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Pulverized Calcined Clay and Carbide Waste as Alternative Binder in Concrete and Mortar Applications for Sustainable Construction

机译:粉状煅烧粘土和硬质合金废料作为混凝土和砂浆中可持续建筑应用的替代粘合剂

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Portland cement (PC) based concrete is the world's most consumed man-made material and this consequently puts lots of demand on cement as a binder. The CO_2 gas emission during cement clinker production has placed this important material into non-environmental-friendly classification with quest for greener alternatives being on the rise. A recent study showed combination of Pulverized Calcined Clay (PCC) and Calcium Carbide Waste (CCW) as possible alternative for total PC replacement with resulting appreciable mortar strength but delayed setting times and lower strength than PC mortars. This paper reports on effects of PCC-CCW as alternative binder on strength properties of mortars. The mortar mixes had superplasticizers added to reduce water/binder ratio while the CCW was treated to reduce impurities with a view to improving the strength development and a bid to mitigate the observed setbacks of earlier study. The pozzolanic activity indices of the PCC was determined via X-Ray Fluorescence (XRF) and strength determination (strength activity index). The PCC was combined with Purified CCW to determine the binder's strengths at varying PCC:CCW replacements to determine the prescribed mix combination for optimum strength. Improved optimised mortar strength of 13.11MPa was achieved compared to 11.89MPa in the previous study.
机译:基于波特兰水泥(PC)的混凝土是世界上消耗最多的人造材料,因此,对作为粘合剂的水泥提出了很多要求。水泥熟料生产过程中的CO_2气体排放已使这一重要材料进入非环境友好分类,并寻求越来越多的绿色替代品。最近的一项研究表明,粉状煅烧粘土(PCC)和碳化钙废料(CCW)的组合可以替代全部PC,从而产生显着的砂浆强度,但延迟固化时间且强度低于PC砂浆。本文报道了PCC-CCW作为替代粘结剂对砂浆强度特性的影响。砂浆混合物中加入了减水剂,以降低水/粘合剂的比例,同时对CCW进行了处理,以减少杂质,以改善强度,并减轻了早期研究中发现的挫折。 PCC的火山灰活性指数是通过X射线荧光(XRF)和强度测定(强度活性指数)确定的。将PCC与Purified CCW结合使用,以确定在不同的PCC:CCW替代量下粘合剂的强度,从而确定最佳强度的指定混合组合。与之前的研究中的11.89MPa相比,改进后的优化灰浆强度达到了13.11MPa。

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