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1.
Environ Sci Pollut Res Int ; 30(20): 58002-58018, 2023 Apr.
Article in English | MEDLINE | ID: mdl-36973626

ABSTRACT

The Ocean decade (2021-2030) for sustainable development proclaimed in 2017 by the UN, seeks to promote and conserve the sustainable use of oceans, seas, and marine resources. For this, the distribution of n-alkanes, polycyclic aromatic hydrocarbons (PAHs), and biomarkers, in sediments from the Fortaleza coastal zone (Mucuripe harbor (MH) and Inner Continental shelf (ICS)) were used to assess the impacts of anthropogenic activities in the area. The concentrations of total n-alkanes (Σ16 n-alkanes) in MH and ICS sediments varied from 35.9 to 94.9 and 17.9 to 197.3 µg g-1, respectively, while the isoprenoids phytane and pristane in MH and ICS sediments ranged from 0.1 to 1.69 ug g-1 and from 0.14 and 1.20 µg g-1, respectively. Most of the sediment samples presented carbon preference index (CPI) values close to unity, indicating that the area is submitted to petroleum-related sources. The concentrations of Σ16 PAHs in MH and ICS sediments varied from 87.0 to 562.0 and 98 to 288.0 ng g-1. This work presents the first investigation of the petroleum biomarkers hopanes and steranes in the Fortaleza coastal zone, in which ΣBiomarkers varied from 0.10 to 1.79 and 0.02 to 0.24 ug g-1 in MH and ICS sediments, respectively. The presence at stations of biomarkers also indicates petrogenic input. The diagnosis of the distribution of pollutants in the investigated zones of the Fortaleza coast suggests contamination from urban areas and oil spills and vessel traffic.


Subject(s)
Petroleum , Polycyclic Aromatic Hydrocarbons , Water Pollutants, Chemical , Petroleum/analysis , Brazil , Water Pollutants, Chemical/analysis , Environmental Monitoring , Geologic Sediments , Hydrocarbons/analysis , Alkanes/analysis , Oceans and Seas , Biomarkers , Polycyclic Aromatic Hydrocarbons/analysis
2.
Mar Pollut Bull ; 89(1-2): 191-200, 2014 Dec 15.
Article in English | MEDLINE | ID: mdl-25457810

ABSTRACT

Bacterial strains and metagenomic clones, both obtained from petroleum reservoirs, were evaluated for petroleum degradation abilities either individually or in pools using seawater microcosms for 21 days. Gas Chromatography-Flame Ionization Detector (GC-FID) and Gas Chromatography-Mass Spectrometry (GC-MS) analyses were carried out to evaluate crude oil degradation. The results showed that metagenomic clones 1A and 2B were able to biodegrade n-alkanes (C14 to C33) and isoprenoids (phytane and pristane), with rates ranging from 31% to 47%, respectively. The bacteria Dietzia maris CBMAI 705 and Micrococcus sp. CBMAI 636 showed higher rates reaching 99% after 21 days. The metagenomic clone pool biodegraded these compounds at rates ranging from 11% to 45%. Regarding aromatic compound biodegradation, metagenomic clones 2B and 10A were able to biodegrade up to 94% of phenanthrene and methylphenanthrenes (3-MP, 2-MP, 9-MP and 1-MP) with rates ranging from 55% to 70% after 21 days, while the bacteria Dietzia maris CBMAI 705 and Micrococcus sp. CBMAI 636 were able to biodegrade 63% and up to 99% of phenanthrene, respectively, and methylphenanthrenes (3-MP, 2-MP, 9-MP and 1-MP) with rates ranging from 23% to 99% after 21 days. In this work, isolated strains as well as metagenomic clones were capable of degrading several petroleum compounds, revealing an innovative strategy and a great potential for further biotechnological and bioremediation applications.


Subject(s)
Microbial Consortia/physiology , Oil and Gas Fields/microbiology , Petroleum/metabolism , Alkanes/metabolism , Bacteria/genetics , Bacteria/metabolism , Biodegradation, Environmental , Brazil , Chromatography, Gas , Cytochrome P-450 CYP4A/genetics , Gas Chromatography-Mass Spectrometry , Hydrocarbons, Aromatic/metabolism , Microbial Consortia/genetics , Micrococcus/metabolism , Petroleum/analysis , Phenanthrenes/metabolism , Seawater/microbiology
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