Water Science and Technology (Aug 2023)

Sewage phosphorus recovery through sachets loaded with water treatment plant sludge

  • Miriam Gabrielle Coelho,
  • Débora de Melo Franco,
  • Juliano Curi de Siqueira,
  • Ivan Célio Andrade Ribeiro,
  • Rodolfo Appoloni Crippa,
  • Ronaldo Fia,
  • Mateus Pimentel de Matos

DOI
https://doi.org/10.2166/wst.2023.247
Journal volume & issue
Vol. 88, no. 4
pp. 922 – 931

Abstract

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Conventional wastewater treatment plants (WWTPs) present low phosphorus (P) removal capacity. Conversely, water treatment plants (WTPs) produce sludge with great P sorption from wastewater; however, directly adding the sludge into the wastewater treatment system could increase the effluent turbidity. As a novel approach, the present study evaluated the performance of WTP sludge within paper sachets for P removal from treated sewage. Different sludge concentrations (2–30 g L−1) and contact times (1–27 d) were applied to treat sewage from a university WWTP outlet. The sludge was characterized by P, Fe, and Al content. Larger sludge masses showed higher P removal efficiencies due to their high Fe content, especially at longer contact times (up to 100% at the final of the experiment). However, there is a more significant P reduction in the first 10 d (more than 90% in the most efficient treatment – 30 mg L−1). Based on the kinetic and isotherm analyses and the sludge chemical composition, precipitation proved to be a mechanism of great importance in P removal. Therefore, WTP sludge sachets can be a promising way to remove P from sewage, and the formed solid waste might be reused as an alternative fertilizer. HIGHLIGHTS Water treatment plant (WTP) sludge has a potential for phosphorus (P) sorption.; WTP sludge into sachets can be a promising way to recover P from sewage.; Sachets can provide lower concentrations of suspended solids and P removal.; The use may become promising in wastewater treatment tanks.; The contact time, sludge mass, and chemical composition influence P removal.;

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