Storage facilities reclamation using dredged sediments from waterways: Growing media formulation for plants according to the EU Ecolabel requirements

Author:

Zouch Afef1ORCID,Mamindy-Pajany Yannick23,Abriak Nor-Edine23,Ksibi Mohamed1

Affiliation:

1. Laboratoire de Génie de l’Environnement et Ecotechnologie, GEET-ENIS, Université de Sfax, Sfax, Tunisia

2. Centre for Materials and Processes, IMT Lille Douai, Institut Mines-Télécom, Lille, France

3. Laboratoire de Génie Civil et géo-Environnement, University of Lille, Institut Mines-Télécom, University of Artois, Junia, Lille, France

Abstract

Dredged sediments display a great potential for growing media applications; however, there are few studies about their beneficial reuse for the waste storage reclamation. This research study aims at checking the agronomic values and environmental impacts of three growing media based on waterways sediments (WSs) and green waste (GW) according ecolabel requirements. For this purpose, three growing media named GW0, GW25, and GW50 were prepared at field pilot scale by co-composting WS and GWs during 12 months. Samples were submitted to ecolabel analyses package. Following to the ecolabel requirements, the growing media comply with criteria like pH, electrical conductivity, trace elements and polycyclic aromatic hydrocarbon contents, chlorides, and pathogens, whereas they are not in compliance with the EU Ecolabel guidelines for propagules, organic matter, and zinc contents. Results of laboratory leaching tests performed according to NF EN 12457-2 for GW0, GW25, and GW50 have shown that sulfates, soluble fraction exceed limit for inert waste storage. Lysimeter tests at pilot scale were performed during 6 months to check the leaching potential of pollutants from growing media under real field conditions, including a European ecolabel product. Results demonstrate that Ba, Mo, Sb, Zn, Se, and Sb are higher in GW0, GW25, and GW50 than in the European ecolabel. As, Cd, Cr, Ni, and F are more soluble in the commercial product compared to other growing media. This study allowed to demonstrate that main characteristics are fulfilling for reusing these growing media in the specific field of waste storage reclamation.

Publisher

SAGE Publications

Subject

Pollution,Environmental Engineering

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