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Combining chemical sequential extractions with 3D fluorescence spectroscopy to characterize sludge organic matter
Authors:Mathieu Muller  Julie Jimenez  Maxime Antonini  Yves Dudal  Eric Latrille  Fabien Vedrenne  Jean-Philippe Steyer  Dominique Patureau
Affiliation:1. INRA, UMR 1222, Ecologie microbienne et biogéochimie du sol, 2 Place Pierre Viala, Bâtiment 12, Montpellier cedex 2 F-34060, France;2. Veolia Environnement R&D, Centre de Recherche sur l’Eau, Maisons-Laffitte F-78603, France;3. INRA, UR050, Laboratoire de Biotechnologie de l’Environnement, Avenue des Etangs, Narbonne F-11100, France
Abstract:The design and management of anaerobic digestion of sewage sludge (SS) require a relevant characterisation of the sludge organic matter (OM). Methods currently used are time-consuming and often insufficiently informative. A new method combining chemical sequential extractions (CSE) with 3D fluorescence spectroscopy was developed to provide a relevant SS characterisation to assess both OM bioaccessibility and complexity which govern SS biodegradability. CSE fractionates the sludge OM into 5 compartments of decreasing accessibility. First applied on three SS samples with different OM stability, fractionation profiles obtained were in accordance with the latter. 3D fluorescence spectroscopy revealed that the bioaccessible compartments were mainly constituted of simple and easily biodegradable OM while the unaccessible ones were largely made of complex and refractory OM. Then, primary, secondary and anaerobically digested sludge with different biodegradabilities were tested. Complexity revealed by 3D fluorescence spectroscopy was linked with biodegradability and chemical accessibility was correlated with sludge bioaccessibility.
Keywords:Sewage sludge  Anaerobic digestion  Bioaccessibility  Biodegradability  Organic matter fractionation  Excitation–emission-matrix fluorescence spectroscopy
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