Open Access Open Access  Restricted Access Subscription Access
Open Access Open Access Open Access  Restricted Access Restricted Access Subscription Access

Mathematical Modeling of Bioremediation Potential of Microbes in Industrial Effluent


Affiliations
1 Department of Mathematics, M. Kumarasamy College of Engineering, Karur, Tamil Nadu, India
     

   Subscribe/Renew Journal


The analysis of potential of microbial population in bioremediation process against industrial effluent is developed using mathematical model. The logistic linear differential equation is derived from the basic principles and formulated for the growth model. This work is important in study of stability of bioremediation process in the certain period of time in the removal of pollutant. The developed model is applied to parameters total, suspended and dissolved solids, biological and chemical oxygen on demand and chloride. Further the untreated and treated effluents were analyzed for effluent tolerance index in the germination of Cajanus cajan (red gram).

Keywords

Marine Streptomyces, Sugar Industry Effluent, Biological Treatment, Mixed Consortium.
User
Subscription Login to verify subscription
Notifications
Font Size

  • “Standard methods for the examination of water and waste water,” American Public Health Association (19th ed.), pp. 10-150, 1998.
  • N. U. Asamudo, A. S. Daba, and O. U. Ezeronye, “Bioremediation of textile effluent using Phanerochaete chrysosporium,” African Journal of Biotechnology, vol. 4, no. 13, pp. 1548-1553, December 2005.
  • G. Innes, “Dynamics analysis in “soft sciences” studies: In defense of different situations,” In: P. V. D. Driessche, (ed.) Mathematical Problems in Biology, Lecture Notes in Biomathematics, vol. 2. pp. 102-122, Springer, Berlin, Heidelberg, 1974.
  • O. Ibrahim, R. Odoh, and N. J. Onyebuchi, “Effect of industrial effluent on the surrounding environment,” Archives of Applied Science Research, vol. 4, no. 1, pp. 406-413, 2012.
  • D. Pant, and A. Adholeya, “Biological approaches for treatment of distillery wastewater: A review,” Bioresource Technology, vol. 98, no. 12, pp. 2321-2334, September 2007.
  • U. N. Rai, S. Sinha, R. D. Tripathi, and P. Chandra, “Waste water treatability potential of some aquatic macrophytes: Removal of heavy metals,” Ecological Engineering, vol. 5, pp. 5-12, 1995.
  • D. Shivappa, E. T. Puttaiah, and B. R. Kiran, “Physico chemical characteristics of sugar mill effluents - current senerio in Bhadrathavathi taluk, Karnataka, India,” Journal of Industrial Pollution Control, vol. 23, pp. 217-221, 2007.
  • D. E. Salt, R. D. Smith, and I. Ruskin, “Phytore-mediation,” Annual Review of Plant Physiology and Molecular Biology, vol. 49, pp. 643-668, 1998.
  • R. K. Trivedi, and P. K. Goel, Chemical and Biological Methods for Water Pollution Studies, Environmental Publications, Karad, pp. 1-209, 1984.
  • S. Kumar, K. K. Dube, and J. P. N. Rai, “Mathematical model for phytoremediation of pulp and paper industry wastewater,” Journal of Scientific and Industrial Research, vol. 64, no. 10, pp. 717-721, October 2005.
  • T. Stalin, B. S. Priya, and K. Selvam, “Biological treatment of sugar industry effluent using Streptomyces albus ACT 6 and Streptomyces clavuligures ACT 9,” Proceedings of National Conference VIBHAVAT- 2, Bengaluru, pp. 178-182, 2015.
  • J. E. Gee, B. K. De, P. N. Levett, A. M. Whitney, R. T. Novak, and T. Popovic, “Use of 16S rRNA gene sequencing for rapid confirmatory identification of Brucella isolates,” Journal of Clinical Microbiology, vol. 42, no. 8, pp. 3649-3654, August 2004.

Abstract Views: 178

PDF Views: 2




  • Mathematical Modeling of Bioremediation Potential of Microbes in Industrial Effluent

Abstract Views: 178  |  PDF Views: 2

Authors

A. Padma
Department of Mathematics, M. Kumarasamy College of Engineering, Karur, Tamil Nadu, India

Abstract


The analysis of potential of microbial population in bioremediation process against industrial effluent is developed using mathematical model. The logistic linear differential equation is derived from the basic principles and formulated for the growth model. This work is important in study of stability of bioremediation process in the certain period of time in the removal of pollutant. The developed model is applied to parameters total, suspended and dissolved solids, biological and chemical oxygen on demand and chloride. Further the untreated and treated effluents were analyzed for effluent tolerance index in the germination of Cajanus cajan (red gram).

Keywords


Marine Streptomyces, Sugar Industry Effluent, Biological Treatment, Mixed Consortium.

References