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Updated: Aug 13, 2026

Measuring Phosphorus Release in Laboratory Microcosms for Water Quality Assessment
Published on: July 22, 2019
Eggshell-derived calcium redistributes legacy phosphorus toward less labile operational pools while sustaining pak
Shasha Fan1, Xiaoying Guo2, Xudong Wang3
1School of Environmental and Geographical Sciences, Shanghai Normal University, Shanghai, 200234, China.
Abstract:
Phosphorus-enriched greenhouse vegetable soils can sustain crop nutrition while remaining vulnerable to phosphorus (P) mobilization because much of their legacy P persists in soluble or weakly buffered pools. We tested whether eggshell-derived calcium (Ca) could reduce indicators of legacy P mobility without compromising crop performance. A cross-scale framework integrating incubation, P fractionation, sorption-desorption, pot, and field experiments was used to compare washed eggshell (WES), unwashed eggshell (ES), and reagent-grade calcium carbonate (CC). Ca amendments increased soil pH by 0.9-2.3 units and reduced available P (AP) by 10-35% during incubation. After six weeks, H2O-P and NaHCO3-Pi declined, whereas HCl-extractable P fractions increased, indicating an operational redistribution of legacy P toward less labile pools. P retention was also strengthened, with markedly higher Langmuir sorption capacity and lower desorption at high solution P concentrations. In both pot and field experiments, lower bulk-soil AP did not reduce pak choi growth or P uptake. Under field conditions, WES applied at 4.8 t/ha decreased AP and water-soluble P but increased pak choi P uptake and fresh yield by 27.9% and 11.2%, respectively. These results indicate that eggshell-derived Ca can reduce indirect indicators of potential P mobility while maintaining agronomically effective P supply. Because Ca-P mineral phases and runoff or leaching P losses were not directly measured, the environmental implication should be interpreted as reduced potential P mobility rather than confirmed reductions in off-site P export.
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