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Durability performance of modified concrete incorporating fly ash and effective microorganism

机译:改性混凝土掺入粉煤灰和有效微生物的耐久性性能

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Environmentally sustainable construction materials with reduced carbon footprint have ever-growing demand worldwide. Based on this factor, some modified cement concrete mixtures incorporated with optimum ratio of fly ash (FA) and effective microorganism (EM) were produced. The strength performance, water absorption, resistance to aggressive environments (sulfuric acid and sulphate) and microstructures of the proposed concretes was evaluated. Four different ratios of FA replacing ordinary Portland cement (OPC) were used to select the optimum composition. The water content was replaced with the EM solution of 5, 10, 15, and 20%. The FA and EM incorporating OPC in the concrete matrix were found to enhance the mechanical and durability characteristics of the modified concretes. The early compressive strength of proposed concrete was enhanced over 30% and the durability was improved against the harsh environment due to the incorporation of OPC with 10% of FA and EM. The optimum concrete obtained with the FA and EM of 10% was asserted to be environmentally beneficial towards less global warming. (C) 2020 Elsevier Ltd. All rights reserved.
机译:碳足迹减少的环保建筑材料具有全球需求不断增长。基于该因素,制备了一些具有粉煤灰(FA)和有效微生物(EM)的最佳比率的一些改进的水泥混凝土混合物。评价强度性能,吸水,对腐蚀性环境(硫酸和硫酸盐)和显微组织的耐药性得到了评价。使用FA替代普通波特兰水泥(OPC)的四种不同比例来选择最佳组合物。用5,10,15和20%的EM溶液代替水含量。发现FA和EM在混凝土基质中掺入OPC,增强了改性混凝土的机械和耐用性特性。所提出的混凝土的早期抗压强度提高了30%以上,由于obc掺入10%的FA和EM,耐久性与恶劣环境提高。通过FA和EM为10%获得的最佳混凝土被断言为环境有益于全球变暖。 (c)2020 elestvier有限公司保留所有权利。

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