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首页> 外文期刊>Advances in civil engineering >Sustainable Approach for Linz-Donawitz Slag Waste as a Replacement of Cement in Concrete: Mechanical, Microstructural, and Durability Properties
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Sustainable Approach for Linz-Donawitz Slag Waste as a Replacement of Cement in Concrete: Mechanical, Microstructural, and Durability Properties

机译:Linz-Donawitz Slag废物的可持续方法作为混凝土中的水泥替代:机械,微观结构和耐久性

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摘要

Linz-Donawitz (LD) slag, solid waste produced during steel manufacture in basic oxygen furnace, is difficult when it comes to handling and disposal and has very limited utilization. To increase its reusability, the suitability of supplanting cement with LD slag in concrete was examined. To study the impact of partially replacing cement with LD slag on strength, microstructure, and durability of concrete, more than 150 samples were cast. The test results reveal that the highest compressive and flexural strengths were attained at 20% LD slag replacement and, beyond that, the strength decreased. The hydration products detected by X-ray Diffraction (XRD) and Fourier-transform infrared spectroscopy (FTIR) were calcium silicate hydrate (C-S-H), ettringite, and calcium aluminosilicate hydrate (C-A-S-H). The scanning electron microscope (SEM) images of binary cement concrete showed denser microstructure and lesser voids. The sulphuric acid resistance, electrical resistivity, and carbonation resistance tests done reveal that acceptable durability could be achieved when cement is replaced by LD slag. It is deduced that LD slag can be utilized in partially replacing cement to achieve the desired strength. This research gives another comprehension of simultaneously managing steel industry waste for sustainable development and contributing added advantages to the economy.
机译:LINZ-DONAWITZ(LD)炉渣,在钢制造过程中产生的固体废物在基本的氧气炉中,在处理和处理方面是困难的,并且利用率非常有限。为了提高其可重用性,研究了在混凝土中使用LD炉渣的包装水泥的适用性。为研究部分更换水泥对LD熔渣的影响力,微观结构和混凝土的耐久性,铸造了超过150个样品。测试结果表明,最高的压缩和弯曲强度达到了20%的LD熔渣替代品,并且超出该强度降低。由X射线衍射(XRD)和傅立叶变换红外光谱(FTIR)检测的水合产物是硅酸钙水合物(C-S-H),Ettringite和铝硅酸钙水合物(C-A-S-H)。二元水泥混凝土的扫描电子显微镜(SEM)图像显示密集微观结构和较小的空隙。完成硫酸耐药性,电阻率和碳化性耐碳酸化性试验表明,当水泥被LD渣取代时,可以实现可接受的耐久性。推导出LD炉渣可用于部分地更换水泥以达到所需的强度。该研究提供了另一种理解,对可持续发展的同时管理钢铁行业浪费以及对经济的贡献优势。

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