Selvaraju Narayanasamy
Indian Institute of Technology Guwahati, National Institute of Technology, Indian Institute of Technology Madras
About
My current research area focuses on environmental bioremediation, particularly in Adsorption/Biosorption, Advanced Oxidation Processes (AOP), and biological strategies. With extensive experience in Bioaerosol modeling, Microfluidics, and Micro Reactors for liquid-liquid operations. Holding a Ph.D. in Chemical Engineering from the esteemed Indian Institute of Technology, Madras, I have contributed to reputable journals and earned the prestigious National Doctoral Fellowship (NDF) from the All-India Council for Technical Education (AICTE), recognizing my position among the top 50 research scholars in India.
Employment
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Indian Institute of Technology Guwahati Associate Professor2021 - Present
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Indian Institute of Technology Guwahati Assistant Professor2017 - 2021
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National Institute of Technology Assistant Professor2010 - 2017
Education
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Indian Institute of Technology Madras Ph.D2005 - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (153)
- Metalloprotein-Inspired UiO-66 Traps for Heavy Metal Removal: An Exploration of Interfacial Dynamics Save
- Heterogeneous biochar-based catalytic advanced oxidation of emerging contaminants: Detailed synergy and radical generation mechanism Save
- Unveiling the photocatalytic potential of mesoporous carbon nitride in environmental applications: Properties, synthesis and doping strategies Save
- Assessment of cerium adsorption potential of phosphoric acid activated biochar in aqueous system: Modelling and mechanistic insights Save
- Heteroatom doped biochar-aluminosilicate composite as a green alternative for the removal of hazardous dyes: Functional characterization and modeling studies Save
- Harnessing the Chemical Functionality of Metal–Organic Frameworks Toward Removal of Aqueous Pollutants Save
- Performance analysis of hydrochar derived from catalytic hydrothermal carbonization in the multicomponent emerging contaminant systems: Selectivity and modeling studies Save
- Fabrication of a novel bio-polymer adsorbent with high adsorptive capacity towards organic dyes Save
- UiO-66 octahedrons for adsorptive removal of direct blue-6: process optimization, interaction mechanism, and phytotoxicity assessment Save
- A review on the laccase assisted decolourization of dyes: Recent trends and research progress Save