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Enhancement of strength and durability of fly ash concrete in seawater environments: Synergistic effect of nanoparticles

机译:在海水环境中提高粉煤灰混凝土的强度和耐久性:纳米颗粒的协同效应

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摘要

Fly ash is used in concrete industry to reduce the amount of cement and to enhance the durability of concrete. Nuclear industry recently adopted fly ash concrete as a government initiative to reduce carbon footprint and also to provide an impermeable skin for the several structures in the cooling water system exposed to marine environment for enhanced durability. Earlier detailed studies on fly ash concrete has shown that despite its superiority over conventional concrete with respect to strength and durability, some concerns such as delayed setting and hydration, low early-age strength, and higher carbonation may pose a problem for its wider application. The present work is an attempt to overcome these deficiencies by nanophase modification of concrete with the incorporation of nano-titania and nano-calcium carbonate at 2% by weight of cement. Four different types of concrete mix were arrived and specimens of different sizes were cast in order to explore the various properties of concrete. After. 28 days of curing in potable water, the samples were exposed to seawater at Nuclear Desalination Demonstration Plant (NDDP) sump at Kalpakkam and were withdrawn for testing at different ages like 56, 90, 180 and 365 days. Nanophase modification increased the pozzolanic activity resulting in faster hydration, early-age strength and long-term compressive and split tensile strength, permissible electrical resistivity for corrosion, lower chloride ion penetration, carbonation depth biofilm formation and higher internal pH. Among the different mixes, the synergy of 1% NC and 1% NT emerged superior with excellent concrete properties related to mechanical properties, pore structure, durability and optimum antibacterial activity. (C) 2018 Elsevier Ltd. All rights reserved.
机译:粉煤灰用于混凝土工业,以减少水泥用量并增强混凝土的耐久性。核工业最近将粉煤灰混凝土用作政府计划,以减少碳足迹,并为暴露于海洋环境的冷却水系统中的多个结构提供不透水的表皮,以提高耐用性。早期的粉煤灰混凝土详细研究表明,尽管它在强度和耐久性方面优于常规混凝土,但仍存在一些问题,例如延迟凝固和水合作用,早期强度低以及碳酸化程度较高,可能会为其广泛应用带来问题。目前的工作是通过以水泥的2%(重量)掺入纳米二氧化钛和纳米碳酸钙来克服纳米混凝土的这些缺陷的尝试。到达了四种不同类型的混凝土混合物,并浇铸了不同尺寸的标本,以探索混凝土的各种性能。后。在饮用水中固化28天后,样品在Kalpakkam的核淡化示范工厂(NDDP)贮槽中暴露于海水中,并取出以进行56、90、180和365天等不同年龄的测试。纳米相改性提高了火山灰活性,从而导致更快的水合作用,早期强度以及长期的抗压和劈裂抗张强度,允许的腐蚀电阻率,较低的氯离子渗透,碳化深度的生物膜形成和较高的内部pH值。在不同的混合物中,1%的NC和1%的NT的协同作用表现出优异的表现,并具有与机械性能,孔结构,耐久性和最佳抗菌活性相关的优异混凝土性能。 (C)2018 Elsevier Ltd.保留所有权利。

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