高掺量粉煤灰底灰(FABA)混凝土在泥炭水中的性能评价

M. Olivia, Alfian ' Kamaldi, Ismeddiyanto, G. Wibisono, E. Saputra
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引用次数: 0

摘要

FABA是电厂煤燃烧的副产物,由飞灰(FA)和底灰(BA)按80/20的比例组成。粉煤灰作为混凝土的矿物成分具有很大的潜力,而底灰则会损害混凝土的强度和耐久性。然而,这两种材料都用于提高硫酸盐、氯化物和酸性环境中结构的强度和耐久性。本研究评估了混合和大体积FABA混凝土的性能,如强度、孔隙率、失重率和在有机酸性泥炭水中的吸附性能。将普通硅酸盐水泥(OPC)与含25% FABA的混合混凝土及其大体积含50%和75% FABA的目标强度分别为15、21和29 MPa的混凝土进行比较。掺混高体积FABA的抗压强度随浸渍时间的增加而增加,孔隙率和吸附率下降。此外,OPC混凝土的强度在28天后下降,所有混合料的边际重量逐渐下降5%。该研究表明,混合和大体积的FABA在酸性泥炭地环境中具有作为建筑材料的潜力。
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Evaluating Properties of Blended and High Volume Fly Ash Bottom Ash (FABA) Concrete in Peat Water
FABA is a by-product of coal combustion in power plants comprising fly ash (FA) and bottom ash (BA) in ratios of 80/20. Fly ash has great potential as a mineral ingredient in concrete, while bottom ash compromises its strength and durability. However, both materials are used to improve the strength and durability of structures in sulfate, chloride, and acidic environments. This research evaluated the properties of blended and high-volume FABA concrete, such as the strength, porosity, weight loss, and sorptivity in organic acidic peat water. OPC (Ordinary Portland Cement) was compared to the blended concrete containing 25% FABA and its high-volume containing 50% and 75% FABA with target strengths of 15, 21, and 29 MPa. The compressive strength of blended and high volume FABA increased during the immersion period, while the porosity and sorptivity rates decreased. Furthermore, the strength of the OPC concrete declined at 28 days, with a gradual marginal weight loss of 5% observed in all mixes. This research suggested that blended and high-volume FABA has potential as a construction material in an acidic peatland environment.
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20
审稿时长
15 weeks
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