**作者**:Pengcong Du, Renyu Geng, Jinming Jiang*, Huiliang Zhang, Jianwei Sun, Bin Du, Yanbo Zhang, Ruiyan Yu, Xuguang Wang, Weijun Gao

**期刊**:Developments in the Built Environment · 2026

**DOI**:[10.1016/j.dibe.2026.100882](https://doi.org/10.1016/j.dibe.2026.100882)

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## 摘要

The ultra-fine fraction of gold tailings is difficult to utilize due to their tiny size, large surface area, and high clay content. This study proposes a novel and energy-efficient approach by directly utilizing the ultra-fine fraction of gold tailings (UGT, 300–12,000 mesh) as a siliceous raw material to replace quartz sand in autoclaved aerated concrete (AAC), thereby eliminating the energy-intensive ball milling process. The effects of key mix design parameters, including the lime-to-cement ratio, calcium-to-silicon molar ratio, water-to-solid ratio, and aluminum paste dosage, on slurry rheology, mechanical properties, and microstructure were systematically investigated. Under the optimal mix proportion, the prepared UGT-AAC achieved a compressive strength of 4.33 MPa and a dry density of 587 kg/m 3 , meeting the A3.5 and B06 requirements. Microstructural analyses indicate that strength development is governed by a dense pore-wall skeleton formed by tobermorite and calcium silicate hydrate gels, demonstrating the feasibility of high-value utilization of UGT.