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Chloride binding by calcined layered double hydroxides and alumina-rich cementitious materials in mortar mixed with seawater and sea sand

机译:氯化钙与海水和海砂混合的煅烧层状双氢氧化物和富含氧化铝的胶凝材料结合

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摘要

Seawater and sea sand can alleviate the shortage of resources and reduce the transportation distance of raw materials at the construction of offshore islands, whereas the high content of chloride ions in concrete mixed with seawater and sea sand induces reinforcement corrosion, which is the biggest obstacle to its wide application. This study aims to explore the way to reduce the free chloride ions content and improve the chloride binding capacity of mortar mixed with seawater and sea sand by calcined layered double hydroxide (CLDH) and alumina-rich cementitious materials (metakaolin (MK), fly ash (FA), and calcium aluminate cement (CAC)). The results show that both CLDH, MK, FA, and CAC can effectively improve the chloride binding capacity of mortar by 65%, 65%, 35%, and 200%, when the optimal dosages are 7.5%, 30%, 30%, and 100%, respectively. Moreover, molecular dynamics simulation shows that the radius correlation function (RDF) value of Cl-Ca ionic pairs is cut down at the condition that has CLDH, which reveals that the adsorption of chloride ions by CLDH occurs in the mortar is confirmed.(c) 2021 Elsevier Ltd. All rights reserved.
机译:海水和海沙可以缓解资源的短缺,减少近海岛屿建设的原材料的运输距离,而混凝土中氯离子的高含量与海水和海沙混合诱导腐蚀,这是最大的障碍它广泛的应用。本研究旨在探讨减少氯离子含量的可用氯离子含量,并通过煅烧层双氢氧化物(CLH)和富含氧化铝(MK),粉煤灰,粉煤灰,改善砂浆混合砂浆的氯化物结合能力。(Metakaolin(MK),飞灰(FA)和铝酸钙水泥(CAC))。结果表明,CLDH,MK,FA和CAC都可以有效地将砂浆的氯化物结合能力提高65%,65%,35%和200%,当最佳剂量为7.5%,30%,30%,和100%分别。此外,分子动力学模拟表明,Cl-Ca离子对的半径相关函数(RDF)值在具有CLDH的情况下切割,这表明CLDH在砂浆中发生CLDH的吸附。(C )2021 elestvier有限公司保留所有权利。

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