Kinetic and stoichiometric characterization of anoxic sulfide oxidation by SO-NR mixed cultures from anoxic biotrickling filters

Verfasser / Beitragende:
[Mabel Mora, Maikel Fernández, José Gómez, Domingo Cantero, Javier Lafuente, Xavier Gamisans, David Gabriel]
Ort, Verlag, Jahr:
2015
Enthalten in:
Applied Microbiology and Biotechnology, 99/1(2015-01-01), 77-87
Format:
Artikel (online)
ID: 605497923
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024 7 0 |a 10.1007/s00253-014-5688-5  |2 doi 
035 |a (NATIONALLICENCE)springer-10.1007/s00253-014-5688-5 
245 0 0 |a Kinetic and stoichiometric characterization of anoxic sulfide oxidation by SO-NR mixed cultures from anoxic biotrickling filters  |h [Elektronische Daten]  |c [Mabel Mora, Maikel Fernández, José Gómez, Domingo Cantero, Javier Lafuente, Xavier Gamisans, David Gabriel] 
520 3 |a Monitoring the biological activity in biotrickling filters is difficult since it implies estimating biomass concentration and its growth yield, which can hardly be measured in immobilized biomass systems. In this study, the characterization of a sulfide-oxidizing nitrate-reducing biomass obtained from an anoxic biotrickling filter was performed through the application of respirometric and titrimetric techniques. Previously, the biomass was maintained in a continuous stirred tank reactor under steady-state conditions resulting in a growth yield of 0.328 ± 0.045g VSS/gS. To properly assess biological activity in respirometric tests, abiotic assays were conducted to characterize the stripping of CO2 and sulfide. The global mass transfer coefficient for both processes was estimated. Subsequently, different respirometric tests were performed: (1) to solve the stoichiometry related to the autotrophic denitrification of sulfide using either nitrate or nitrite as electron acceptors, (2) to evaluate the inhibition caused by nitrite and sulfide on sulfide oxidation, and (3) to propose, calibrate, and validate a kinetic model considering both electron acceptors in the overall anoxic biodesulfurization process. The kinetic model considered a Haldane-type equation to describe sulfide and nitrite inhibitions, a non-competitive inhibition to reflect the effect of sulfide on the elemental sulfur oxidation besides single-step denitrification since no nitrite was produced during the biological assays. 
540 |a Springer-Verlag Berlin Heidelberg, 2014 
690 7 |a Hydrogen sulfide  |2 nationallicence 
690 7 |a Biotrickling filter  |2 nationallicence 
690 7 |a SO-NR culture  |2 nationallicence 
690 7 |a Kinetics and stoichiometry  |2 nationallicence 
690 7 |a Respirometry  |2 nationallicence 
690 7 |a Titrimetry  |2 nationallicence 
700 1 |a Mora  |D Mabel  |u Department of Chemical Engineering, School of Engineering, Universitat Autònoma de Barcelona, 08193, Bellaterra, Barcelona, Spain  |4 aut 
700 1 |a Fernández  |D Maikel  |u Department of Chemical Engineering and Food Technologies, Faculty of Sciences, University of Cádiz, 11510, Puerto Real, Cádiz, Spain  |4 aut 
700 1 |a Gómez  |D José  |u Department of Chemical Engineering and Food Technologies, Faculty of Sciences, University of Cádiz, 11510, Puerto Real, Cádiz, Spain  |4 aut 
700 1 |a Cantero  |D Domingo  |u Department of Chemical Engineering and Food Technologies, Faculty of Sciences, University of Cádiz, 11510, Puerto Real, Cádiz, Spain  |4 aut 
700 1 |a Lafuente  |D Javier  |u Department of Chemical Engineering, School of Engineering, Universitat Autònoma de Barcelona, 08193, Bellaterra, Barcelona, Spain  |4 aut 
700 1 |a Gamisans  |D Xavier  |u Department of Mining Engineering and Natural Resources, Universitat Politècnica de Catalunya, Bases de Manresa 61-73, 08240, Manresa, Spain  |4 aut 
700 1 |a Gabriel  |D David  |u Department of Chemical Engineering, School of Engineering, Universitat Autònoma de Barcelona, 08193, Bellaterra, Barcelona, Spain  |4 aut 
773 0 |t Applied Microbiology and Biotechnology  |d Springer Berlin Heidelberg  |g 99/1(2015-01-01), 77-87  |x 0175-7598  |q 99:1<77  |1 2015  |2 99  |o 253 
856 4 0 |u https://doi.org/10.1007/s00253-014-5688-5  |q text/html  |z Onlinezugriff via DOI 
898 |a BK010053  |b XK010053  |c XK010000 
900 7 |a Metadata rights reserved  |b Springer special CC-BY-NC licence  |2 nationallicence 
908 |D 1  |a research-article  |2 jats 
949 |B NATIONALLICENCE  |F NATIONALLICENCE  |b NL-springer 
950 |B NATIONALLICENCE  |P 856  |E 40  |u https://doi.org/10.1007/s00253-014-5688-5  |q text/html  |z Onlinezugriff via DOI 
950 |B NATIONALLICENCE  |P 700  |E 1-  |a Mora  |D Mabel  |u Department of Chemical Engineering, School of Engineering, Universitat Autònoma de Barcelona, 08193, Bellaterra, Barcelona, Spain  |4 aut 
950 |B NATIONALLICENCE  |P 700  |E 1-  |a Fernández  |D Maikel  |u Department of Chemical Engineering and Food Technologies, Faculty of Sciences, University of Cádiz, 11510, Puerto Real, Cádiz, Spain  |4 aut 
950 |B NATIONALLICENCE  |P 700  |E 1-  |a Gómez  |D José  |u Department of Chemical Engineering and Food Technologies, Faculty of Sciences, University of Cádiz, 11510, Puerto Real, Cádiz, Spain  |4 aut 
950 |B NATIONALLICENCE  |P 700  |E 1-  |a Cantero  |D Domingo  |u Department of Chemical Engineering and Food Technologies, Faculty of Sciences, University of Cádiz, 11510, Puerto Real, Cádiz, Spain  |4 aut 
950 |B NATIONALLICENCE  |P 700  |E 1-  |a Lafuente  |D Javier  |u Department of Chemical Engineering, School of Engineering, Universitat Autònoma de Barcelona, 08193, Bellaterra, Barcelona, Spain  |4 aut 
950 |B NATIONALLICENCE  |P 700  |E 1-  |a Gamisans  |D Xavier  |u Department of Mining Engineering and Natural Resources, Universitat Politècnica de Catalunya, Bases de Manresa 61-73, 08240, Manresa, Spain  |4 aut 
950 |B NATIONALLICENCE  |P 700  |E 1-  |a Gabriel  |D David  |u Department of Chemical Engineering, School of Engineering, Universitat Autònoma de Barcelona, 08193, Bellaterra, Barcelona, Spain  |4 aut 
950 |B NATIONALLICENCE  |P 773  |E 0-  |t Applied Microbiology and Biotechnology  |d Springer Berlin Heidelberg  |g 99/1(2015-01-01), 77-87  |x 0175-7598  |q 99:1<77  |1 2015  |2 99  |o 253