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◆ Journal of environmental management2026-09-21

Water hardness-mediated EBPR-BIPP synergistic phosphorus removal and microbial community response.

Yujie Zhang, Jiawang Zhou, Wenhao Sun, Kai Li, Ping Zhang, Xianwang Du, Han Wang, Zhi Yang

原始摘要(英文原文)· Original abstract
Water hardness, often overlooked in enhanced biological phosphorus removal (EBPR), plays a decisive role in biologically induced phosphate precipitation (BIPP). While hardness effects on chemical phosphorus removal are documented, hardness-mediated BIPP impacts on EBPR performance remain poorly understood. This study operated four sequencing batch reactors at 0, 150, 300, and 600 mg L-1 hardness (as CaCO3). Results demonstrated that hardness simultaneously promoted biological uptake and chemical precipitation, maintaining stable high performance (88% TP removal, SVI 89 mL g-1) even at 600 mg L-1, whereas the control failed due to sludge disintegration. Sequential extraction and speciation analysis (31P MAS-NMR, XRD, XPS) revealed phosphorus transformation from soluble to stable calcium- and magnesium-bound forms, predominantly hydroxyapatite (HAP) and struvite (MAP), with the MAP proportion increasing at higher hardness. Under high hardness, PPK and PPX activities increased by 109.1% and 80.7%, respectively, and the relative abundance ratio of PAO/DPAO-associated taxa to GAO/DGAO-associated taxa increased from 0.24 to 2.5. A 190-day operation confirmed the synergistic interactions between BIPP and EBPR. Microbial analysis revealed that the relative abundance of GAO/DGAO-associated taxa decreased from 5.0% to 2.0%, while the phoR gene showed its highest relative abundance (0.45%) under high-hardness conditions, suggesting a potential association between extracellular chemical fixation and intracellular storage. This study elucidates the hardness-driven synergistic mechanisms, providing a theoretical basis for EBPR optimization in high-hardness regions.
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Water hardness-mediated EBPR-BIPP synergistic phosphorus removal and microbial community response. — 科研速览 Science Skim