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Investigation of Reactivity of Fly Ash and Its Effect on Mixture Properties

机译:粉煤灰的反应性及其对混合料性能的影响研究

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The reactivity of fly ash can vary considerably when used as a supplementary cementitious material (SCM). This paper demonstrates a framework for a standard test method to quantify the maximum reactivity of fly ash. The test is based on mixing magent-garde calcium hydraxide (CH) and fly ash in a 3:1 mass ratio and exposing the mixture to 0.5 M potassium hydroxide (KOH) solution. Isothermal calorimetry and thermogravimetric analysis (TGA) am used to measure heat release and CH consumption, respectively, which am clone in conjunction with thermodynamic calculations, as a basis to characterize the maximum reactivity of the fly ash. Fifteen fly ashes were tested using the method, which revealed that the reactivities ranged from 33 to 75%. Thermodynamic modeling was used to demonstrate the effect of fly ash reactivity on the properties of blended OPC-fly ash mixtures with different fly ash replacement levels (0 to 80%) and at various reactivities (0 to 100%). It was shown that the reactivity of fly ash is a critical factor determining durability-related parameters of mixtures such as CH content, C-S-H type and content, and the pH of the pore solution.
机译:当用作补充胶凝材料(SCM)时,粉煤灰的反应性可能会有很大差异。本文演示了用于量化飞灰最大反应性的标准测试方法的框架。该测试基于以3:1的质量比混合magent-garde氢氧化钙(CH)和粉煤灰,并将混合物暴露于0.5 M氢氧化钾(KOH)溶液中。等温量热法和热重分析法(TGA)分别用于测量热量释放和CH消耗,将其与热力学计算结合起来作为表征飞灰最大反应性的基础。使用该方法测试了十五个飞灰,其反应性为33%至75%。使用热力学模型来证明粉煤灰反应性对具有不同粉煤灰替代水平(0至80%)和各种反应性(0至100%)的混合OPC-粉煤灰混合物的性能的影响。结果表明,粉煤灰的反应性是决定混合物耐久性相关参数的关键因素,这些参数包括CH含量,C-S-H类型和含量以及孔溶液的pH。

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