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Effect of Palm Oil Fuel Ash in Controlling Heat of Hydration of Concrete

机译:棕榈油燃料灰在混凝土水合热控制中的影响

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Pozzolanic materials, either naturally occurring or artificially made, have long been in practice since the early civilization. In recent years, the utilisation of pozzolanic materials in concrete construction has become increasingly widespread, and this trend is expected to continue in the years ahead because of technological, economical and ecological advantages of the materials. One of the latest additions to the ash family is palm oil fuel ash, a waste material obtained on burning of palm oil husk and palm kernel shell as fuel in palm oil mill boilers, which has been identified as a good pozzolanic material. This paper highlights test results on the performance behavior of palm oil fuel ash (POFA) in reducing the heat of hydration of concrete. Two concrete mixes namely OPC concrete i.e. concrete with 100% OPC as control, and POFA concrete i.e. concrete with 30% POFA and 70% OPC were prepared, and the temperature rise due to heat of hydration in both the mixes was recorded. It has been found that palm oil fuel ash not only reduced the total temperature rise but also delayed the time at which the peak temperature occurred. The results obtained and the observation made clearly demonstrate that the partial replacement of cement by palm oil fuel ash is advantageous, particularly for mass concrete where thermal cracking due to excessive heat rise is of great concern.
机译:自然发生或人工制作的火山灰材料长期以来一直在实践中。近年来,在混凝土施工中利用波佐静电材料越来越普遍,预计这一趋势是由于材料的技术,经济和生态优势的未来几年。 Ash家族的最新补充之一是棕榈油燃料灰,在棕榈油壳和棕榈油壳燃烧的废料中获得的废料作为棕榈油磨机锅炉的燃料,这已被鉴定为良好的波谷硅材料。本文突出了棕榈油燃料灰(POFA)在减少混凝土水合热方面的性能行为的测试结果。两个混凝土混合即opc混凝土,即用100%OPC作为对照的混凝土,并制备了30%POFA和70%OPC的POFA混凝土,并记录了两种混合物中的水合热引起的温度上升。已经发现,棕榈油燃料灰不仅降低了总温度上升,而且还延迟了峰值温度发生的时间。所获得的结果和清楚地表明通过棕榈油燃料灰分的部分更换水泥是有利的,特别是对于大量混凝土,由于过度热升高而导致的热裂纹具有很大的关注。

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