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Microstructure of cement paste with natural pozzolanic volcanic ash and Portland cement at different stages of curing

机译:天然火山灰和硅酸盐水泥在不同养护阶段的水泥浆的微观结构

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The use of volcanic ash as a partial substitute to Portland cement can be a viable alternative for producing sustainable and durable cementitious materials. This study investigates the effect of early and late age curing of hardened cement pastes made with volcanic ash and Ordinary Portland Cement (OPC). Pore and microstructure studies were performed on hardened cement pastes prepared with 10% incremental substitution of volcanic ash up to 50% substitution of OPC. Densification in hardened cement "pastes was attributed to formation of Calcium Silicate Hydrate (C-S-H) and Calcium-Alumino-Silicate-Hydrate (C-AS-H) gels, while the development of Magnesium-Silicate-Hydrates (M-S-H) led to decalcification of C-S-H and C-A-S-H gels which resulted in an increase in porosity of the cementitious matrix. A combination of bulk and surface characterization techniques was used to facilitate effective usage of volcanic ash as a potential substitute for Portland cement that provides a sustainable construction material, and environmentally friendly solution to volcanic ash disposal. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用火山灰作为波特兰水泥的部分替代品可能是生产可持续,耐用的胶凝材料的可行选择。本研究调查了由火山灰和普通波特兰水泥(OPC)制成的硬化水泥浆的早期和晚期固化的效果。对硬化水泥浆进行了孔和微结构研究,这些水泥浆用10%的火山灰增量替代量高达50%的OPC替代量制备。 “硬化水泥中的浆糊致密化归因于硅酸钙水合物(CSH)和钙铝硅酸盐-水合物(C-AS-H)凝胶的形成,而镁硅酸盐-水合物(MSH)的发展导致钙的脱钙。 CSH和CASH凝胶可导致胶结基质孔隙率增加,结合了体表和表面表征技术,促进了火山灰的有效利用,可作为波特兰水泥的潜在替代品,从而提供可持续的建筑材料和环保(C)2016 Elsevier Ltd.保留所有权利。

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