Application of a Biosurfactant from Starmerella bombicola ATCC 22214 for the Removal of Hydrophobic Compounds from Contaminated Surfaces

Petroleum-derived hydrophobic pollutants represent a persistent environmental concern, highlighting the need for sustainable and efficient remediation technologies. In this study, a biosurfactant produced by the yeast Starmerella bombicola ATCC 22214 using glucose and glycerol as carbon sources was characterized and evaluated for the removal of hydrophobic contaminants from different surfaces. Ionic-charge analysis indicated an anionic biosurfactant, while FTIR and 1H/13C NMR analyses revealed spectral characteristics consistent with sophorolipid-type glycolipids, including a polar carbohydrate moiety associated with sophorose, ester and carbonyl functionalities, and long fatty-acid-derived aliphatic chains. The biosurfactant maintained its surface activity during 120 days of storage under different preservation conditions, with surface tension values remaining at approximately 32 ± 2 mN/m. In the Allium cepa assay, no visible cytogenetic alterations were observed at concentrations of 0.2, 0.4, and 0.8 g/L. The biosurfactant showed maximum apparent removal values, calculated relative to the nominal oil mass applied, of up to 86.61% for used engine oil on porous rocks and 77.90% for OCB1 heavy oil on metal surfaces, while 84.00% removal was obtained for burnt engine oil from cotton fabric. These findings indicate that the biosurfactant produced by S. bombicola ATCC 22214 presents structural features consistent with a sophorolipid-type glycolipid, prolonged surface activity, no visible cytogenetic alterations under the conditions of the preliminary qualitative screening, and promising performance for the removal of petroleum-derived hydrophobic contaminants from different surfaces.

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Journal
Sci
Published
2026-09-28
DOI
https://doi.org/10.3390/sci8100268
Primary Topic
Microbial bioremediation and biosurfactants
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article
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article

Application of a Biosurfactant from Starmerella bombicola ATCC 22214 for the Removal of Hydrophobic Compounds from Contaminated Surfaces

Attílio Converti, Gleice Paula de Araújo, Rita de Cássia F. Soares da Silva, Leonie Asfora Sarubbo et al.
Sci
Microbial bioremediation and biosurfactants
article

Application of a Biosurfactant from Starmerella bombicola ATCC 22214 for the Removal of Hydrophobic Compounds from Contaminated Surfaces

Attílio Converti, Gleice Paula de Araújo, Rita de Cássia F. Soares da Silva, Leonie Asfora Sarubbo, Kaio Wêdann Oliveira, Yslla Emanuelly S. Faccioli
article en

Abstract

Petroleum-derived hydrophobic pollutants represent a persistent environmental concern, highlighting the need for sustainable and efficient remediation technologies. In this study, a biosurfactant produced by the yeast Starmerella bombicola ATCC 22214 using glucose and glycerol as carbon sources was characterized and evaluated for the removal of hydrophobic contaminants from different surfaces. Ionic-charge analysis indicated an anionic biosurfactant, while FTIR and 1H/13C NMR analyses revealed spectral characteristics consistent with sophorolipid-type glycolipids, including a polar carbohydrate moiety associated with sophorose, ester and carbonyl functionalities, and long fatty-acid-derived aliphatic chains. The biosurfactant maintained its surface activity during 120 days of storage under different preservation conditions, with surface tension values remaining at approximately 32 ± 2 mN/m. In the Allium cepa assay, no visible cytogenetic alterations were observed at concentrations of 0.2, 0.4, and 0.8 g/L. The biosurfactant showed maximum apparent removal values, calculated relative to the nominal oil mass applied, of up to 86.61% for used engine oil on porous rocks and 77.90% for OCB1 heavy oil on metal surfaces, while 84.00% removal was obtained for burnt engine oil from cotton fabric. These findings indicate that the biosurfactant produced by S. bombicola ATCC 22214 presents structural features consistent with a sophorolipid-type glycolipid, prolonged surface activity, no visible cytogenetic alterations under the conditions of the preliminary qualitative screening, and promising performance for the removal of petroleum-derived hydrophobic contaminants from different surfaces.

SciVol. 8(10)
Universidade Católica de Pernambuco (BR), Universidade Federal Rural de Pernambuco (BR), University of Genoa (IT)
Responsible consumption and production
Openalex Percentile: Top 23%
Microbial bioremediation and biosurfactants
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