glass phase. Fly ash shows great activity when temperature exceeds 1241 ℃. Major mineralogical components of ceramic bricks are quartze, mullite, cordierite, andradite, enstatite and wollastonite. Content of crystal phase first increases and then decreases with increase of sintering temperature, while that of glass phase registers a reverse tread. In addition, leaching ratios of heavy metals in the sintered bricks are substantially reduced compared with those in green bodies of brick, which are below the limit value for hazardous waste.

       

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