46
Views
12
CrossRef citations to date
0
Altmetric
Original Articles

Structure activity relationships for the prediction of biodegradability of environmental pollutants

, &
Pages 217-236 | Published online: 09 Jan 2009

References

  • Diane , J. W. , Blum , M. and Speece , R. E. 1990 . Determining chemical toxicity to aquatic species . Environ. Sci. Technol. , 24 : 284
  • Nirmalakhandan , N. and Speece , R. E. 1988 . Structure activity relationships . Environ. Sci. Technol. , 6 : 606
  • Mackay , D. and Patterson , S. 1981 . Calculating fugacity . Environ. Sci. Technol. , 15 : 1006
  • Alexander , M. 1981 . Biodegradation of chemicals of environmental concern . Science , 211 : 132
  • Howard , P. H. , Hueber , A. E. and Boethling , R. S. 1987 . Biodegradation data evaluation for structure/biodegradability relations . Environ. Toxicol. Chem. , 61 : 1
  • Koch , R. 1984 . “ Quantitative structure‐activity relationships in ecotoxicology: possibilities and limits ” . In QSAR in Environmental Toxicology , Edited by: Kaiser , K. L. E. 207 Dordrecht, , Netherlands : D. Reidel .
  • Connell , D. W. and Schuurmann , G. 1988 . Evaluations of various molecular parameters as predictors of bioconcentration of fish . Ecotoxicol. Environ. Safety , 15 : 324
  • Connell , D. W. 1988 . Bioaccumulation behaviour of persistent organic chemicals with aquatic organisms . Rev. Environ. Contant. Toxicol. , 101 : 117
  • Boethling , R. S. 1986 . Application of molecular topology to quantitative structure biodegradability relationships . Environ. Toxicol. Chem. , 5 : 797
  • Randic , M. 1975 . On characterisation of molecular branching . J. Am. Chem. Soc. , 97 : 6609
  • Kier , L. B. and Hall , L. H. 1976 . Chemistry Molecular Connectivity and Drug Research , New York : Academic Press .
  • Enslein , K. , Tomb , M. E. and Lander , R. T. 1984 . “ Structure activity models of biological oxygen demand ” . In QSAR in Environmental Toxicology , Edited by: Kaiser , K. L. E. 89 Dordrecht, , The Netherlands : D. Reidel .
  • Niemi , G. J. , Regal , R. R. , Vaischnav , D. D. and Vieth , G. D. A preliminary model to predict biodegradability from chemical structure . Proc. workshop: biodégradation kinetics . Edited by: Bourquin , A. , Pritchard , P. H. , Walker , W. W. and Parish , R. pp. 121 Navarre Beach, FL : U.S. Environmental Protection Agency, Office of Research and Development . EPA/600/9–85/018, Gulf Breeze, FL
  • Yonezawa , Y. and Urushigwa , Y. 1979 . Chemico‐biological interactions in biological purification systems. V. Relation between biodegradation rate constants of aliphatic alcohols by activated sludge and their partition coefficients in a 1‐octanol‐water system . Chemosphere , 5 : 139
  • Urushigwa , Y. and Yonezawa , Y. 1979 . Chemico‐biological interactions in biological purification systems. VI. Relation between biodegradation rate constants of di‐n‐alkyl phthalate esters and their retention times in reverse phase partition chromatography . Chemosphere , 5 : 317
  • Wolfe , N. L. , Paris , D. F. , Steen , W. C. and Baughman , G. L. 1980 . Correlation of microbial degradation rates with chemical structure . Environ. Sci. Technol. , 14 : 1143
  • Banerjee , S. , Howard , P. H. , Rosenberg , A. M. , Dombrowski , A. E. , Sikka , H. and Tullis , D. L. 1984 . Development of a general kinetic model for biodegradation and its application to chlorophenols and related compounds . Environ. Sci. Technol. , 18 : 416
  • Mudder , T. I. 1981 . Development of Empirical Structure Biodegradability Relationships and Testing Protocol for Slightly Soluble and Volatile Priority Pollutants , Ames : University of Iowa . Ph.D. Thesis
  • Hansch , C. , Leo , A. , Unger , S. , Kim , K. , Nikaitami , D. and Lien , E. 1973 . Aromatic substituent constants for structure‐activity correlations . J. Med. Chem. , 16 : 1207
  • Hammett , L. P. 1935 . Some relationships between reaction rates and equilibrium constants . Chem. Rev. , 17 : 125
  • Dearden , J. C. and Nicholson , R. M. 1986 . The prediction of biodegradability by the use of quantitative structure activity relationships: correlation of biological oxygen demand with atomic charge difference . Pestic. Sci. , 17 : 305
  • Dearden , J. C. and Nicholson , R. M. 1987 . “ QSAR study of the biodegradability of environmental pollutants ” . In QSAR in Drug Design and Toxicology , Edited by: Hadzi , D. and Jerman Blazic , B. 307 Amsterdam, , Netherlands : Elsevier .
  • Desai , S. M. , Govind , R. and Tabak , H. H. 1990 . Development of Quantitative Structure Activity Relationships for predicting biodegradation kinetics . Environ. Toxicol. Chem. , 9 : 473
  • Hansch , C. and Leo , A. 1979 . Substituent Constants for Correlation Analysis in Chemistry and Biology , New York : John Wiley & Sons .
  • Konecky , M. S. , Kelly , R. J. , Symons , J. M. and McCarty , P. L. 1963 . The determination of biodegradability of detergents, ESSO research biodegradation test . 36th Annu. Meet. Water Pollut. Control Fed. 1963 , Seattle, WA.
  • Janicke , W. 1968 . Indirekte ermittlung des biologischen abbaugrades organischer Verbindungen durch bestimmung der Oxydierbarkeiten . Gesundheitsing , 89 : 309
  • Pitter , P. 1968 . Surface active agents in waste waters. XII. Evaluation of surfactant biodegradability by the COD technique and ultraviolet spectra . Sb. Vys. Sk. Chem. Technol. Praze , 14 : 7
  • Meissner , B. 1958 . Zum biologischen abbau organischer Substanzen . Wasserwirtsch. Wassertech. , 8 : 483
  • Pitter , P. 1976 . Determination of biological degradability of organic substances . Water Res. , 10 : 231
  • Paris , D. F. , Wolfe , N. L. and Steen , W. C. 1982 . Structure activity relationships in microbial transformation of phenols . Appl. Environ. Microbiol. , 44 : 153
  • Paris , D. F. , Wolfe , N. L. , Steen , W. C. and Baughman , G. L. 1983 . Effect of phenol molecular structure on bacteria] transformation rate constants in pond and river samples . Appl. Environ. Microbiol. , 45 : 1153
  • Manod , J. 1949 . The growth of bacterial cultures . Annu. Rev. Microbiol. , 3 : 371
  • Paris , D. F. , Lewis , W. L. and Wolfe , N. L. 1975 . Rate of degradation of malathion by bacteria isolated from an aquatic system . Environ. Sci. Technol. , 9 : 135
  • Paris , D. F. , Steen , W. C. , Baughman , G. L. and Barnett , J. T. 1981 . Second order model to predict microbial degradation of organic compounds in natural waters . Appl. Environ. Microbiol. , 41 : 603
  • Rubin , H. E. , Subbarao , R. E. and Alexander , M. 1982 . Rates of mineralization of trace concentration of aromatic compounds in lake water and sewage samples . Appl. Environ. Microbiol. , 43 : 1133
  • Swisher , R. D. 1970 . Surfactant Biodegradation , 17 New York : Marcel Dekker .
  • Alexander , M. and Lustigman , B. K. 1986 . Effect of chemical structure on microbial degradation of substituted benzenes . J. Agric. Food Chem. , 14 : 410
  • Alexander , M. 1973 . Nonbiodegradable and other recalcitrant molecules . Biotechnol. Bioeng. , 15 : 611
  • Huddleston , R. L. and Allred , R. C. 1963 . Biodegradable detergents evaluation of detergents using activated sludge . Dev. Ind. Microbiol. , 4 : 24
  • Paris , D. F. , Wolfe , N. L. and Steen , W. C. 1984 . Microbial transformation of esters of chlorinated carboxylic acids . Appl. Environ. Microbiol. , 47 : 7
  • Pitter , P. 1985 . Correlation of microbial degradation rates with the chemical structure . Acta Hydrochim. Hydrobiol. , 13 : 453
  • Dearden , J. C. and Nicholson , R. M. 1987 . “ Correlation of biodegradability with atomic charge difference and superdelocalizability ” . In QSAR in Environmental Toxicology , Edited by: Kaiser , K. L. E. Vol. 2 , 83 Dordrecht, , The Netherlands : D. Reidel .

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.