Phosphorus retention by granulated apatite: assessing maximum retention capacity, kinetics and retention processes

Author:

Delgado-González Laura12,Lartiges Bruno3,Gautier Mathieu4,Troesch Stéphane2,Molle Pascal1

Affiliation:

1. Inrae, REVERSAAL Research Unit, 5 rue de la Doua, Villeurbanne 69100, France

2. SYNTEA, Lieu-dit Belle-Croix, Le Pian sur Garonne 33490, France

3. Géosciences Environnement Toulouse, University of Toulouse III (Paul Sabatier), 14 av. Edouard Belin, Toulouse F-31400, France

4. Univ Lyon, INSA Lyon, DEEP Laboratory, Villeurbanne 69100, France

Abstract

Abstract Natural apatites have previously shown a great capacity for phosphate retention from wastewater. However, its fine particle size distribution may lead to a premature clogging of the filter. Accordingly, a granulated apatite product was developed and manufactured in order to control the particle size distribution of the media. Experiments were conducted on laboratory columns to assess their phosphorus retention capacity, to identify the processes involved in phosphorus retention and to evaluate their kinetic rates. The results showed phosphorus retention capacities of 10.5 and 12.4 g PO4-P·kg−1 and kinetic rate coefficients in the range of 0.63 and 0.23 h−1 involving lower values than those found for natural apatites in previous studies. Scanning Electron Microscopy images showed that apatite particles in the granules were embedded in the binder and were not readily accessible to act as seeds for calcium phosphate precipitation. The retention processes differ depending on the supersaturation of the solution with respect to calcium phosphate phases: at low calcium concentrations (69.8 ± 3.9 mg·L−1), hydroxyapatite precipitates fill up the porosity of the binder up to a depth of 100–300 μm from the granule surface; at higher calcium concentrations (112.7 ± 7.4 mg·L−1) precipitation occurs at the granule surface, forming successive layers of hydroxyapatite and carbonated calcium phosphates.

Funder

Agence de l'eau Adour-Garonne

Agence de l'eau Rhône-Méditerranée-Corse

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference23 articles.

1. The seeded growth of calcium phosphates. The effect of solid/solution ratio in controlling the nature of the growth phase;Journal of Colloid and Interface Science,1977

2. Phosphorus removal from wastewater by mineral apatite;Water Research,2006

3. Basic oxygen furnace steel slag aggregates for phosphorus treatment. Evaluation of its potential use as a substrate in constructed wetlands;Water Research,2016

4. Blandin A. F. 2013 Matériau granulaire à base de phosphate, son procédé de fabrication et son utilisation dans un dispositif de déphosphatation des eaux usées (Phosphate Based Granular Material, Process for Manufacturing Same and use Thereof in A Device for Removing Phosphates From Wastewater). O. M. d. l. P. Intellectuelle, Compagnie financière et de participations Roullier.

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