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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Aqueous dissolution of sodium aluminosilicate geopolymers derived from metakaolin
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Aqueous dissolution of sodium aluminosilicate geopolymers derived from metakaolin

机译:偏高岭土衍生的铝硅酸钠地质聚合物的水溶

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摘要

In dilute aqueous solutions, the elemental releases of Na, Al and Si from a metakaolin-based sodium aluminosilicate geopolymer were not very sensitive to pH in the range of 4-10 but increased outside this range, particularly on the acidic side. To minimise pH drifts, experiments were carried out using small amounts of graded powders in relatively large volumes of water. In deionised water, the Na dissolution rate in 7 days was dominant and increased by at least a factor of ~4 on heating from 18 to 90°C, with greater increases in the extractions of Al and Si. At 18°C the elemental extractions in deionised water increased approximately linearly with time over the 1-7 days period. Further exposure led to a slower extraction into solution for Na and Si, with a decrease in extraction of Al. It was deduced that framework dissolution was important in significantly acidic or alkaline solutions, but that contributions from water transfer from pores to elemental extractions were present, even at low temperatures in neutral solutions. It was also deduced from the Na release data that the Na leaching kinetics of geopolymer in deionised water (dilute solutions) followed the pseudo-second-order kinetic model and the pseudo-second-order rate constant evaluated. Contact with KCl, KHCO _3, and pH ~6 and 10 potassium phthalate buffer solutions gave rise to a high degree of Na ~+ ? K ~+ exchange and rendered the framework ions less leachable in water.
机译:在稀水溶液中,偏高岭土基铝硅酸钠地质聚合物中Na,Al和Si的元素释放对pH在4-10范围内不是很敏感,但在此范围之外增加,特别是在酸性方面。为了最大程度地减少pH漂移,在相对大量的水中使用了少量的分级粉末进行了实验。在去离子水中,从18到90°C加热7天后,Na的溶解速率占主导地位,并且至少增加〜4倍,其中Al和Si的萃取量增加更多。在18°C下,去离子水中的元素萃取量在1-7天的时间内随时间线性增长。进一步的暴露导致对Na和Si的溶液萃取较慢,而Al的萃取减少。据推断,骨架溶解在明显的酸性或碱性溶液中很重要,但是即使在中性溶液中低温下,也存在水从孔隙转移到元素萃取的贡献。从Na释放数据还可以推论,去离子水(稀溶液)中地质聚合物的Na浸出动力学遵循伪二级动力学模型,并评估了伪二级速率常数。与KCl,KHCO _3和pH〜6的接触以及10种邻苯二甲酸钾缓冲液产生了较高的Na〜+浓度。钾离子交换使骨架离子在水中的浸出较少。

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