Microbial Communities Associated with Alternative Fuels in Model Seawater-Compensated Fuel Ballast Tanks

Author:

Dominici Lina1ORCID,Duncan Kathleen2ORCID,Nanny Mark3,Davidova Irene2,Harriman Brian2,Suflita Joseph2

Affiliation:

1. Centro de Investigación y Desarrollo en Tecnología de Pinturas (CIDEPINT), CICPBA-CONICET-UNLP, La Plata B1900AYB, Argentina

2. Department of Microbiology & Plant Biology, University of Oklahoma, Norman, OK 73019, USA

3. School of Civil Engineering and Environmental Science, University of Oklahoma, Norman, OK 73019, USA

Abstract

The biocorrosion of carbon steel poses a risk for ships combining seawater and fuel in metal ballast tanks. Ballast tanks were simulated by duplicate reactors containing carbon steel coupons and either petroleum F76 (petro-F76), Fischer–Tropsch F76 (FT-F76), or a 1:1 mix of both fuels, to investigate whether the alternative fuel FT-F76 influenced this risk. The polycarbonate reactors were inoculated with seawater, and the control reactors did not receive fuel. The reactors were monitored for 400 days, and they all reached a pH and open circuit potential where elemental iron was oxidized, indicating corrosion. The reactors containing petro-76 or fuel mix had higher levels of dissolved iron; one of each replicate had lower concentrations of sulfate than the original seawater, while the sulfate concentration did not decrease in the other incubations. The high sulfate reactors, but not the low sulfate reactors, had a high relative abundance of microaerophilic sulfide-oxidizing bacteria. The FT-F76 and the no-fuel reactors had a high relative abundance of iron-sequestering Magnetovibrio. Although dissolved iron and loss of sulfate under anoxic conditions are associated with biocorrosion, our results suggest that in our reactors these indicators were altered by iron-sequestering and sulfide-oxidizing microbes, which is consistent with the slow diffusion of oxygen across the polycarbonate reactors.

Funder

Office of Naval Research

Publisher

MDPI AG

Subject

General Medicine

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