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Setting time and microstructure of Portland cement-bottom ash-sugarcane bagasse ash pastes

机译:门廊水泥 - 底氨基磺烷瓶颈灰膏设定时间和微观结构

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Bottom ash (BA) and sugarcane bagasse ash (SCBA) are by-products from power plants and the sugar industry and they have a great potential to be used in green-concrete structure applications. This study reports the effects of BA and SCBA on the properties of Portland cement (PC) pastes and mortars as cement replacement, by up to 20 percent by weight. All mortars had a water to binder ratio (w/PC + BA, w/PC + SCBA, and w/PC + BA + SCBA) of 0.5. Normal consistency, setting time, compressive strength, and microstructure (using scanning electron microscope, SEM) were systematically investigated. The results showed that the water requirement for a normal consistency was decreased with increasing BA content. The addition of SCBA, on the other hand, caused the water requirement to increase. The initial and final setting times of all pozzolan mixes were longer when compared to that of PC mix. The compressive strengths of all mixtures with BA were similar to that of the PC mix at 90 days. In addition, the SEM micrograph of pastes confirmed a good pozzolanic reaction between ash particles and Portland cement, resulting in an increase in the compressive strength of the mortars, especially after a period of time (more than 28 days).
机译:底灰(BA)和甘蔗泡沫(SCBA)是来自发电厂和糖业的副产品,它们具有在绿色混凝土结构应用中使用的巨大潜力。本研究报告了BA和SCBA对波特兰水泥(PC)浆料和砂浆作为水泥替代物的性能的影响,高达20%重量。所有迫击炮均为0.5的粘合剂比(W / PC + BA,W / PC + SCBA和W / PC + BA + SCBA)的水。系统地研究了正常的一致性,设定时间,抗压强度和微观结构(使用扫描电子显微镜SEM)。结果表明,随着BA含量的增加,正常一致性的水需求降低。另一方面,加入SCBA导致水需求增加。与PC混合相比,所有Pozzolan混合物的初始和最终设定时间更长。所有与BA的混合物的抗压强度与PC混合物的所有混合物在90天内相似。此外,糊状物的SEM显微照片确认了灰分颗粒和波特兰水泥之间的良好的波佐反应,导致迫击炮的抗压强度增加,特别是在一段时间后(超过28天)。

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