Petroleum and petroleum product exploration, transportation, processing, and burning negatively impact soil ecosystems and cause severe damage. Hence, a study was conducted to evaluate the performance of microbial electrochemical treatment (MET) in terms of biodegradation and electricity generation with petroleum hydrocarbon-polluted soil by adding rice straw biochar pyrolyzed at 600 °C for different doses of 4%, 8%, and 12% w/w. This study confirmed for the first time that increasing the dose of biochar from 8% to 12% w/w in the anodic chamber of MET led to a decrease in its degradation of petroleum hydrocarbons from 87.8% to 49.2% and its current density from 3.5 A/m2 to 0.5 A/m2 in 20 days. Moreover, the relative abundance of Desulfuromonas and Geobacter, which have been reported to participate in inter-species electron transfer as electroactive bacteria, also decreased from 52.32% to 1.5% and 3.47–1.4%, respectively. This apparent change in primary genera further suggested that biochar content was the core factor reshaping the distribution of the bacterial community. The electrochemical investigation also shows that the redox-active quinone in biochar is responsible for extracellular electron transfer. The results of this study showed that the effectiveness of biochar for the degradation of petroleum hydrocarbons using microbial electrochemical treatment depends on the dose of biochar in the soil.

Ambaye, T., Formicola, F., Sbaffoni, S., Milanese, C., Franzetti, A., Vaccari, M. (2023). Effect of biochar on petroleum hydrocarbon degradation and energy production in microbial electrochemical treatment. JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 11(5 (October 2023)) [10.1016/j.jece.2023.110817].

Effect of biochar on petroleum hydrocarbon degradation and energy production in microbial electrochemical treatment

Formicola F.;Franzetti A.;
2023

Abstract

Petroleum and petroleum product exploration, transportation, processing, and burning negatively impact soil ecosystems and cause severe damage. Hence, a study was conducted to evaluate the performance of microbial electrochemical treatment (MET) in terms of biodegradation and electricity generation with petroleum hydrocarbon-polluted soil by adding rice straw biochar pyrolyzed at 600 °C for different doses of 4%, 8%, and 12% w/w. This study confirmed for the first time that increasing the dose of biochar from 8% to 12% w/w in the anodic chamber of MET led to a decrease in its degradation of petroleum hydrocarbons from 87.8% to 49.2% and its current density from 3.5 A/m2 to 0.5 A/m2 in 20 days. Moreover, the relative abundance of Desulfuromonas and Geobacter, which have been reported to participate in inter-species electron transfer as electroactive bacteria, also decreased from 52.32% to 1.5% and 3.47–1.4%, respectively. This apparent change in primary genera further suggested that biochar content was the core factor reshaping the distribution of the bacterial community. The electrochemical investigation also shows that the redox-active quinone in biochar is responsible for extracellular electron transfer. The results of this study showed that the effectiveness of biochar for the degradation of petroleum hydrocarbons using microbial electrochemical treatment depends on the dose of biochar in the soil.
Articolo in rivista - Articolo scientifico
Biochar; Bioelectrochemical system; Electricity generation; Extracellular electron transfer; Microbial community; Petroleum hydrocarbon degradation;
English
21-ago-2023
2023
11
5 (October 2023)
110817
none
Ambaye, T., Formicola, F., Sbaffoni, S., Milanese, C., Franzetti, A., Vaccari, M. (2023). Effect of biochar on petroleum hydrocarbon degradation and energy production in microbial electrochemical treatment. JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 11(5 (October 2023)) [10.1016/j.jece.2023.110817].
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/443360
Citazioni
  • Scopus 1
  • ???jsp.display-item.citation.isi??? 0
Social impact