Title of article
Solubilization, solution equilibria, and biodegradation of PAH’s under thermophilic conditions Original Research Article
Author/Authors
Sridhar Viamajala، نويسنده , , Brent M. Peyton، نويسنده , , Lee A. Richards، نويسنده , , James N. Petersen، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
13
From page
1094
To page
1106
Abstract
Biodegradation rates of PAHs are typically low at mesophilic conditions and it is believed that the kinetics of degradation is controlled by PAH solubility and mass transfer rates. Solubility tests were performed on phenanthrene, fluorene and fluoranthene at 20 °C, 40 °C and 60 °C and, as expected, a significant increase in the equilibrium solubility concentration and of the rate of dissolution of these polycyclic aromatic hydrocarbons (PAHs) was observed with increasing temperature. A first-order model was used to describe the PAH dissolution kinetics and the thermodynamic property changes associated with the dissolution process (enthalpy, entropy and Gibb’s free energy of solution) were evaluated. Further, other relevant thermodynamic properties for these PAHs, including the activity coefficients at infinite dilution, Henry’s law constants and octanol–water partition coefficients, were calculated in the temperature range 20–60 °C. In parallel with the dissolution studies, three thermophilic Geobacilli were isolated from compost that grew on phenanthrene at 60 °C and degraded the PAH more rapidly than other reported mesophiles. Our results show that while solubilization rates of PAHs are significantly enhanced at elevated temperatures, the biodegradation of PAHs under thermophilic conditions is likely mass transfer limited due to enhanced degradation rates.
Keywords
PAH , phenanthrene , Thermophile , Solubility , Solubilization kinetics
Journal title
Chemosphere
Serial Year
2007
Journal title
Chemosphere
Record number
724621
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