: Anaerobic bioremediation is a relevant process in the management of sites contaminated by petroleum hydrocarbons. Recently, interspecies electron transfer processes mediated by conductive minerals or particles have been proposed as mechanisms through which microbial species within a community share reducing equivalents to drive the syntrophic degradation of organic substrates, including hydrocarbons. Here, a microcosm study was set up to investigate the effect of different electrically conductive materials (ECMs) in enhancing the anaerobic biodegradation of hydrocarbons in historically contaminated soil. The results of a comprehensive suite of chemical and microbiological analyses evidenced that supplementing the soil with (5% w/w) magnetite nanoparticles or biochar particles is an effective strategy to accelerate the removal of selected hydrocarbons. In particular, in microcosms supplemented with ECMs, the removal of total petroleum hydrocarbons was enhanced by up to 50% relative to unamended controls. However, chemical analyses suggested that only a partial bioconversion of contaminants occurred and that longer treatment times would have probably been required to drive the biodegradation process to completion. On the other hand, biomolecular analyses confirmed the presence of several microorganisms and functional genes likely involved in hydrocarbon degradation. Furthermore, the selective enrichment of known electroactive bacteria (i.e., Geobacter and Geothrix) in microcosms amended with ECMs, clearly pointed to a possible role of DIET (Diet Interspecies Electron Transfer) processes in the observed removal of contaminants.

Enhancing the anaerobic biodegradation of petroleum hydrocarbons in soils with electrically conductive materials / CRUZ VIGGI, Carolina; Tucci, Matteo; Resitano, Marco; Palushi, Valentina; Crognale, Simona; Matturro, Bruna; PETRANGELI PAPINI, Marco; Rossetti, Simona; Aulenta, Federico. - In: BIOENGINEERING. - ISSN 2306-5354. - 10:4(2023). [10.3390/bioengineering10040441]

Enhancing the anaerobic biodegradation of petroleum hydrocarbons in soils with electrically conductive materials

Carolina Cruz Viggi
;
Marco Resitano;Valentina Palushi;Marco Petrangeli Papini;Simona Rossetti;Federico Aulenta
2023

Abstract

: Anaerobic bioremediation is a relevant process in the management of sites contaminated by petroleum hydrocarbons. Recently, interspecies electron transfer processes mediated by conductive minerals or particles have been proposed as mechanisms through which microbial species within a community share reducing equivalents to drive the syntrophic degradation of organic substrates, including hydrocarbons. Here, a microcosm study was set up to investigate the effect of different electrically conductive materials (ECMs) in enhancing the anaerobic biodegradation of hydrocarbons in historically contaminated soil. The results of a comprehensive suite of chemical and microbiological analyses evidenced that supplementing the soil with (5% w/w) magnetite nanoparticles or biochar particles is an effective strategy to accelerate the removal of selected hydrocarbons. In particular, in microcosms supplemented with ECMs, the removal of total petroleum hydrocarbons was enhanced by up to 50% relative to unamended controls. However, chemical analyses suggested that only a partial bioconversion of contaminants occurred and that longer treatment times would have probably been required to drive the biodegradation process to completion. On the other hand, biomolecular analyses confirmed the presence of several microorganisms and functional genes likely involved in hydrocarbon degradation. Furthermore, the selective enrichment of known electroactive bacteria (i.e., Geobacter and Geothrix) in microcosms amended with ECMs, clearly pointed to a possible role of DIET (Diet Interspecies Electron Transfer) processes in the observed removal of contaminants.
2023
biochar; bioremediation; contaminated soil; electrically conductive materials; magnetite; petroleum hydrocarbons
01 Pubblicazione su rivista::01a Articolo in rivista
Enhancing the anaerobic biodegradation of petroleum hydrocarbons in soils with electrically conductive materials / CRUZ VIGGI, Carolina; Tucci, Matteo; Resitano, Marco; Palushi, Valentina; Crognale, Simona; Matturro, Bruna; PETRANGELI PAPINI, Marco; Rossetti, Simona; Aulenta, Federico. - In: BIOENGINEERING. - ISSN 2306-5354. - 10:4(2023). [10.3390/bioengineering10040441]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1678978
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