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February 5, 2026Environmental Science & Technology0 citations

Recovered Calcium-Based Phosphorus Products from Synthetic Swine Wastewater: Fate and Behavior in Soils

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KGKasuni H. H. GamageGHGanga M. HettiarachchiEHEvan Heronemus

Key Points

  • The aim was to assess the dissolution, transformations, and bioavailability of recovered phosphorus from synthetic swine wastewater compared to conventional fertilizers.
  • Used anaerobic membrane bioreactor technology to recover phosphorus.
  • Conducted short-term laboratory incubation studies with soil samples.
  • Assessed soil samples for pH, total phosphorus, and resin-extractable phosphorus.
  • Analyzed phosphorus speciation using X-ray absorption near-edge structure spectroscopy.
  • Over 90%, 70%, and 80% of added phosphorus remained in calcareous, neutral, and acid soils, respectively.
  • The potential plant-available phosphorus was higher in all soils treated with recovered nutrients than in the control.
  • In acid soil, the availability of phosphorus from the recovered nutrient was similar to that of monoammonium phosphate after 5 weeks.
  • Hydroxyapatite-like species were predominant, resulting in lower phosphorus solubility.

Abstract

The increasing demand for phosphorus (P) sources and concerns about surface water quality raise the need to explore safe and efficient secondary P fertilizer sources. This study evaluated the effectiveness of a Ca-based recovered nutrient product (RNP) from synthetic swine wastewater using an innovative anaerobic membrane bioreactor (AnMBR) technology. This study aimed to characterize and compare the dissolution, transformations, and potential bioavailability of P in RNP with conventional P fertilizers (monoammonium phosphate; MAP, triple superphosphate; TSP) in selected soils over time by using short-term laboratory incubation studies in Petri dishes. Soil samples sectioned from the point of application were assessed for pH, total P, resin-extractable P, and selected samples by using X-ray absorption near-edge structure spectroscopy. The RNP treatment showed that over 90%, 70%, and 80% of added P remained in the center section in calcareous, neutral, and acid soils, respectively, where the potential plant-available P was greater than the control in all soils and similar to the MAP treatment only in acid soil after 5 weeks of incubation. The hydroxyapatite-like species dominated P speciation in both RNP and RNP-added soils, leading to less solubility. These results underscore the potential of Ca-based RNP as a P source for tested soils, and process modifications could yield a series of viable secondary P sources for agriculture.

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Cite This Study

Gamage et al. (2026) studied this question.

synapsesocial.com/papers/698433c8f1d9ada3c1fb138dhttps://doi.org/10.1021/acs.est.5c05565
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