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Chloride-bearing characteristics of alkali-activated slag mixed with seawater: Effect of different salinity levels

机译:与海水混合碱活化炉渣的氯化物特性:不同盐度水平的影响

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This paper presents the microstructural properties of KOH-activated slag pastes produced with natural seawater under different salinity levels. The seawater-mixed samples exhibit higher 91-day strength compared to the control sample produced with deionized water. Their reduced total porosity and decrease in average pore size are closely related to the strength improvement. The dense microstructure is composed of reaction products resulting from the inclusion of seawater; these include Cl-hydrocalumite, Cl-hydrotalcite, AlClO, K2SO4, CaCO3, calcium aluminum iron oxide carbonate hydroxide hydrate, and aluminum chloride hydrate. In addition, CO32- in the CO3-hydrotalcite and CO3-hydrocalumite is replaced by chloride ions, and then a Cl-bearing phase is formed, leading to a higher bound chloride content. Lastly, in the single ocean current investigated in this study, the strength of seawater-mixed samples is weakly vulnerable to salinity variation.
机译:本文介绍了在不同盐度水平下用天然海水生产的KOH活化炉渣的微观结构性质。 与用去离子水生产的对照样品相比,海水混合样品具有更高的91天强度。 它们降低的总孔隙率和平均孔径的降低与强度改善密切相关。 致密的微观结构由包含海水引起的反应产物组成; 这些包括Cl-氢氧化石油,Cl-水滑石,AlClo,K 2 SO 4,CaCO 3,氧化铝碳酸铝碳酸铝水合物和氯化铝水合物。 另外,CO 3-水滑石和CO3-氢氧石油中的CO 3 2 - 氯离子代替,然后形成氯化氢液相含量较高。 最后,在本研究中调查的单一海洋电流中,海水混合样品的强度弱易受盐度变化。

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