白豇豆壳灰的火山灰性质

U. Wilson, Gambo Z, Mohammed I S, E. O. C., O. S. O.
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引用次数: 1

摘要

本研究试图实证研究白豇豆壳灰(WCHA),一种农业生物质废弃物,在其使用的不同百分比作为部分替代水泥在混凝土中的火山灰性质。白豇豆壳在5500C下煅烧3小时,得到WCHA。x射线荧光(XRF)分析表明,WCHA样品为C类火山灰,其SiO2、Al2O3和Fe2O3的组合含量为65.4%。WCHA含量随WCHA含量的增加而增加。这是由于WCHA的点火损失(LOI)比水泥高。结果表明,随着WCHA掺量的增加,WCHA -水泥混合混凝土的初凝时间和终凝时间均有所延长。wcpa -水泥膏体凝结时间的延迟可能是由于火山灰反应较慢。随着WCHA含量的增加,混凝土的密度减小。WCHA混凝土的抗压强度一般随龄期的增加而增加,随WCHA含量的增加而降低,从28.6 N/mm2降至20.0 N/mm2,降低幅度为30.1%。强度降低还归因于粘合剂水合物的结合特性的改变。而WCHA含量为10% (26.4 N/mm2)的混凝土28天抗压强度满足25 N/mm2的设计特征强度。超过这个极限,混凝土的抗压强度低于设计强度。因此,10% WCHA可视为25级混凝土的最佳掺量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pozzolanic Properties of White Cowpea Husk Ash
This research attempts to empirically investigate the pozzolanic properties of White Cowpea Husk Ash (WCHA), an agricultural biomass waste, at different percentages of its use as partial replacement of cement in concrete. WCHA was obtained after the calcination of white cowpea husk for 3 hours at 5500C. X-ray Florescence (XRF) analysis performed revealed that the sample of WCHA is a Class C pozzolana, which contains 65.4% of the combination of SiO2, Al2O3, and Fe2O3. The WCHA shows increase in consistency with increase in the WCHA content. This was attributed to the high Loss of Ignition (LOI) of WCHA compared to that of the cement. In addition, the results indicated that the initial and final setting time of WCHA – Cement blended concrete increase with increase in the WCHA content. The delay in setting times of WCPA-Cement paste could be attributable to the slower pozzolanic reaction. The density of the concrete decreased as the WCHA content increases. Generally the compressive strength of the WCHA concrete increased with increase in curing age and decreases as the WCHA content increased from a strength of 28.6 to 20.0 N/mm2 giving a percentage reduction of 30.1 %. The strength reduction is also attributed to the modification of the bonding properties of the binders’ hydrates.  However, the 28 days compressive strength of concrete with up to 10 % WCHA content (26.4 N/mm2) satisfied the design characteristic strength of 25 N/mm2. Beyond this limit, the compressive strength of the concrete fell below the design strength. Hence, 10 % WCHA could be regarded as the optimum dose for grade 25 concrete.
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