Optimisation of the operational conditions of trichloroethylene degradation using Trametes versicolor under quinone redox cycling conditions using central composite design methodology
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Acevedo F, Pizzul L, Castillo MD, Gonzalez ME, Cea M, Gianfreda L, Diez MC (2010) Degradation of polycyclic aromatic hydrocarbons by free and nanoclay-immobilized manganese peroxidase from Anthracophyllum discolor. Chemosphere 80(3):271–278
Agency for toxic substances & disease registry (ATSDR) (2007) Case studies in environmental medicine (CSEM) trichloroethylene toxicity. http://www.atsdr.cdc.gov/csem/tce/docs/tce.pdf . Accessed 15 Sept 2010
Aranda E, Marco-Urrea E, Caminal G, Arias ME, Garcia-Romera I, Guillen F (2010) Advanced oxidation of benzene, toluene, ethylbenzene and xylene isomers (BTEX) by Trametes versicolor. J Hazard Mater 181(1–3):181–186
Baborova P, Moder M, Baldrian P, Cajthamlova K, Cajthaml T (2006) Purification of a new manganese peroxidase of the white-rot fungus Irpex lacteus and degradation of polycyclic aromatic hydrocarbons by the enzyme. Res Microbiol 157(3):248–253
Backa S, Gierer J, Reitberger T, Nilsson T (1993) Hydroxyl radical activity Associated with the growth of white-rot fungi. Holzforschung 47(3):181–187
Chen G, Hoag GE, Chedda P, Nadim F, Woody BA, Dobbs GM (2001) The mechanism and applicability of in situ oxidation of trichloroethylene with Fenton’s reagent. J Hazard Mater 87(1–3):171–186
D’Annibale A, Ricci M, Leonardi V, Quaratino D, Mincione E, Petruccioli M (2005) Degradation of aromatic hydrocarbons by white-rot fungi in a historically contaminated soil. Biotechnol Bioeng 90(6):723–731
Deming SN, Morgan SL (1987) Experimental design: a chemometric approach, vol 3. Data handling in science and technology. Elsevier, Amsterdam, The Netherlands
Gomez-Toribio V, Garcia-Martin AB, Martinez MJ, Martinez AT, Guillen F (2009a) Induction of extracellular hydroxyl radical production by white-rot fungi through quinone redox cycling. Appl Environ Microbiol 75(12):3944–3953
Gomez-Toribio V, Garcia-Martin AB, Martinez MJ, Martinez AT, Guillen F (2009b) Enhancing the production of hydroxyl radicals by Pleurotus eryngii via quinone redox cycling for pollutant removal. Appl Environ Microbiol 75(12):3954–3962
Gossett JM (1987) Measurement of Henrys Law constants for C1 and C2 chlorinated hydrocarbons. Environ Sci Technol 21(2):202–208
Gutteridge JMC (1984) Reactivity of hydroxyl and hydroxyl-like radicals discriminated by release of thiobarbituric acid-reactive material from deoxy sugars, nucleosides and benzoate. Biochem J 224(3):761–767
Halliwell B, Gutteridge JMC (1981) Formation of a thiobarbituric acid reactive substance from deoxyribose in the presence of iron salts: the role of superoxide and hydroxyl radicals. FEBS Lett 128(2):347–352
Hirvonen A, Tuhkanen T, Kalliokoski P (1996) Treatment of TCE- and PCE-contaminated groundwater using UV/H2O2 and O-3/H2O2 oxidation processes. Water Sci Technol 33(6):67–73
Johannes C, Majcherczyk A (2000) Laccase activity tests and laccase inhibitors. J Biotechnol 78(2):193–199
Kan E, Kim S, Deshusses MA (2007) Fenton oxidation of TCE vapors in a foam reactor. Environ Prog 26(3):226–232
Khindaria A, Grover TA, Aust SD (1995) Reductive Dehalogenation of aliphatic halocarbons by lignin peroxidase of Phanerochaete chrysosporium. Environ Sci Technol 29(3):719–725
Marco-Urrea E, Parella T, Gabarrell X, Caminal G, Vicent T, Reddy CA (2008a) Mechanistics of trichloroethylene mineralization by the white-rot fungus Trametes versicolor. Chemosphere 70(3):404–410
Marco-Urrea E, Gabarrell X, Caminal G, Vicent T, Reddy CA (2008b) Aerobic degradation by white-rot fungi of trichloroethylene (TCE) and mixtures of TCE and perchloroethylene (PCE). J Chem Technol Biotechnol 83(9):1190–1196
Marco-Urrea E, Aranda E, Caminal G, Guillen F (2009) Induction of hydroxyl radical production in Trametes versicolor to degrade recalcitrant chlorinated hydrocarbons. Bioresour Technol 100(23):5757–5762
Michniewicz A, Ledakowicz S, Ullrich R, Hofrichter M (2008) Kinetics of the enzymatic decolorization of textile dyes by laccase from Cerrena unicolor. Dyes Pigment 77(2):295–302
NRC (2006) Assessing the human health risks of trichloroethylene. Key scientific issues. National Academies Press, Washington. http://dels.nas.edu/resources/static-assets/materials-based-on-reports/reports-in-brief/trichloroethylene_brief_final.pdf . Accessed 15 September 2010
Pant P, Pant S (2010) A review: advances in microbial remediation of trichloroethylene (TCE). J Environ Sci-China 22(1):116–126
Tabrez S, Ahmad M (2009) Toxicity, biomarkers, genotoxicity, and carcinogenicity of trichloroethylene and its metabolites: a review. J Environ Sci Health Pt C-Environ Carcinog Ecotoxicol Rev 27(3):178–196
Vilaplana M, Marco-Urrea E, Gabarrell X, Sarra M, Caminal G (2008) Required equilibrium studies for designing a three-phase bioreactor to degrade trichloroethylene (TCE) and tetrachloroethylene (PCE) by Trametes versicolor. Chem Eng J 144(1):21–27
Weeks KR, Bruell CJ, Mohanty NR (2000) Use of Fenton’s reagent for the degradation of TCE in aqueous systems and soil slurries. Soil Sediment Contam 9(4):331–345
Yadav JS, Bethea C, Reddy CA (2000) Mineralization of trichloroethylene (TCE) by the white rot fungus Phanerochaete chrysosporium. Bull Environ Contam Toxicol 65(1):28–34