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首页> 外文期刊>Journal of the European Ceramic Society >Phase and microstructure evolution during hydrothermal solidification of clay-quartz mixture with marble dust source of reactive lime
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Phase and microstructure evolution during hydrothermal solidification of clay-quartz mixture with marble dust source of reactive lime

机译:具有活性石灰大理石粉尘源的粘土-石英混合物水热固化过程中的相和组织演变

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Marble dust (200 mu m size), air and water polluting waste, generated by the marble cutting industries has been used as cheap source of lime for hydrothermal solidification of clay-quartz mixtures at different saturated steam pressure (0.525-1.225 MPa). Marble dust was calcined at two different temperatures (900 and 1000 deg C) and then added to the clay-quartz mixture, with clay/(clay + quartz) ratio 0.9, at two different amounts. The hydrothermally solidified samples were characterized by bulk density, apparent porosity, fiexural strength, porosimetric study, phase and microstructural analysis and the results were compared against similarly treated chemical grade CaCO_3 containing compositions. Tobermorite [Ca_5(Si_6O_(18)H_2) centre dot 4H_2O] and hydrogarnet [Ca_3Al_2(SiO_4)(OH)_8] were the major phases formed in the treated samples, which are responsible for the strength development. Microstructural study supports the generation of these hydrated phases. Porosimetric study reveals that higher exposed area of the chemical grade CaCO_3 containing composition results higher extent of hydrothermal reaction and higher strength. Though marble dust containing compositions showed relatively lower strength values, the combined properties of the hydrated products are suitable as new building material where such mesopore containing products with inherent micron range pore size distribution are important parameters.
机译:大理石切割行业产生的大理石粉尘(200微米大小),空气和水污染废物已被用作廉价的石灰源,用于在不同的饱和蒸汽压力(0.525-1.225 MPa)下水热固化粘土-石英混合物。在两种不同的温度(900和1000摄氏度)下煅烧大理石粉尘,然后以两种不同的量将其添加到粘土/石英比(粘土/(粘土+石英+石英)比为0.9)中。通过堆密度,表观孔隙率,弯曲强度,孔隙率研究,相和微结构分析对水热固化的样品进行了表征,并将结果与​​相似处理的含化学级CaCO_3的组合物进行了比较。在处理的样品中形成的主要相是苏铁矿[Ca_5(Si_6O_(18)H_2)中心点4H_2O]和水榴石[Ca_3Al_2(SiO_4)(OH)_8],这是导致强度发展的主要原因。微观结构研究支持这些水合相的产生。孔隙率法研究表明,含有化学级CaCO_3的组合物的暴露面积越大,水热反应的程度越高,强度越高。尽管含大理石粉尘的组合物表现出相对较低的强度值,但是水合产品的综合性能适合用作新型建筑材料,其中具有固有微米范围孔径分布的此类中孔产品是重要的参数。

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