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Valorization of converter steel slag into eco-friendly ultra-high performance concrete by ambient CO_2 pre-treatment

机译:Ambient Co_2预处理算子换算液钢结构对环保超高性能混凝土的算法

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The converter steel slag is a by-product during the steel-making process, which usually acts as an inert ingredient in construction due to the relatively low reactivity. However, its mineral composition results in a high reactivity in a CO2 rich environment. This study reveals the modification of converter steel slag by an ambient CO(2 )pretreatment, and the application of modified converter steel slag as the supplementary cementitious material (SCM) in the design of eco-friendly ultra-high performance concrete (UHPC) by using a particle packing model. The results show that converter steel slag after ambient CO2 pretreatment is feasible to be used in eco-friendly UHPC design, which achieves a relative higher compressive strength over 150 MPa with the cement substitution from 15% to 45%, compared to non-carbonated steel slag. The ambient CO2 pretreatment can modify the physical and chemical properties of converter steel slag particles, which produces a rough and porous surface of slag particles because of the precipitation of calcium carbonate and amorphous silica gel as carbonation products. Consequently, the incorporation of carbonated steel slag improves the cement hydration, enhance the formation of ettringite and C-S-H, while densify the microstructure compared to non-carbonated slag in eco-friendly UHPCs. The leaching of potentially hazardous elements, e.g. Cr and V from carbonated steel slag can be efficiently reduced below legal limits in UHPC mixtures. (C) 2021 Elsevier Ltd. All rights reserved.
机译:转换器钢渣是钢制过程中的副产物,其通常用作由于相对较低的反应性导致施工中的惰性成分。然而,其矿物质组合物在CO 2富含环境中导致高反应性。本研究揭示了通过环境CO(2)预处理的转换器钢渣改变,以及改进的转换器钢渣作为辅助胶粘材料(SCM)的应用,包括环保超高性能混凝土(UHPC)。使用颗粒包装模型。结果表明,环境二氧化碳预处理后的转换器钢渣是可用于环保UHPC设计的可行性,其与非碳酸钢相比,通过15%至45%的水泥取代实现相对较高的抗压强度,从150mPa实现相对较高的抗压强度。矿渣。环境二氧化碳预处理可以改变转换器钢渣颗粒的物理和化学性质,其由于碳酸钙和无定形硅胶作为碳酸化产物的沉淀而产生粗糙和多孔的炉渣表面。因此,碳酸钢渣的掺入改善了水泥水化,增强了Ettringite和C-S-H的形成,同时与生态友好型UHPC中的非碳酸渣相比使微观结构致密化。潜在危险因素的浸出,例如潜在的危险因素。来自碳酸钢渣的Cr和v可以有效地降低UHPC混合物中的法律限制。 (c)2021 elestvier有限公司保留所有权利。

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