Publication Cover
Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 41, 2006 - Issue 3
298
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

Solar-Chemical Treatment of Groundwater Contaminated with Petroleum at Gas Station Sites: Ex Situ Remediation Using Solar/TiO2 Photocatalysis and Solar Photo-Fenton

, , , &
Pages 457-473 | Received 12 Nov 2005, Published online: 06 Feb 2007

REFERENCES

  • Kao , M. C.M. and Wang , C. C. 2000 . Control of BTEX migration by intrinsic bioremediation at a gasoline spill site . Water Res. , 34 : 3413 – 3423 . [CSA]
  • Huntleya , D. and Beckettb , G. D. 2002 . Persistence of LNAPL sources: Relationship between risk reduction and LNAPL recovery . J. Contam. Hydro. , 59 : 3 – 26 . [CSA] [CROSSREF]
  • Minero , C. , Maurino , V. and Pelizzetti , E. 1997 . Photocatalytic transformations of hydrocarbons at the sea water/air interface under solar radiation . Marine Chemistry , 58 : 361 – 372 . [CSA] [CROSSREF]
  • Bessa , E. , Lippel , G. and Dezotti , M. 2001 . Photocatalytic/H2O2 treatment of oil field produced waters . Applied Catalysis B: Environmental , 29 : 125 – 134 . [CSA] [CROSSREF]
  • Hamerski , M. , Grzechulska , J. and Morawski , W. 1999 . Photocatalytic purification of soil contaminated with oil using modified TiO2 powders . Solar Energy , 66 : 395 – 399 . [CSA] [CROSSREF]
  • Ziolli , R. L. and Jardim , W. F. 2003 . Photochemical transformations of water-soluble fraction (WSF) of crude oil in marine waters: A comparison between photolysis and accelerated degradation with TiO2 using GC-MS and UVF . Journal of Photochemistry and Photobiology A: Chemistry , 20 : 243 – 252 . [CSA] [CROSSREF]
  • Sanz , J. , Lombrana , J. I. and Varona , F. 2003 . UV/H2O2 chemical oxidation for high loaded effluents: A degradation kinetic study of LAS surfactant wastewaters . Environmental Technology , 24 : 903 – 911 . [PUBMED] [INFOTRIEVE] [CSA]
  • Sun , Y. F. and Pignatello , J. J. 1995 . Evidence for a surface dual hole—Radical mechanism in the TiO2 photocatalytic oxidation of 2, 4-dichlorophenaxyacetic acid . Environmental Science and Technology , 29 : 2065 – 2072 . [CSA] [CROSSREF]
  • Heredia , D. , Torregrosa , T. B. , Dominguez , J. and Peres , J. A. 2001 . Oxidation of p-hydroxy benzoic acid by UV radiation and by TiO2/UV radiation: Comparison and modeling of reaction kinetics . Journal of Hazardous Materials , 38 : 255 – 264 . [CSA] [CROSSREF]
  • Choi , E. , Cho , I. H. and Park , J. H. 2004 . The effect of operational parameters on the photocatalytic degradation of pesticides . Journal of Environmental Science and Health Part A , 39 : 53 – 64 . [CSA]
  • Parra , S. , Sarria , V. , Malato , S. , Perunger , P. and Pulgarin , C. 2002 . Photochemical versus coupled photochemical-biological flow system for the treatment of two biorecalcitrant herbicides: metobromuron and isoproturon . Applied Catalysis B: Environmental , 27 : 153 – 168 . [CSA] [CROSSREF]
  • Yoon , J. Y. , Kim , S. , Lee , D. S. and Huh , J. 2000 . Characteristics of p-chlorophenol degradation by Photo Fenton oxidation . Water Sci. Tech. , 42 : 219 – 224 . [CSA]
  • Arana , J. , Rendon , E. T. , Rodrigue , J. M.D. , Melian , J. A.H. , Diaz , O. G. and Pena , J. P. 2001 . Highly concentrated phenolic wastewater treatment by the Photo-Fenton reaction, mechanism study by FTIR-ATR . Chemosphere , 44 : 1017 – 1023 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Cho , I. H. , Moon , I. Y. , Chung , M. H. , Lee , H. K. and Zoh , K. D. 2002 . Disinfection effects on E. coli using TiO2/UV and solar light system . Water Sci. Tech.: Water Supply , 2 : 181 – 190 . [CSA]
  • Cho , I. H. , Kim , H. Y. , Zoh , K. D. and Lee , H. K. 2002 . A study on the removal of toxic metal-EDTA complex using solar light/TiO2 system . Water Sci. Tech.: Water Supply , 2 : 299 – 304 . [CSA]
  • Cho , I. H. , Kim , H. Y. and Zoh , K. D. 2003 . Detoxification of trichlchloroethylene (TCE) using solar light/TiO2 in a UV concentrating radiation system . Journal of Water Environment and Technology , 1 : 37 – 42 . [CSA]
  • Mehos , M. S. and Turchi , C. S. 1993 . Field testing solar photocatalytic detoxification on TCE contaminated groundwater . Environmental Progress , 12 : 194 – 199 . [CSA]
  • Abdullah , M. , Low , C. and Matthews , R. W. 1990 . Effects of common inorganic anions on rates of photocatalytic oxidation organic carbon over illuminated titanium dioxide . J. Phys. Chem. , 94 : 6820 – 6825 . [CSA] [CROSSREF]
  • Jaroslaw , W. , Didier , R. , Joanna , S. G. , Korneliusz , M. , Sixto , M. , Jean and Victor , W. 2004 . Solar photocatalytic degradation of humic acids as a model of organic compounds of landfill leachate in pilot-plant experiments: Influence of inorganic salts . Applied Catalysis B: Environmental , 53 : 127 – 137 . [CSA] [CROSSREF]
  • Kormann , C. , Mahnemann , D. W. and Hoffmann , M. R. 1991 . Photolysis of chloroform and other organic molecules in aqueous TiO2 suspensions . Environ. Sci. Technol. , 25 : 494 – 500 . [CSA] [CROSSREF]
  • Malato , S. , Blanco , J. , Richer , C. , Fernandez , P. and Maldonado , M. I. 2002 . Solar photocatalytic mineralization of commercial pesticides: Oxamyl . Solar Energy Materials & Solar Cells, , 64 : 1 – 14 . [CSA] [CROSSREF]
  • Prengle , J. , Symons , H. W. and Belhateche , J. D. 1996 . H2O2/VisUV process for photo-oxidation of waterborne hazardous substances-C1-C6 chlorinated hydrocarbons . Waste Management , 16 ( 4 ) : 327 – 333 . [CSA] [CROSSREF]
  • Schreiber , M. E. and Bahr , J. M. 2002 . Nitrate-enhanced bioremediation of BTEX-contaminated groundwater: parameter estimation from natural-gradient tracer experiments . Journal of Contaminant Hydrology , 55 : 29 – 56 . [PUBMED] [INFOTRIEVE] [CSA] [CROSSREF]
  • Wang , Z. D. , Fingas , M. and Sergy , G. 1995 . Chemical characterization of crude-oil residues from an arctic beach by GC/MS and GC/FID . Environ. Sci. Technol. , 29 : 2622 – 2631 . [CSA]

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.