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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >THE ROLE OF MATHEMATICAL MODELLING AND GEL CHEMISTRY IN ADVANCING GEOPOLYMER TECHNOLOGY
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THE ROLE OF MATHEMATICAL MODELLING AND GEL CHEMISTRY IN ADVANCING GEOPOLYMER TECHNOLOGY

机译:数学建模和凝胶的作用化学推进地质聚合物的技术

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摘要

Inorganic alkali aluminosilicate polymers,commonly referred to as geopolymers,have been studied for several decades due to their excellent mechanical and thermal properties,as well as chemical and fire resistance.Such properties make geopolymers suitable for use in a wide range of areas,including construction,building products,and refractory applications.Geopolymers are synthesized via reaction of aluminosilicate materials,such as metakaolin,fly ash (a coal combustion waste) and/or blast furnace slag,with alkaline silicate solutions at ambient or slightly elevated temperatures.Despite the increasing body of research on these advanced materials,little is understood about the underlying gel chemistry,surface phenomena,reaction kinetics or microstructure.It is shown here how reaction kinetic modelling coupled with an analysis of the gel chemistry has led to advances that make the wider acceptance of this technology possible.The ability to model the kinetics of the system allows the design of mixtures for specific applications,and allows better quality control during production.A system of differential equations describing chemical reaction kinetics is formulated and solved,providing a simulated heat flow signal.Validation of the model is undertaken by comparison of this signal with experimental calorimetric data.The process of development of this model is ongoing,but has already provided valuable insights into the reaction processes which,when coupled with understanding obtained from gel chemistry,provides a framework by which the behaviour of geopolymer-forming systems may be analysed.This is a critical step in the wider commercial acceptance of these materials,and in the development of specific geopolymer formulations tailored to particular applications.
机译:一般无机碱铝硅酸盐聚合物,被称为地质聚合物,研究了几十年来由于其优良的机械,以及化学和热性能耐火性。适用于大范围的领域,包括建筑、建筑产品,耐火材料的应用。通过铝矽酸盐反应合成吗材料,如偏高岭土、粉煤灰(煤燃烧垃圾)和/或高炉矿渣,在环境或碱性硅酸盐解决方案略升高温度。增加对这些先进的研究材料,是理解潜在的凝胶化学、表面现象,反应动力学和微观结构。这里展示的是反应动力学模型加上一个凝胶的化学分析导致进步,使更广泛的接受这种技术成为可能。动力学系统的允许的设计混合物为特定的应用程序,并允许更好的在生产过程中质量控制。微分方程描述化学制定和反应动力学解决,提供一个模拟热流信号。这个信号与实验的比较量热数据。这个模型正在进行,但已经提供有价值的见解的反应过程,再加上理解了从胶体化学,这提供了一个框架geopolymer-forming系统可能的行为被分析了。商业接受这些材料,特定的地质聚合物的发展配方适合特定的应用程序。

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