Dr. Baskaran Sivaprakash
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Dr. Baskaran Sivaprakash

Associate Professor
Department of Chemical Engineering, Annamalai University, Annamalainagar, India


Highest Degree
Ph.D. in Chemistry from Annamalai University, Tamil Nadu, India

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Area of Interest:

Chemistry
100%
Simulation
62%
Chemical Reaction
90%
Heat Transfer
75%
Thermodynamics
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
43
Abstracts
34

Selected Publications

  1. Manojkumar, M.S. and B. Sivaprakash, 2018. Vapour liquid equilibrium model testing based on activity coefficient models applied to binary azeotropic systems. Int. J. Chem. Res., 11: 362-376.
  2. Manojkumar, M.S. and B. Sivaprakash, 2018. VLE prediction of azeotropic systems using UNIQUAC and UNIFAC models and experimental validation using othmer VLE still. Res. J. Applied Sci., 13: 216-224.
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  3. Manojkumar, M.S. and B. Sivaprakash, 2018. Thermodynamic analysis of azeotropic mixtures for vapour liquid equilibrium determination-experimental and theoretical studies. J. Applied Sci. Res., 13: 12-24.
  4. Manojkumar, M.S. and B. Sivaprakash, 2018. Estimation of thermodynamics models for azeotropic systems using data assessment and thermodynamic consistency test. Int. J. Sci. Res. Sci. Eng. Technol., 4: 425-436.
  5. Manojkumar, M.S. and B. Sivaprakash, 2018. Application of activity coefficient models in vle determination for azeotropic systems using othmer type ebulliometer. Int. J. Rec. Trend Eng. Res., 4: 338-348.
  6. Sirajunisa A.R., V. Vijayagopal, B. Sivaprakash, T. Viruthagiri and D. Surendhiran, 2016. Optimization, kinetics and antioxidant activity of exopolysaccharide produced from rhizosphere isolate, Pseudomonas fluorescens CrN6. Carbohydr. Polym., 135: 35-43.
  7. Surendhiran, D., M. Vijay, B. Sivaprakash and A. Surajunnisa, 2015. Kinetic modeling of microalgal growth and lipid synthesis for biodiesel production. 3 Biotech, 5: 663-669.
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  8. Rajamohan, N., M. Rajasimman, R. Rajeshkannan and B. Sivaprakash, 2014. Uptake of Ni (II) from aqueous solutions using protonated macrophyte biomass - equilibrium studies. Int. J. Environ. Waste Manage., 14: 14-26.
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  9. Rajamohan, N., M. Rajasimman, R. Rajeshkannan and B. Sivaprakash, 2013. Kinetic modelling and isotherm studies on a batch removal of acid red 114 by an activated plant biomass. J. Eng. Sci. Technol., 8: 778-792.
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  10. Sivaprakash, B. and N. Rajamohan, 2011. Equilibrium and Kinetic studies on the biosorption of As (III) and As (V) by the marine algae Turbinaria conoides. Res. J. Environ. Sci., 5: 779-789.
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  11. Sivaprakash, B, T. Karunanithi and S. Jayalakshmi, 2011. Modeling of microbial interactions using software and simulation of stable operating conditions in a chemostat. Int. Conf. Technol. Syst. Manage., 2011: 15-21.
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  12. Sivaprakash, B., N. Rajamohan and A.M. Sadhik, 2010. Batch and column sorption of heavy metal from aqueous solution using a marine alga Sargassum tenerrimum. Int. J. Chem. Tech. Res., 2: 155-162.
  13. Rajeshkannan, R., N. Rajamohan, M. Rajasimman and B. Sivaprakash, 2010. Equilibrium and Kinetic Studies on Sorption of Malachite Green Using Hydrilla Verticillata Biomass. Int. J. Environ. Res., 4: 817-824.
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  14. Rajamohan, N. and B. Sivaprakash, 2010. Biosorption of inorganic mercury onto marine alga Sargassum tenerrimum: Batch and column studies. Int. J. Environ. Technol. Manage., 12: 229-239.
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  15. Kannan, R.R., M. Rajasimman, N. Rajamohan and B. Sivaprakash, 2010. Brown marine algae Turbinaria conoides as biosorbent for Malachite green removal: Equilibrium and kinetic modeling. Front. Environ. Sci. Eng. China, 4: 116-122.
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  16. Sivaprakash. B and T. Karunanithi, 2009. Modelling of interaction between Schizosaccharomyces pombe and Saccharomyces cerevisiae to predict stable operating conditions in a Chemostat, Int. J. Chem. Tech. Res., 1: 338-343.
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  17. Sivaprakash. B. and T. Karunanithi, 2008. Modelling of Microbial Interactions to predict the dilution rates for coexistence of two microbial populations in a chemostat. Ecoscan, 2: 99-105.
  18. Rajamohan, N. and B. Sivaparakash, 2008. Biosorption of heavy metal using brown seaweed in a regenerable continuous column. Asia-Pacific J. Chem. Eng., 3: 572-578.
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