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Functional microbial enrichment and chelation-enhanced phosphorus release from marine sediments: Toward sustainable phosphorus management
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Industrial Biotechnology.ORCID iD: 0000-0001-7110-1165
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Chemical Engineering, Resource recovery.ORCID iD: 0000-0001-7614-8448
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Industrial Biotechnology, Industrial Biotechnology.ORCID iD: 0000-0002-8170-379X
2026 (English)In: Water Research, ISSN 0043-1354, E-ISSN 1879-2448, Vol. 289, article id 124842Article in journal (Refereed) Published
Abstract [en]

To improve the efficiency of phosphorus (P) release from marine sediments and contribute to P loop closure, this study proposed a novel strategy combining bio-inoculation with polyphosphate-accumulating organisms (PAOs) and chemical enhancement via chelating agents. Based on prior findings, two-stage experiments were conducted. In Stage 1, anaerobic batch tests assessed the effect of different chelating agents for P release. While citrate showed no promoting effect, the addition of ethylenediaminetetraacetic acid (EDTA) significantly enhanced total P release, reaching 48.5 % within 15 days. In Stage 2, PAO-acclimated sediments were introduced into the system, followed by alternating anaerobic-aerobic fed-batch operation for 7 days, and subsequent EDTA addition with anaerobic incubation for another 6 days. This combined approach achieved a total P release efficiency 83.4 %, with final soluble P concentrations reaching 145.9 mg/L. During this process, PAOs were rapidly enriched, with their relative abundance increasing from 12.9 % to 65.0 %. Metagenomic analysis revealed that EDTA promoted environmental filtering, selectively enriching PAOs (Candidatus Accumulibacter) and thereby reinforcing their specific contributions to P functional genes. The resulting P-rich supernatant was then subjected to precipitation. PHREEQC simulations guided the prediction of optimal precipitation conditions, and laboratory experiments confirmed that most soluble P, especially Fe-bound forms, could be efficiently recovered, with maximum precipitation efficiencies of 98.8 %.

Place, publisher, year, edition, pages
Elsevier BV , 2026. Vol. 289, article id 124842
Keywords [en]
Full metagenomics, Marine sediments, PAO inoculation, Phosphorus recovery, PHREEQC precipitation, Two stages operation
National Category
Bioprocess Technology
Identifiers
URN: urn:nbn:se:kth:diva-372564DOI: 10.1016/j.watres.2025.124842ISI: 001608045300002PubMedID: 41145028Scopus ID: 2-s2.0-105019642924OAI: oai:DiVA.org:kth-372564DiVA, id: diva2:2012878
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QC 20251111

Available from: 2025-11-11 Created: 2025-11-11 Last updated: 2026-05-29Bibliographically approved

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Zhu, FengyiMarques Penha, FredericoCetecioglu, Zeynep

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