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Circulation Fluidized Bed Combustion Fly Ash as Partial Replacement of Fine Aggregates in Roller Compacted Concrete

机译:循环流化床燃烧粉煤灰作为碾压混凝土中细骨料的部分替代品

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摘要

Recently, many people around the world have been concerned with environmental protection and sustainability. The goal of various countries’ research has been focused on how to regenerate existing resources. Circulation fluidized bed combustion (CFBC) technology is one of the emerging combustion technologies for electricity generation and produces more than 800,000 tons of CFBC fly ash (CFA) per year for combustion. CFA has been widely applied in cement additive, new building materials and cement-based materials. The goal of this study was to discuss the engineering properties of roller-compacted concrete containing CFA. Test subjects included compressive strength, flexural strength, absorption, setting time, unit weight, sulfate resistance, SEM microscopic observations and XRD ingredient analysis. Test results indicate the following: (1) using CFA as a substitute of fine aggregates up to 10 wt.% would improve the development of later flexural strength; (2) the increases in pre-pressure would increase the compressive strength and unit weight and decrease absorption; (3) using CFA would reduce the initial setting time by 30%–60% and reduce the final setting time by 16%–20%; (4) using CFA would reduce the absorption; (5) using CFA would reduce the unit weight by 0.5%–2.8%, and the increases in pre-pressure would increase the unit weight by about 0.9%–2.1%; (6) CaO in CFA helps to improve sulfate resistance; (7) scanning electron microscopy (SEM) observation shows that the increases in pre-pressure would reduce the pores; and (8) X-ray diffraction (XRD) analysis shows that the inclusion of CFA would increase the content of Ca(OH) in concrete.
机译:最近,世界上许多人都在关注环境保护和可持续性。各个国家/地区的研究目标都集中在如何再生现有资源上。循环流化床燃烧(CFBC)技术是新兴的发电燃烧技术之一,每年可产生80万吨以上的CFBC飞灰(CFA)进行燃烧。 CFA已广泛应用于水泥添加剂,新型建筑材料和水泥基材料。这项研究的目的是讨论含有CFA的碾压混凝土的工程性能。测试对象包括抗压强度,抗弯强度,吸收率,凝固时间,单位重量,抗硫酸盐性,SEM显微镜观察和XRD成分分析。试验结果表明:(1)用CFA代替细骨料的重量百分比最高为10%,将改善后期抗弯强度的发展。 (2)预压的增加会增加抗压强度和单位重量,降低吸收。 (3)使用CFA可以将初始凝固时间减少30%–60%,并将最终凝固时间减少16%–20%; (4)使用CFA会减少吸收; (5)使用CFA将使单位重量减少0.5%-2.8%,而增加预压将使单位重量增加大约0.9%-2.1%; (6)CFA中的CaO有助于提高抗硫酸盐性; (7)扫描电镜(SEM)观察表明,预压的增加会减少气孔; (8)X射线衍射(XRD)分析表明,CFA的加入会增加混凝土中Ca(OH)的含量。

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