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污水污泥灰与石灰石在水泥基复合材料中的协同效应:水化动力学与力学性能

Synergistic effects of sewage sludge ash and limestone in cement-based composites: hydration kinetics and mechanical performance.

作者信息

Chang Zhiyang, Wang Huimin, Yue Hongzhi, Xu Huijun, Liu Dongming

机构信息

School of Materials Science and Engineering, Shandong University of Technology Zibo Shandong 255000 China

School of Chemistry and Chemical Engineering, Shandong University of Technology Zibo Shandong 255000 China.

出版信息

RSC Adv. 2025 Jun 25;15(27):21639-21648. doi: 10.1039/d5ra02341f. eCollection 2025 Jun 23.

Abstract

The use of solid waste as a supplementary cementitious material (SCM) has the potential to reduce CO emissions in the cement industry. Sewage sludge ash (SSA), generated during the incineration of municipal wastewater treatment residues, has emerged as a viable SCM candidate for fabricating ternary cementitious systems incorporating cement and limestone. This study systematically investigated the hydration kinetics, phase evolution, and mechanical behavior of SSA-modified ternary composites. The research particularly focused on elucidating the synergistic interactions between SSA components and conventional cement hydrates under different compositions of ternary composites. Experimental results showed that fine SSA particles provided crystal nuclei for the crystallization and precipitation of hydration products and further increased the initial release of hydration heat. Besides, the reactive aluminate and silicate in SSA facilitated its reaction with limestone and the formation of aluminum-containing hydrates and carboaluminate phases. The formation of additional ettringite was also observed when the gypsum content was increased. These additional hydrates filled in the large capillary pores of hardened cement paste, resulting in a denser microstructure and higher compressive strength. The ternary composite incorporating 20% SSA, 10% limestone and 2% gypsum exhibited a compressive strength of 49.54 MPa with a strength activity index (SAI) of 94.56% at 28 days. The excellent mechanical performance of this ternary composite demonstrates its significant potential for the development of low-carbon cementitious materials.

摘要

将固体废物用作辅助胶凝材料(SCM)有潜力减少水泥行业的二氧化碳排放。城市污水处理残渣焚烧过程中产生的污水污泥灰(SSA),已成为制备包含水泥和石灰石的三元胶凝体系的一种可行的SCM候选材料。本研究系统地研究了SSA改性三元复合材料的水化动力学、相演变和力学行为。该研究特别侧重于阐明在不同组成的三元复合材料中SSA组分与传统水泥水化物之间的协同相互作用。实验结果表明,细SSA颗粒为水化产物的结晶和沉淀提供了晶核,并进一步增加了水化热的初始释放。此外,SSA中的活性铝酸盐和硅酸盐促进了其与石灰石的反应以及含铝水化物和碳铝酸盐相的形成。当石膏含量增加时,还观察到额外钙矾石的形成。这些额外的水化物填充了硬化水泥浆体的大毛细孔,导致微观结构更致密,抗压强度更高。含有20%SSA、10%石灰石和2%石膏的三元复合材料在28天时的抗压强度为49.54MPa,强度活性指数(SAI)为94.56%。这种三元复合材料优异的力学性能表明其在低碳胶凝材料开发方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6391/12188425/c2d1e1445098/d5ra02341f-f1.jpg

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