Ranjeet Kumar Mishra
Manipal Academy of Higher Education, Ramaiah Institute Of Technology, Indian Institute of Technology Guwahati, University of Guelph
About
Dr. Ranjeet Kumar Mishra received his Ph.D. from the Indian Institute of Technology Guwahati, India in the year 2019 in Chemical Engineering. Dr. Mishra worked as a post-doctoral fellow at Indian Institute of Technology Madras, Chennai, India, and University of Guelph Canada. Currently, Dr. Mishra is working as an Associate Professor in Department of Chemical Engineering, Manipal Institute of Technology, Manipal Udupi Karnataka, India. His current research area is focused on the production of biochar and biofuel from biomass and plastics. Also, he has rich experience in the production of biocarbon from waste biomass and plastics using slow pyrolysis, hydrothermal liquefaction of biomass and plastics, fast and slow pyrolysis of biomass and plastics, catalysts, nanotechnology, adsorption, water, and wastewater treatment, carbon sequestration, Techno-economic analysis, and life cycle assessment of carbon capture process, Development of carbon capture materials from organic materials etc. Dr. Mishra has published more than 53 peer-reviewed international journals and 09 book chapters. Dr. Mishra also won a highly cited research article from Bioresource
Technology Journal Elsevier in the year 2018. Also, Dr. Mishra is associated with many
journals related to energy, biochar, and biofuel.
Employment
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Manipal Academy of Higher Education Associate Professor2023 - Present
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Ramaiah Institute Of Technology Assistant Professor2021 - Present
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University of Guelph Post Doctoral Fellow
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Satyoug Darshan Technical Campus
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Indian Institute of Technology Madras Post Doctoral Fellow
Education
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Ramaiah Institute Of Technology Ph.D2014 - 2019
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Indian Institute of Technology Guwahati PhD2014 - 2019
Projects & Funding
Projects & funding information is unavailable.
Publications (70)
- Thermochemical conversion of Nahar non-edible oilseed and garlic husk: a kinetic and thermodynamic analysis Save
- Thermo-catalytic co-pyrolysis of waste pods and natural black rubber: Effect of temperature and catalysts on the yield and properties of pyrolysis oil Save
- Thermochemical upcycling of paper-mill waste into hydrocarbon-rich fuels and functional char for rubber reinforcement Save
- Sustainable green synthesis of TiO2 nanoparticles using the Azolla pinnata plant for enhanced photocatalytic and antimicrobial activity Save
- Recent advances in lignin-based carbon materials for pollutant removal and oil–water separation: a review Save
- Mineral-driven pyrolysis chemistry and temperature-dependent pyrolysis of textile wastewater sludge: kinetics, reaction pathways, and char functionality Save
- Integrated pyrolysis of pine needles and cashewnut shells: optimizing process conditions for the production of renewable fuel and value-added chemicals Save
- Green-engineered agricultural-based nano-adsorbent for efficient Cr(vi) removal: batch mechanisms and continuous column performance Save
- Co-pyrolysis of mixed municipal solid waste components in a semi-pilot scale rotary kiln: synergistic effects on pyrolysis oil and biochar properties Save
- Agricultural biomass pyrolysis for energy production Save