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利用硅灰和废玻璃粉(环境废物)替代波特兰水泥的可能性。

Possibilities of disposing silica fume and waste glass powder, which are environmental wastes, by using as a substitute for Portland cement.

机构信息

Faculty of Engineering and Architecture, Department of Civil Engineering, Kastamonu University, Kuzeykent, Kastamonu, Turkey.

出版信息

Environ Sci Pollut Res Int. 2021 Apr;28(13):16843-16854. doi: 10.1007/s11356-020-12195-9. Epub 2021 Jan 4.

DOI:10.1007/s11356-020-12195-9
PMID:33394426
Abstract

In this study, the possibilities of disposal of environmental waste, silica fume, and waste glass powder as substitutes in the mortar samples in Portland cement were investigated. For this purpose, Portland cement (CEM I), silica fume (SF), waste glass powder (WGP), CEN standard sand, and water were used in mortar production. Additive cements were obtained by using the SF, WGP, and SFWGP substitution methods in Portland cement at the rates of 10, 20, 30, and 40%. The flexural strength, compressive strength, radiation permeability (determination of linear absorption coefficient), high temperature, and alkali-silica reaction (ASR) effect on SF, WGP, and SFWGP were examined and compared with the control PC 42.5R samples. Mortar samples of 40 × 40 × 160 mm size were obtained with the grouts/mortars produced, and the samples were exposed to five temperature effects, namely, 20, 150, 300, 700, and 1000 ° C. Samples kept at 20 ° C are accepted as baseline. A total of 429 samples were studied, including the cooling process in the air (spontaneously in the laboratory, 20 ° C ± 2). After the samples achieved room temperature, flexural and compressive strength tests were carried out at 28 and 90 days. Test results demonstrate that SF, WGP, and SFWGP, which are environmental wastes, can be disposed both as a pozzolanic additive material both alone and together in cement mortars, can be utilized in buildings with high fire hazard, and the sample with the highest linear absorption coefficient is the sample obtained with SFWGP, and also, the expansion values ​​that occur in SF and WGP are less than the control sample.

摘要

在这项研究中,研究了将环境废物硅灰和废玻璃粉作为波特兰水泥中砂浆样品替代物的可能性。为此,在砂浆生产中使用了波特兰水泥(CEM I)、硅灰(SF)、废玻璃粉(WGP)、CEN 标准砂和水。通过在波特兰水泥中使用 SF、WGP 和 SFWGP 替代法,在 10%、20%、30%和 40%的比例下获得了外加剂水泥。研究和比较了 SF、WGP 和 SFWGP 对弯曲强度、抗压强度、辐射透过率(线性吸收系数的测定)、高温和碱-硅反应(ASR)的影响,并与对照 PC 42.5R 样品进行了比较。用制备的灌浆料/砂浆获得了 40×40×160mm 尺寸的砂浆样品,并将样品暴露于五种温度影响下,即 20、150、300、700 和 1000°C。将保持在 20°C 的样品作为基准。共研究了 429 个样品,包括在空气中的冷却过程(在实验室中自然冷却,20°C±2)。在样品达到室温后,在 28 天和 90 天进行了弯曲和抗压强度测试。测试结果表明,SF、WGP 和 SFWGP 作为环境废物,可单独或一起作为火山灰添加剂材料在水泥砂浆中使用,可用于火灾危险较高的建筑物,且具有最高线性吸收系数的样品是用 SFWGP 获得的样品,而且 SF 和 WGP 中发生的膨胀值小于对照样品。

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