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  4. Kinetic Analysis For Biodesulfurization Of Dibenzothiophene Using R. Rhodochrous Adsorbed On Silica
 
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Kinetic Analysis For Biodesulfurization Of Dibenzothiophene Using R. Rhodochrous Adsorbed On Silica

Journal
Ecological Chemistry and Engineering S
Date Issued
2018-12-01
Author(s)
Christian Canales
Johanna Eyzaguirre
Patricio Baeza
Paulina Aballay
Ojeda, Juan  
Facultad de Farmacia  
DOI
10.1515/eces-2018-0036
WoS ID
WOS:000456191000003
Abstract
Abstract Experimental biodesulfurization (BDS) data for dibenzothiophene (DBT) (1.0-7.0 mM) with Rhodococcus rhodochorus immobilized by adsorption on silica, were adjusted with liquid-film kinetic model (Fisher coefficient, F = 592.74 and probability value p << 0.05 and r 2 = 0.97). Simulations predict the presence of considerable amounts of DBT surrounding the particles, which would be available for the cells adsorbed on the surface of silica. The greatest percentage removal (50 %) was obtained for adsorbed cell system over the suspended bacterial cells (30 %), showing that sulfur substrates are more bioavailable when the bacterial cells are adsorbed on silica. The liquid-film modelling with diffusional effects provides proper theoretical basis to explain the BDS performance obtained using adsorbed cells.
Subjects

Environmental Science...

Environmental Chemist...

Environmental Enginee...

OCDE Subjects

Natural Sciences::Ear...

Quartile (Date Issued)
Q3
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