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首页> 外文期刊>Journal of Materials Science >Fly ash reactivity: Extension and application of a shrinking core model and thermodynamic approach
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Fly ash reactivity: Extension and application of a shrinking core model and thermodynamic approach

机译:粉煤灰反应性:收缩核模型和热力学方法的扩展和应用

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In the present paper a theoretical study is presented on the dissolution (reaction) of pulverised powder coal fly ash. A shrinking core model is derived for hollow spheres that contain two regions (outer hull and inner region). The resulting analytical equations are applied to the dissolution experiments by Pietersen (Mat.Res.Soc.Symp.Proc., Vol. 178, Materials Research Society, 1990, p. 139; Ph.D. Thesis, Delft University of Technology, The Netherlands, 1993), yielding reaction rates at various temperatures and pH for two class F fly ashes. It is revealed that the available amount of reactive fly ash is proportional to the glass content of the fly ash, and that the reaction rate is proportional to this glass content as well. Moreover, it is concluded that the outer region is less reactive than the inner region, and that these reactivities are proportional to a power of the hydroxyl concentration. Subsequently, experimental data and model are used to assess the magnitude of inner and outer region. It seems that the outer hull of solid spheres and cenospheres are having the same thickness, about 2 μm. Based on the observed trends a reaction mechanism is proposed which accounts for the glass content and composition of the fly ash (and that is applicable to slags as well). Finally, using the reaction product, thermodynamic properties of the studied fly ashes are derived: the free energy, enthalpy and entropy of reaction.
机译:本文对粉状粉煤灰的溶解(反应)进行了理论研究。对于包含两个区域(外壳和内部区域)的空心球,将得出收缩的核心模型。 Pietersen(Mat.Res.Soc.Symp.Proc。,第178卷,材料研究学会,1990年,第139页;博士学位论文,代尔夫特理工大学,荷兰,1993年),得出了两种F类粉煤灰在不同温度和pH下的反应速率。结果表明,反应性粉煤灰的有效量与粉煤灰的玻璃含量成正比,反应速率也与该玻璃含量成正比。此外,得出的结论是,外部区域的反应性小于内部区域,并且这些反应性与羟基浓度的幂成比例。随后,将实验数据和模型用于评估内部和外部区域的大小。似乎实心球和空心球的外壳厚度相同,约为2μm。根据观察到的趋势,提出了一种反应机理,该机理考虑了粉煤灰的玻璃含量和组成(也适用于矿渣)。最后,使用反应产物,得到了所研究的粉煤灰的热力学性质:反应的自由能,焓和熵。

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