首页> 外文会议>International Conference on Advances Ceramics and Composites >ONE-PART GEOPOLYMERS AND ALUMINOSILICATE GEL-ZEOLITE COMPOSITES BASED ON SILICA: FACTORS INFLUENCING MICROSTRUCTURE AND ENGINEERING PROPERTIES
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ONE-PART GEOPOLYMERS AND ALUMINOSILICATE GEL-ZEOLITE COMPOSITES BASED ON SILICA: FACTORS INFLUENCING MICROSTRUCTURE AND ENGINEERING PROPERTIES

机译:基于二氧化硅的单部分地质聚合物和铝硅酸盐 - 沸石复合材料:影响微观结构和工程性能的因素

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Mixing and curing of geopolymers and related alkali-activated materials without storage and handling of highly alkaline solutions possesses advantages regarding safety and economic viability. One possible approach is to produce these materials from solid silica feedstocks and solid sodium aluminate, and subsequent mixing with water. We present a comparison between geopolymers and aluminosilicate gel-zeolite composites synthesized by this route from different silica feedstocks (by-product silica from chlorosilane production, microsilica, rice husk ash) and with different SiO_2/Al_2O_3 ratios, using results from XRD, NMR, SEM, thermal analysis, mechanical and acid resistance testing. The use of rice husk ash favors formation of a fully amorphous geopolymer with high strength. Utilization of the other silica feedstocks leads to formation of aluminosilicate gel-zeolite composites, the amount and kind of zeolites depending on the feedstock and the SiO_2/Al_2O_3 ratio. These composites show beneficial dehydration behavior, viz. no distinct dehydration step of thermal strain, with the phase assemblage after heating to 1000°C controlled by the starting composition. Mortars produced from both, the geopolymers as well as the composites, exhibit high resistance to sulfuric acid attack, making them promising materials for the construction and the repair of industrial and sewer structures.
机译:地质聚合物和相关碱活性材料的混合和固化而不具有高碱性溶液的储存和处理具有关于安全性和经济可行性的优点。一种可能的方法是从固体二氧化硅原料和固体铝酸钠中生产这些材料,并随后与水混合。我们在从不同的二氧化硅原料(来自氯硅烷生产,微米壳灰灰)的不同二氧化硅原料(副产物二氧化硅)和不同的SiO_2 / Al_2O_3比率,使用来自XRD,NMR的结果,介绍了由该途径合成的地质聚合物和铝硅酸盐凝胶 - 沸石复合材料的比较。 SEM,热分析,机械和耐酸性试验。利用稻壳灰色融合的形成具有高强度的全无定形地缘聚合物。其他二氧化硅原料的利用率导致形成铝硅酸盐凝胶 - 沸石复合材料,沸石的量和种类,这取决于原料和SiO_2 / Al_2O_3比。这些复合材料显示有益的脱水行为,viz。没有明显的热应变步骤,在加热至1000℃的相位组件中通过起始组合物控制。从两者生产的砂浆以及复合材料,表现出高耐硫酸侵蚀性,使其具有施工和工业和下水道结构的修复的有希望的材料。

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