Wastewater treatment and influent characteristics shape phosphorus fractions and metal composition in sewage sludge fertilizers: a full-scale multi-facility monitoring study

ABSTRACT Recovering phosphorus (P) from sewage sludge is increasingly important, but treatment configuration and influent characteristics shape the quality of the recovered product, including its P solubility and metal loading. We examined how treatment processes and sewer type govern the composition and temporal variability of sludge-derived fertilizers at three full-scale facilities differing in biological treatment, anaerobic digestion, and coagulant dosing. Fertilizers were sampled approximately weekly for seven months and analyzed for total, inorganic, citrate-soluble, and water-soluble P and 21 metals. Redundancy analysis related elemental composition to organic matter content, precipitation, and seasonality, while regression analysis related P solubility to metal-to-P ratios and metal-balance indices. Total P differed among facilities but varied little within facilities. By contrast, metals varied substantially, particularly at the combined-sewer facility, possibly reflecting stormwater-driven urban runoff. Anaerobic digestion was associated with metal enrichment. Single metal-to-P ratios mainly reflected inter-facility differences, whereas the combined use of log[(Fe + Al)/(Ca + Mg)] and log(Ca/Mg) retained explanatory power for citrate- and water-soluble P after inter-facility differences were removed, showing that relative metal balance better captures P solubility than single-metal abundance. Together with repeated monitoring, these dual metal-balance indices offer a practical framework for assessing sludge-derived fertilizer quality.

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Publication Details

Journal
Water Science & Technology
Published
2026-09-24
DOI
https://doi.org/10.2166/wst.2026.350
Primary Topic
Phosphorus and nutrient management
Type
article
Field-Weighted Citation Impact
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article

Wastewater treatment and influent characteristics shape phosphorus fractions and metal composition in sewage sludge fertilizers: a full-scale multi-facility monitoring study

Hiroaki Ito, Takehide Hama, Mayuki Ishii
Water Science & Technology
Phosphorus and nutrient management
article

Wastewater treatment and influent characteristics shape phosphorus fractions and metal composition in sewage sludge fertilizers: a full-scale multi-facility monitoring study

Hiroaki Ito, Takehide Hama, Mayuki Ishii
article en

Abstract

ABSTRACT Recovering phosphorus (P) from sewage sludge is increasingly important, but treatment configuration and influent characteristics shape the quality of the recovered product, including its P solubility and metal loading. We examined how treatment processes and sewer type govern the composition and temporal variability of sludge-derived fertilizers at three full-scale facilities differing in biological treatment, anaerobic digestion, and coagulant dosing. Fertilizers were sampled approximately weekly for seven months and analyzed for total, inorganic, citrate-soluble, and water-soluble P and 21 metals. Redundancy analysis related elemental composition to organic matter content, precipitation, and seasonality, while regression analysis related P solubility to metal-to-P ratios and metal-balance indices. Total P differed among facilities but varied little within facilities. By contrast, metals varied substantially, particularly at the combined-sewer facility, possibly reflecting stormwater-driven urban runoff. Anaerobic digestion was associated with metal enrichment. Single metal-to-P ratios mainly reflected inter-facility differences, whereas the combined use of log[(Fe + Al)/(Ca + Mg)] and log(Ca/Mg) retained explanatory power for citrate- and water-soluble P after inter-facility differences were removed, showing that relative metal balance better captures P solubility than single-metal abundance. Together with repeated monitoring, these dual metal-balance indices offer a practical framework for assessing sludge-derived fertilizer quality.

Water Science & Technology
Kyoto University (JP), Kumamoto University (JP)
Clean water and sanitation
Openalex Percentile: Top 11%
Phosphorus and nutrient management
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