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Improvement in desulfurization of dibenzothiophene and dibenzothiophene sulfone by Paenibacillus strains using immobilization or nanoparticle coating

Authors :
Taner Sar
Murat Ozturk
Benjamin C. Stark
Meltem Yesilcimen Akbas
Source :
Journal of Applied Microbiology. 133:1040-1051
Publication Year :
2022
Publisher :
Oxford University Press (OUP), 2022.

Abstract

Aims Biodesulfurization of fossil fuels is a promising technology for deep desulfurization. Previously, we have shown that Paenibacillus strains 32O-W and 32O-Y can desulfurize dibenzothiophene (DBT) and DBT sulfone (DBTS) effectively. In this work, improvements in DBT and DBTS desulfurization by these strains were investigated through immobilization and nanoparticle coating of cells. Methods and Results Paenibacillus strains 32O-W and 32O-Y immobilized in alginate gel beads or coated with Fe3O4 magnetite nanoparticles were grown at various concentrations (0.1ā€“2 mmol lāˆ’1) of DBT or DBTS for 96 h. The production of 2-hydroxybiphenyl (2-HBP) from the 4S pathway biotransformation of DBT or DBTS was measured. The highest amounts of 2-HBP production occurred at concentrations of 0.1 and 0.5 mmol lāˆ’1. Compared to planktonic cultures maximum 2-HBP production increased by 54% for DBT and 90% for DBTS desulfurization with immobilized strains, and 44% for DBT and 66% for DBTS desulfurization by nanoparticle-coated strains. Conclusions Nanoparticle-coated and immobilized cells may be of use in efforts to increase the efficiency of biodesulfurization. Significance and Impact of the Study Alginate immobilization or nanoparticle coating of bacterial cells may be useful approaches for the enhancement of biodesulfurization for eventual use on an industrial scale.

Details

ISSN :
13652672 and 13645072
Volume :
133
Database :
OpenAIRE
Journal :
Journal of Applied Microbiology
Accession number :
edsair.doi.dedup.....3c63701b6ac6aaeb8d5f0eb713128855
Full Text :
https://doi.org/10.1111/jam.15637