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SYNTHESIS OF TERNARY GEOPOLYMERS BASED ON METAKAOLIN, BOILER SLAG AND RICE HUSK ASH

机译:基于金属氰化物,锅炉渣和稻壳灰的三元地聚合物的合成

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Ternary mixtures of geopolymers obtained from the alkaline activation of metakaolin (MK), boiler slag (BS), and rice husk ash (RHA) using a solution of potassium hydroxide were mechanically, thermally, and microstructurally characterized. The geopolymer properties and final microstructures indicate that the addition of BS, despite containing large amounts of unburned material (16.36%), allows for greater densification and greater homogeneity of the geopolymeric gel, which results in greater stability in strength at long curing ages. Substitution of 30% of MK by BS results in an increase in compressive strength of up to 21% and 122% after 28 and 180 days of curing, respectively. These results demonstrate the possibility of the construction sector using geopolymers based on MK and adding BS and RHA to obtain cementitious materials with a lower environmental impact.
机译:从偏高岭土(MK),锅炉矿渣(BS)和稻壳灰(RHA)的碱活化过程中,使用氢氧化钾溶液对地质聚合物的三元混合物进行了机械,热学和微观结构表征。地质聚合物的性质和最终的微观结构表明,尽管含有大量未燃烧的材料(16.36%),但添加BS可以使地质聚合物凝胶具有更大的致密性和更大的均质性,从而在较长的固化年龄下提高强度的稳定性。在固化28天和180天后,用BS替代30%的MK可使抗压强度分别提高21%和122%。这些结果证明了建筑行业使用基于MK的地聚合物并添加BS和RHA来获得对环境影响较小的胶凝材料的可能性。

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