Influence of Anoxic Selectors on Heavy Metal Removal by Activated Sludge

  • Niec, Jay H. (Department of Civil and Environmental Engineering, University of Delaware) ;
  • Cha, Daniel K. (Department of Civil and Environmental Engineering, University of Delaware)
  • 발행 : 2000.11.01

초록

The goal of this research is to compare the metal binding characteristics of an anoxic selector activated sludge system and a conventional activated sludge system. Metal biosorption by biomass harvested from experimental systems was determined by a series of batch experiments. Heavy metals studied in this research were zinc, cadmium, and nickel. The sorption isotherm showed that the selector sludge had significantly higher sorption capacity than did the control sludge. Metal biosorption behavior closely followed a Freundlich isotherm model for equilibrium concentrations. ECP contents of biomass estimated by alkali extraction technique showed that ECP levels in the selector sludge significantly higher than that in the sludge harvested from the conventional system, indicating that the higher metal sorption capacity of selector sludge may be due to the selection of the ECP-producing bacteria (i.e., Zoogloea sp.) by the selector system.

키워드

참고문헌

  1. Manual on the Causers and Control of Activated Sludge Bullking and foaming Jenkins, D.;M. G. Richard;G. T. Daigger
  2. Water Environ. Res. v.64 process control factors influencing nocardia populations in activated sludge Cha, D. K.;D. Jenkins;W P. Lewis;W. H. Kido
  3. Process Control Factors Influencing Nocardia Population in Activated Sludge Cha, D. K.
  4. Environ. Lett v.5 Efficiency of heavy metals removal in muvicipal sewage treatment plant Brown, H. G.;C. P. Hensley;G. L. McKinney;J. L. Robinson
  5. J. Environ. Eng. v.113 Adsorption behavior of cu(II) onto sludge particulate surfaces Tien C. T.;C. P. Huang
  6. Wat. Res. v.29 Influence of selector technology on heavy metal removal by activated sludge:secondary effects of selector technology Su, M. C.;D. K. Cha;P. R. Anderson
  7. Wat. Res. v.13 Metal removal in activated sludge:the role of bacterial extracellular polymers Brown, M. J.;J. N. Lester
  8. Wat. Res. v.16 Role of bacterial extracellular polymers in metal uptake in pure bacterial culture and activated sludge: Ⅰ.Effect of metal concentration Brown, M. J.;J. N. Lester
  9. J. Chem. Tech. Biotechnol. v.34B Adsorption and complexation mechanisms of heavy metal uptake in activated sludge Lawson P. S.;R. M. Sterritt;J. N. Lester
  10. Metal Ions and Bacteria Interactions between metal ions and capsular polymers Geesey, G. G.;L. Jang;T. J. Beverage(ed.);R. J. Doyle(ed.)
  11. Proceedings of the 27th Annual Purdeu Ind. Waste Conf. Removal of mineral ions from water by microbial produced polymer Dugan P. R.;Pickurm H. M
  12. J. Chem. Tech. Biotechnol. v.33A Stability constant and complexation capacities of complexes formed between heavy metals and extracellular polymers from activated sludge Rudd, T.;R. M. Sterritt;J. N. Lester
  13. Biotechnol. Bioeng. v.26 Accumulation of heavy-metal ions by Zoogloea ramigera Noberg, A. B.;H. persson
  14. Zoogloea, Dev. Ind. Microbial. v.9 Concentration and accumulation of metallic ions by the bacterium Friedman, B. A.;P. R. Dugan
  15. J. Wat. Pollut. Control Fed v.59 The competitive growth of Zoogloea ramigera and type 021N in activated sludge and pure culture: A model for low F/M bulking van Niekerk;A. ML.;D. Jenkins;M. G. Richard
  16. Standard Methods for the Examination of Water and Wastewater(18th ed.) APHA
  17. Appl. Environ. Microbiol. v.40 Comparison of bacterial extracellular polymer extraction methods Brown, M. J.;J. N. Lester