Resource efficiency and sustainability of carbonated steel slag -cement with sodium salicylate

Bin Zeng, Xumin Zhuang, Wenjin Han, Shaojie Jia, Zhi Zhang, Liwu Mo, Toshiharu Kishi

科研成果: 期刊稿件文章同行评审

摘要

Carbonated steel slag (SS) powder offers potential for enhancing reactivity and sequestering CO2, yet its hydration reactivity remains suboptimal. This study introduces sodium salicylate as a novel additive to systematically investigate its synergistic effects with carbonated SS-cement on hydration behavior, mechanical properties, and microstructure, aiming to uncover the scientific basis and application potential of this innovative mechanism. The results showed that sodium salicylate significantly improved the process of hydration in carbonated SS-cement, improved mineral dissolution and supported the development of key hydration products (Mc and C-S-H). Additionally, sodium salicylate refined the structure of pores in carbonated SS-cement, reducing porosity and increasing microstructural density. At 28 days, replacing 30 % cement with highly carbonated SS and adding 0.2 wt% sodium salicylate resulted in a compressive strength of 46.9 MPa, a 29.6 % increase over samples without sodium salicylate and comparable to pure OPC. This study indicated that sodium salicylate was a cost-effective and efficient additive that significantly improved the performance of carbonated SS-cements, offering new insights into the application of carbonated SS as a supplementary cementitious material.

源语言英语
文章编号140107
期刊Construction and Building Materials
464
DOI
出版状态已出版 - 21 2月 2025

指纹

探究 'Resource efficiency and sustainability of carbonated steel slag -cement with sodium salicylate' 的科研主题。它们共同构成独一无二的指纹。

引用此