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Comparing performances, costs and energy balance of ex situ remediation processes for PAH-contaminated marine sediments.

Authors :
Bianco, Francesco
Monteverde, Gelsomino
Race, Marco
Papirio, Stefano
Esposito, Giovanni
Source :
Environmental Science & Pollution Research; Jun2020, Vol. 27 Issue 16, p19363-19374, 12p
Publication Year :
2020

Abstract

This study proposes a comparison of different ex situ technologies aimed at the removal of polycyclic aromatic hydrocarbons from marine sediments in terms of performances, costs and energy balance. In accordance with the principles of water-energy nexus, anaerobic bioremediation, soil washing and thermal desorption were investigated under low liquid phase and temperature conditions using phenanthrene (PHE) as model compound. After 42 days of anaerobic bioremediation, the highest PHE biodegradation of 68 and 64% was observed under denitrifying and methanogenic conditions, respectively, accompanied by N<subscript>2</subscript> and CH<subscript>4</subscript> production and volatile fatty acid accumulation. During soil washing, more than 97% of PHE was removed after 60 min using a solid-to-liquid ratio of 1:3. Along the same treatment time, low-temperature thermal desorption (LTTD) allowed a PHE removal of 88% at 200 °C. The economic analysis indicated that LTTD resulted in a higher cost (i.e. 1782 € m<superscript>−3</superscript>) than bioremediation and soil washing (228 and 371 € m<superscript>−3</superscript>, respectively). The energy balance also suggested that bioremediation and soil washing are more sustainable technologies as a lower required energy (i.e. 16 and 14 kWh m<superscript>−3</superscript>, respectively) than LTTD (i.e. 417 kWh m<superscript>−3</superscript>) is needed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09441344
Volume :
27
Issue :
16
Database :
Complementary Index
Journal :
Environmental Science & Pollution Research
Publication Type :
Academic Journal
Accession number :
143386431
Full Text :
https://doi.org/10.1007/s11356-020-08379-y