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

Author:

Sar Taner12,Ozturk Murat2,Stark Benjamin C.3,Akbas Meltem Yesilcimen2ORCID

Affiliation:

1. Swedish Centre for Resource Recovery University of Borås Borås Sweden

2. Department of Molecular Biology and Genetics Gebze Technical University Gebze-Kocaeli Turkey

3. Department of Biology Illinois Institute of Technology Chicago Illinois USA

Abstract

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 (0.1–2 mmol l−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 l−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.

Funder

Türkiye Bilimsel ve Teknolojik Araştirma Kurumu

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

Reference48 articles.

1. DBT degradation enhancement by decorating Rhodococcus erythropolis IGST8 with magnetic Fe3O4 nanoparticles;Ansari;Biotechnology and Bioengineering,2009

2. Growth of Rhodosporidium toruloides strain DBVPG 6662 on dibenzothiophene crystals and orimulsion;Baldi;Applied and Environmental Microbiology,2003

3. Desulfurization activity and reusability of magnetite nanoparticle-coated Rhodococcus erythropolis FMF and R. erythropolis IGTS8 bacterial cells;Bardania;Biotechnology and Applied Biochemistry,2013

4. Oxidation of dibenzothiophene as a model substrate for the removal of organic sulphur from fossil fuels by iron (III) ions generated from pyrite by Acidithiobacillus ferrooxidans;Beškoski;Journal of the Serbian Chemical Society,2007

5. A novel Bacillus pumilus-related strain from tropical landfarm soil is capable of rapid dibenzothiophene degradation and biodesulfurization;Buzanello;BMC Microbiology,2014

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