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The Effects of Aggressive Environments on the Properties of Fly Ash based Geopolymers

机译:侵蚀性环境对粉煤灰基地质聚合物性质的影响

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This paper analyzes the effects of two different aggressive environments, concentrated ammonium nitrate solution (480 g/dm3) and sodium sulphate solution (50 g/dm3), on the structure and mechanical strength of fly ash based geopolymers. Geopolymer samples were subjected to the aggressive solutions over a period of 365 days. It was found that exposure to the NH4NO3 and Na2SO4 solutions caused small decrease in geopolymer strength (10-20 %). The most valuable insight into the structural changes caused by testing of the geopolymer samples in the aggressive solutions was provided by means of ~(29)Si MAS NMR. It was found that the immersion of geopolymer samples in the NH4NO3 solution caused breaking of Si-O-Al bonds in the aluminosilicate geopolymer gel structure. On the other hand, treatment of the geopolymer samples with the Na2SO4 solution resulted in breaking of Si-O-Si bonds in geopolymer gel structure and leaching of Si. It was concluded that the major changes in the geopolymer structure were associated with the changes in the pH values of aggressive solutions during the testing.
机译:本文分析了两种不同的侵略性环境,浓缩硝酸铵溶液(480g / dm3)和硫酸钠溶液(50g / dm3)的影响,对粉煤灰基地质聚合物的结构和机械强度。在365天的时间内对地质聚合物样品进行侵袭性溶液。发现暴露于NH 4 NO 3和Na 2 SO 4溶液引起的地质聚合物强度降低(10-20%)。通过〜(29)Si Mas NMR提供了通过测试侵蚀溶液中的地质多元样本引起的结构变化的最有价值的见解。发现NH 4 NO 3溶液中的地缘聚合物样品浸入了硅铝酸盐地质聚合物凝胶结构中的Si-O-Al键。另一方面,用Na 2 SO 4溶液处理地质聚合物样品导致在地质聚合物凝胶结构中破裂Si-O-Si键和Si的浸出。得出结论,地质聚合物结构的主要变化与测试期间侵蚀性溶液的pH值的变化有关。

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