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首页> 外文期刊>Journal of Materials Science >Kinetics of fly ash geopolymerization
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Kinetics of fly ash geopolymerization

机译:飞灰地聚的动力学

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Based on the wet chemical analysis, we measured and modeled the kinetics of reactions between fly ash and KOH at various temperatures and water-to-solid mass ratios (W/S). We find that three consecutive rate-limiting processes control reaction progress: (1) dissolution or alteration of the glass phase in the fly ash, (2) classical Fick diffusion through a surface layer, and (3) diffusive transport through a more complex gel structure (interstitial gel). This sequence of processes is independent of W/S (0.35-40), temperature (22-75 °C), and KOH concentration (5-10 M). The relative contribution of each process to the overall reaction progress changes with experimental conditions. Only if and when the third process is rate limiting, a fly ash geopolymer forms and develops mechanical strength (sufficiently low W/S ratio provided). The rate of reaction progress decreases significantly, due to slow transport of reacting species to the surface of the glass particles.
机译:在湿化学分析的基础上,我们测量并模拟了粉煤灰与KOH在不同温度和水固质量比(W / S)下的反应动力学。我们发现三个连续的限速过程控制反应进程:(1)飞灰中玻璃相的溶解或改变;(2)通过表面层的经典Fick扩散;以及(3)通过更复杂的凝胶的扩散传输。结构(间质凝胶)。此过程顺序与W / S(0.35-40),温度(22-75°C)和KOH浓度(5-10 M)无关。每个过程对整体反应进程的相对贡献随实验条件而变化。仅当第三种方法是限速时,才形成粉煤灰地质聚合物并形成机械强度(提供足够低的W / S比)。由于反应物种向玻璃颗粒表面的缓慢传输,反应进程的速度大大降低。

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