Bangjin Chen, Fenghui Wu, Guangfei Qu, Caiyue Jin, Jieqian Yang, Ye Liu, Hailin Li, Yuansen Cao, Xiaohan Guo
Phosphorus tailings (PTs) accumulate in large quantities and demand safe, scalable management. Targeting the water-soluble hazardous constituents in PTs (phosphate, fluoride, and heavy metals), we applied targeted solidification/stabilization (S/S). PTs-based soils were implemented using FeSO4 and polyaluminum salts (PAC/PAS) combined with humic acid and organic wastes. An integrated assessment covered physicochemical properties, nutrient release, plant performance, microbial communities, and ecological functions. A 4% targeted stabilizer achieved immobilization efficiencies of 95.1% for fluoride and 88.24% for phosphate. With PTs >85.25% and 40-day ambient incubation, co-amended substrates outperformed PTs controls in structural attributes, pH buffering, EC management, and controlled nutrient release. Notably, in PPS and PHS treatments, combining humic acid with organic manures elevated pak-choi germination to 93%, increased microbial diversity, and enriched plant growth-promoting functions, demonstrating strong synergy with the targeted S/S regime and improving the ecological adaptability and sustainability of PTs-based soils. Collectively, these results establish both a theoretical basis and a practical pathway for the ecological valorization of PTs.