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◆ RSC advances2026-09-21

Bacterially induced synthesis of low-Cd struvite coupled with Cd2+ biosorption under high cadmium stress.

Lei Meng, Bin Lian

原始摘要(英文原文)· Original abstract
Chemical precipitation of struvite is promising for phosphorus recovery from wastewater. However, metal cations with high phosphate affinity, such as Cd2+, can reduce struvite phase purity and promote heavy-metal incorporation, limiting practical safety. In this study, seawater was used as the magnesium source and Shewanella oneidensis MR-1 as the mineralizing strain to establish a struvite biomineralization system under Cd2+ stress, aiming to remove aqueous Cd2+ using MR-1 while producing struvite with low Cd content. An artificial Cd2+ stress gradient of 1-30 mg L-1 was applied, with 30 mg L-1 representing an extreme high-Cd condition. The results showed that MR-1 induced the formation of struvite-dominated precipitates across the tested Cd2+ concentration range, with calculated struvite contents of 96.03-97.36%. MR-1 also removed 85.16-100% of Cd2+ from the aqueous phase through biosorption. At the same initial Cd2+ concentrations, bio-struvite contained 7.13-354.35 mg kg-1 Cd, significantly lower than the 923.74-18339.83 mg kg-1 measured in chemically precipitated struvite. Total phosphorus removal efficiencies were 88.27-91.46% and 58.12-60.23% in the biomineralization and chemical precipitation systems, respectively. TEM-EDS and FTIR analyses indicated that carboxyl, hydroxyl, amino, amide, and phosphorus-containing functional groups on the MR-1 surface were involved in Cd2+ immobilization. The good fit to the pseudo-second-order model further supported an important role of chemisorption in Cd2+ immobilization. This study provides a new strategy for the resource-oriented treatment of Cd-contaminated eutrophic wastewater.
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Bacterially induced synthesis of low-Cd struvite coupled with Cd2+ biosorption under high cadmium stress. — 科研速览 Science Skim