Anindya Ghosh
Tata Steel, Indian Institute of Technology (Indian School of Mines), Dhanbad, Indian Institute of Technology (Indian School of Mines) Dhanbad, Asutosh College, Calcutta University
About
Dr. Anindya Ghosh is an accomplished researcher specializing in heterogeneous catalysis for CO2 fixation and biomass conversion. With a proven track record, he designs innovative routes for synthesizing solid carbon, silica-based and metallurgical waste derived catalysts, employing various synthesis methods. Proficient in synthesizing catalysts like carbon based materials, factionalized or supported silica through diverse techniques, he excels in characterizations such as XRD, N2-adsorption/desorption, FESEM, HRTEM, XPS, TPx and more. Dr. Ghosh's expertise extends to vapour and gas phase reactions like glycerol dehydration and reforming, CO2 hydrogenation and CO2-mediated oxidative dehydrogenation. His hands-on experience encompasses analytical tools for product separation, catalyst characterization, and catalytical activity testing units. Currently, a key part of his work involves scaling up lab-scale catalysts for industrial applications, giving valuable insights into translating fundamental research into pilot-scale operations.
Employment
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Tata Steel Research Associate2023 - Present
Education
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Indian Institute of Technology (Indian School of Mines), Dhanbad Ph.D.2016 - 2022
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Indian Institute of Technology (Indian School of Mines) Dhanbad M. Sc2014 - 2016
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Asutosh College, Calcutta University B.Sc2010 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (13)
- Carbon-Induced Crystallization of SiO2 at Low Temperature: N-Doped Carbon-Modified α-Cristobalite as a Photocatalyst for CO2 Conversion Save
- Review on the recent advances in catalytic conversion of carbon dioxide for synthesis of cyclic propylene carbonate Save
- CO2 to dimethyl ether (DME): structural and functional insights of hybrid catalysts Save
- Influence of heteroatom-doped Fe-carbon sphere catalysts on CO2- mediated oxidative dehydrogenation of ethylbenzene Save
- Soft-templating routes for the synthesis of mesoporous tantalum phosphates and their catalytic activity in glycerol dehydration and carbonylation reactions Save
- Fabrication of a hollow sphere N,S co-doped bifunctional carbon catalyst for sustainable fixation of CO2 to cyclic carbonates Save
- Cross-Linked Porous Polymers as Heterogeneous Organocatalysts for Task-Specific Applications in Biomass Transformations, CO2 Fixation, and Asymmetric Reactions Save
- CO2 hydrogenation over functional nanoporous polymers and metal-organic frameworks Save
- Catalytic Conversion of Biomass-Derived Glycerol to Value-Added Chemicals Save
- Catalytic conversion of biomass-derived glycerol to value-added chemicals Save