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Dual-phase chitosan incorporation in alginate/Fe(III) hydrogel beads: Multi-scale spectroscopic evidence for gradient-confined phosphate precipitation and implications for adsorbent design.
Environmental research · · Journal Article
Cao, Huo + more
Abstract ↗AI summary
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Dual-phase chitosan incorporation in alginate/Fe(III) hydrogel beads enables gradient-confined phosphate precipitation, achieving a capacity of 109 mg P g−1 and effective phosphate removal.
- Why it matters: Controlling phosphate levels is critical to prevent eutrophication in aquatic environments, yet understanding how hydrogel microstructure influences ion immobilization remains limited, hindering the design of effective adsorbents.
- What they did: The study employed a dual-phase chitosan strategy combined with multi-scale spectroscopic techniques, including SEM-EDS, XPS, XRD, TEM/SAED, and synchrotron XANES/EXAFS, to investigate phosphate sequestration mechanisms in hydrogel beads.
- The result: Findings reveal a gradient-confined precipitation pathway with nanocluster formation from surface to core, and demonstrate that the design maintains high capacity, recyclability, and low phosphate levels in wastewater, guiding future adsorbent development.
The findingWhy it mattersWhat they didThe result