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首页> 外文期刊>CERAMICS INTERNATIONAL >Mining tailings as raw materials for reaction-sintered aluminosilicate ceramics: Effect of mineralogical composition on microstructure and properties
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Mining tailings as raw materials for reaction-sintered aluminosilicate ceramics: Effect of mineralogical composition on microstructure and properties

机译:采矿尾矿作为反应烧结铝硅酸盐陶瓷的原料:矿物学组合物对微观结构和性能的影响

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This paper presents studies on the utilization of aluminosilicate-based mining tailings as raw materials for mullite-based ceramics. Based on the 3:2 stoichiometric composition, mullite was synthesised by reactive sintering with a series of powder mixtures with alumina additions. X-ray diffractometry and scanning electron microscopy analyses revealed that, at the specific mineralogical composition, mullite structure formed surrounded by an amorphous glass phase in reaction-sintered powder mixtures. Results demonstrated that the chemical and mineralogical composition of mining tailings do have an effect on mullite formation possibilities and, only with the particular mineralogical composition, the mullite formation is possible regardless of the correct Al:Si ratio in tailings. Physical and mechanical properties of the formed ceramics were defined, showing comparable values to 3:2 mullite reference. Mullite structure formation enables a better thermal resistance up to above 1450 degrees C of the formed tailings-based ceramics compared to other aluminosilicates, reflecting their utilization potential for refractory ceramic applications.
机译:本文介绍了利用基于铝硅酸盐的矿物尾矿作为莫来石陶瓷的原料。基于3:2化学计量组成,通过用氧化铝添加的一系列粉末混合物反应烧结合成莫来石。 X射线衍射测定和扫描电子显微镜分析显示,在特定的矿物学组合物中,由反应烧结粉末混合物中的无定形玻璃相包围形成的莫来石结构。结果表明,采矿尾矿的化学和矿物学组成确实对莫来石形成可能性有影响,并且仅具有特定的矿物组合物,无论尾矿中的正确Al:Si比例如何,莫来石形成都是可能的。定义了形成陶瓷的物理和力学性能,显示出相当的值为3:2莫来石英。与其他铝硅酸盐相比,莫来石结构形成使得形成尾矿陶瓷的最高可热阻高达1450℃,反映其用于难治性陶瓷应用的利用潜力。

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