Utilization of Oyster Shell Powder for Hydration and Mechanical Properties Improvement of Portland Cement Pastes

H. Darweesh
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Abstract

Supplementary cementitious materials (SCMs) are usually partially substituted at the expense of Portland cement (OPC) to reduce, as possible, the CO2emission. There has been limited studies involved the use of Oyster shell (OS) to replace OPC. The current study investigated the properties of a ternary base batch containing Oyster shell powder (OSP).The ternary cement batch was consisting of OPC, granulated blast furnace slag (GbfS) and metakaolin (MK). The results indicated that the water consistency and setting times (initial and final) are gradually increased. The water absorption and total porosity are decreased, while the bulk density and combined water content increased. This behaviour continued up till 16 % OSP content, but then reverse was obtained with any further increase of OSP content. The same trend was achieved with the compressive strength. The addition of OSP often formed mono-and/or hemicarbonate instead of monosulfate because it is mainly composed of carbonates, and moreover it is stabilizing the formation of trisulphate or ettringite in the hydrated samples. The decrease is not the decrease of free lime contents proved that the OSP is a pozzolanic material. This was confirmed by FT-IR spectra. From the results it could be concluded that the optimum content of OSP was at most 16 %.
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牡蛎壳粉在硅酸盐水泥浆水化及力学性能改善中的应用
补充胶凝材料(SCMs)通常部分取代波特兰水泥(OPC),以尽可能减少二氧化碳的排放。关于使用牡蛎壳(OS)代替OPC的研究有限。本文研究了含牡蛎壳粉(OSP)的三元碱批的性能。三元水泥由OPC、粒状高炉矿渣(GbfS)和偏高岭土(MK)组成。结果表明,水的浓稠度和凝结时间(初凝和终凝)逐渐增加。吸水率和总孔隙率降低,容重和组合含水量增加。当OSP含量达到16%时,这一现象继续存在,但随着OSP含量的进一步增加,这一现象发生逆转。抗压强度也有同样的趋势。OSP的加入通常形成单碳酸盐和/或半碳酸盐而不是单硫酸盐,因为它主要由碳酸盐组成,而且它在水合样品中稳定了三硫酸盐或钙矾石的形成。游离石灰含量的减少不是减少,证明了OSP是一种火山灰物质。FT-IR光谱证实了这一点。结果表明,草甘膦的最佳含量不超过16%。
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