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Mechanistic Insights into a Sustainable Mechanochemical Synthesis of Ettringite

机译:钙矾石可持续机械化学合成的机理见解

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摘要

Mechanochemistry offers an environmentally benign and facile synthesis method for a variety of cement paste constituents. In addition, these methods can be used to selectively tune the properties of cement components. The mineral ettringite is an important component of cementitious materials and has additional technological potential due to its ion exchange properties. Synthesis of ettringite via mechanochemistry is an environmentally friendly alternative to conventional wet‐chemical synthesis established in industry. This contribution explores the mechanism of a two‐step mechanochemical synthesis of ettringite, which was previously found to greatly improve the reaction conversion as compared with one‐pot synthesis. The crystallinity of Al(OH)3 was found to decrease during the first stage of this mechanochemical synthesis. This was correlated to a significant decrease in the particle size of Al(OH)3 in this stage. No other significant changes were found for the other components, suggesting that mechanochemical activation of Al(OH)3 is responsible for the enhanced formation of ettringite by the two‐step approach. The environmentally friendly approach developed for ettringite synthesis offers a versatile synthetic strategy, which can be applied to synthesise further cementitious materials.
机译:机械化学为各种水泥浆成分提供了一种对环境无害且简便的合成方法。另外,这些方法可用于选择性地调节水泥组分的性能。钙矾石矿物是胶结材料的重要组成部分,并且由于其离子交换特性而具有额外的技术潜力。通过机械化学合成钙矾石是工业上建立的常规湿化学合成的环保替代方案。该贡献探索了钙矾石的两步机械化学合成的机理,该机理先前被发现与单罐合成相比大大改善了反应转化率。发现在该机械化学合成的第一阶段中,Al(OH)3的结晶度降低。这与该阶段中Al(OH)3的粒径显着降低有关。没有发现其他组分的其他显着变化,表明Al(OH)3的机械化学活化是通过两步法增强钙矾石形成的原因。为钙矾石合成开发的环保方法提供了一种通用的合成策略,该策略可用于合成其他胶凝材料。

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