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Coal Fly Ash-Carbide Lime Admixtures as an Alternative to Concrete Masonry Blocks: Influence of Ash Grounds

机译:粉煤灰碳化物石灰掺合料作为混凝土砌块的替代品:灰渣的影响

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摘要

Compacted blocks of coal fly ash and carbide lime (two industrial by-products) have a great potential as building products. This admixture can be used as an alternative to weight-bearing or nonstructural concrete masonry blocks due to the pozzolanic reactions occurring between silica and/or alumina in amorphous phases (found in the fly ash) and Ca~(++) (existent in carbide lime) in an alkaline environment. However, pozzolanic reactions are notoriously slow at ambient temperatures, requiring long curing periods to achieve the necessary strength for certain applications. Therefore, this study aims to verify the influence of coal fly ash ground towards the increase of unconfined compressive strength (q_u) in fly ash-carbide lime blends. Results have shown that the ash grounds allowed an increase in q_u for coal fly ash-carbide lime admixtures. It was found that coal fly ash ground for a short period of time (up to 2 h) increases the specific area of the fly ash grains by about 50%, while the strength at ambient temperature increases by about 200%. Ground specimens cured at 23℃ for 7 days follow similar increase tendencies of q_u values as the ones presented by the rising of curing temperature on nonground specimens from 23 to 40℃ for a 7-day curing period. Finally, it can be concluded that grounds might be a convenient alternative for extensive use to increasing curing temperature or to be used combined with higher curing temperatures in order to increase strength of coal fly ash-carbide lime blocks in a short curing period.
机译:压实的粉煤灰和碳化钙块(两种工业副产品)作为建筑产品具有巨大潜力。由于在无定形相(粉煤灰中存在)和Ca〜(++)(碳化物中存在)中的二氧化硅和/或氧化铝之间发生火山灰反应,因此该掺合料可用作承重或非结构混凝土砌块的替代品。石灰)在碱性环境中。然而,众所周知,火山灰反应在环境温度下很慢,需要较长的固化时间才能达到某些应用所需的强度。因此,本研究旨在验证粉煤灰粉尘对粉煤灰-硬质石灰混合料中无侧限抗压强度(q_u)的影响。结果表明,灰渣使粉煤灰-碳化钙石灰掺合料的q_u增加。发现在短时间内(长达2小时)研磨粉煤灰可使粉煤灰颗粒的比表面积增加约50%,而在环境温度下的强度增加约200%。在23℃固化7天的磨碎样品遵循q_u值的增加趋势,这与在7天的固化时间内将非磨碎样品的固化温度从23℃升高到40℃呈现的趋势相似。最后,可以得出结论,理由可能是广泛使用以提高固化温度的方便替代方法,或与更高的固化温度结合使用以提高粉煤灰-碳化钙石灰块在较短固化时间内的强度。

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