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Effects of light crude oil contamination on the physical and mechanical properties of geopolymer cement mortar

机译:光原油污染对地质聚合物水泥砂浆物理和力学性能的影响

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摘要

Fly ash and oil contaminated sand are considered as the two waste materials that may affect environment. This paper investigated the suitability of producing geopolymer cement mortar using oil contaminated sand. A comparison between physical and mechanical properties of mortar produced using geopolymer and Ordinary Portland Cement (OPC), in terms of porosity, hydration and compressive strength, was conducted. The results showed that heat curing can increase the compressive strength of geopolymer mortar up to 54% compared to ambient curing situation. The geopolymer mortar with 1% of light crude oil contamination yielded a 20% higher compressive strength than OPC mortar containing sand with a saturated surface dry condition. Furthermore, the formation of efflorescence decreased as the level of oil contamination decreased. Moreover, the heat curing method increased the kinetic energy and degree of reaction for geopolymer cement mortar, which cause an increment of the density of the pore system and improving the mechanical properties of the resulting composites. From the results of this study, it was demonstrated that geopolymer mortar has the potential of utilizing oil contaminated sand, and reducing its environmental impacts.
机译:粉煤灰和油污砂被认为是可能影响环境的两种废料。本文调查了使用油污砂生产地缘聚合物水泥砂浆的适用性。在孔隙率,水合和抗压强度方面,使用地质聚合物和普通波特兰水泥(OPC)产生的砂浆物理和力学性能的比较。结果表明,与环境固化情况相比,热固化可提高盖聚物砂浆的抗压强度高达54%。具有1%的轻质原油污染的地缘砂浆产生的抗压强度高于含有饱和表面干燥条件的OPC砂浆的抗压强度较高。此外,随着油污染水平降低的情况下,膨胀的形成减少。此外,热固化方法提高了地质聚合物水泥砂浆的动能和反应程度,这导致孔系统的密度增加并改善所得复合材料的机械性能。从本研究的结果中,据证明了地质砂浆具有利用油污砂的潜力,并降低其环境影响。

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