Selected Publications

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  1. MahendraNandanwar and SanjeevKumar (2016), Charge coup de fouet phenomenon in soluble lead redox flow battery, Chemcial Engineering Science, 154 61-71.


  2. Ramana Reddy, S. Prakash and Sanjeev Kumar (2015), Phase Inversion of Agitated Liquid-Liquid Dispersions in the Presence of Micrometer-Sized Particles, Ind Eng Chem, 54 10502-10509.


  3. Perala S R K and Kumar, S.(2014).On the Two-Step Mechanism for Synthesis of Transition-Meal Nanoparticles. Langmuir ------.
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  4. Nandanwar M. N. and Kumar, S.(2014). Modelling of Effect of Non-uniform Current Density on the Performance of Soluble Lead Redox Flow Batteries. J. Electrochem. Society 161(10), A1602-A1610.
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  5. Perala, S. R. K. and Kumar, S.(2013). On the Mechanism of Phase Transfer Catalysis in Brust-Schiffrin Synthesis of Metal Nanoparticles. Langmuir 29, 14756-14762.
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  6. Perala, S. R. K. and Kumar, S.(2013). On the Mechanism of Nanoparticle Synthesis in Brust-Schiffrin Method. Langmuir 29, 9863-9873.
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  7. Chakraborty J. and Kumar, S. (2007). A new framework for solution of multidimensional population balance equations. Chem. Eng. Sci. 62, 4112-4125.
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  8. Reddy, R. and Kumar, S. (2007). Dispersal of sticky particles. Europhys. Lett. 80, Art. 56001.
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  9. Kumar, S. Gandhi, K. S. and Kumar, R. (2007). Modeling of formation of gold nanoparticles by citrate method. Ind. Eng. Chem. Res. 46, 3128-3136.
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  10. Kumar, S. and Tulasi, G. L. (2005). Aggregation vs. breakup of the organic phase complex. Hydrometallurgy 78, 79-91.
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  11. Kumar, S. and Ramkrishna, D. (1996). On the solution of population balance equations by discretization - I. A fixed pivot technique. Chem. Eng. Sci. 51, 1311-1332.
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  12. Kumar, S., Kumar, R. and Gandhi, K. S. (1991). Alternative mechanisms of drop breakage in stirred vessels. Chem. Eng. Sci. 46, 2483-2489.
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