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Distribution of PAHs and trace metals in urban stormwater sediments: combination of density fractionation,mineralogy and microanalysis
Authors:Amelène El-Mufleh  Béatrice Béchet  Isabelle Basile-Doelsch  Claude Geffroy-Rodier  Anne Gaudin  Véronique Ruban
Institution:1. Water and Environment Laboratory, Department of Geotechnics, Environment, Risks and Soil Sciences, French Institute of Science and Technology for Transport, Development and Networks (IFSTTAR), Centre de Nantes, Route de Bouaye CS4, 44344, Bouguenais, France
3. Institut de Chimie des Milieux et Matériaux de Poitiers (IC2MP), UMR 7285, Université de Poitiers, Avenue du Recteur Pineau, 86022, Poitiers, France
2. CEREGE, Aix-Marseille Universités/CNRS/IRD, BP 80, 13545, Aix en Provence Cedex 04, France
4. Laboratoire de Planétologie et de Géodynamique, UMR 6112, Université de Nantes, CNRS, Nantes Atlantique Universités, Nantes, France
Abstract:Sediment management from stormwater infiltration basins represents a real environmental and economic issue for stakeholders due to the pollution load and important tonnages of these by-products. To reduce the sediment volumes to treat, organic and metal micropollutant-bearing phases should be identified. A combination of density fractionation procedure and microanalysis techniques was used to evaluate the distribution of polycyclic aromatic hydrocarbons (PAHs) and trace metals (Cd, Cr, Cu, Ni, Pb, and Zn) within variable density fractions for three urban stormwater basin sediments. The results confirm that PAHs are found in the lightest fractions (d?d??3) whereas trace metals are equally distributed within the light, intermediary, and highest fractions (d?d?d?d?>?2.8 g cm?3) and are mostly in the 2.3?d??3 fraction. The characterization of the five fractions by global analyses and microanalysis techniques (XRD and MEB-EDX) allowed us to identify pollutant-bearing phases. PAHs are bound to the organic matter (OM) and trace metals to OM, clays, carbonates and dense particles. Moreover, the microanalysis study underlines that OM is the main constituent responsible for the aggregation, particularly for microaggregation. In terms of sediment management, it was shown that density fractionation is not suitable for trace metals but could be adapted to separate PAH-enriched phases.
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