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Alkali activated composites - An innovative concept using iron and steel slag as both precursor and aggregate

机译:碱活性复合材料 - 一种使用钢铁渣作为前体和骨料的创新概念

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摘要

The present paper addresses the feasibility of using an iron and steel slag aggregate (ISS), resulting from electric arc furnace, as a recycled raw material in the production of a new concept of mortar composite, based on alkaline activation, designated as 'alkali activated composite' (AACO). The original ISS aggregate was used both as a precursor and an aggregate, either as received (aggregate fraction) or after mechanical activation (precursor fraction). In the first stage, to determine its potential as a precursor, it was mixed with fly ash (FA), using weight ratios of 100/00, 75/25, 50/50, 25/75 and 00/100. The most effective results were obtained with the blend 50/50, which was subsequently used to study the performance of the aggregate fraction. The second stage was comprised of tests on the mortar composites, combining some of the previously tested pastes with the ISS or with a normalised sand (for reference). A 8 M sodium hydroxide solution was used as the activator for all pastes and mortars tested. The curing developed throughout 2 or 28 days, at 22 degrees C, after an initial 20 h period at 85 degrees C. The reaction products were characterised using X-Ray Diffraction and microscopy (scanning electron microscopy, for the pastes, and back-scattering electron microscopy, for the mortars). Results show that, indeed, the ISS can be applied as a precursor and/or as an aggregate in the production of alkaline composites.
机译:本文涉及使用电弧炉产生的钢铁渣聚集体(ISS)的可行性,作为耐碱活化的新概念的再生原料,基于碱性活化,指定为“碱活化”复合'(AACO)。原始的ISS聚集体既是作为前体和骨料一样使用,如接受(骨料分数)或机械活化(前体级分)。在第一阶段,为了确定其作为前体的潜力,它与粉煤灰(FA)混合,使用100/00,75 / 25,50 / 50,25 / 75和00/100的重量比。用混合物50/50获得最有效的结果,随后用于研究骨料分数的性能。第二阶段由砂浆复合材料的试验组成,将一些先前测试的糊状物与ISS或标准化的砂(供参考)组合。使用8M氢氧化钠溶液作为所有浆料和砂浆的活化剂。在85℃的初始20小时内,在22摄氏度下在整个2或28天内开发的固化。使用X射线衍射和显微镜(扫描电子显微镜,用于浆料,并为浆料进行反应产物,以及背散射电子显微镜,用于迫击炮)。结果表明,实际上,ISS可以作为前体和/或作为生产碱性复合材料的骨料施用。

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