Riya Chatterjee
Pharmaceutical Product Development Inc, Catalent (United States), University of Mississippi, University of Calcutta University College of Science Technology and Agriculture
About
Senior scientist with extensive research experiences in chemical, environmental and biophysical engineering. The major focus of my research includes climate change and mitigation with emphasis on treatment of wastewater and greenhouse gas reduction by synthesizing novel bioadsorbent from carbon- based materials. Additionally, I also studied mass spectrometry based lipidomics to understand the role of specific lipids and their metabolities as therapeutics in heart failure prevention. I have extensive hands-on experience in laboratory information from management systems (LIMSs) and automated laboratory instruments, material characterization and property-analysis using chromatography (HPLC), tandem mass spectrometry (MS-MS), electron microscopy (SEM, TEM), spectroscopy (IR, UV/Vis). I am highly efficient in analytical, chemical, and bioanalytical method development and validation.
Employment
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Pharmaceutical Product Development Inc Senior Scientist2021 - Present
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Catalent (United States) Associate III2021 - 2021
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University of South Florida Postdoctoral Research2020 - 2021
Education
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University of Mississippi PhD2016 - 2020
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University of Calcutta University College of Science Technology and Agriculture MS2014 - 2016
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West Bengal University of Technology BS2008 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (10)
- Effect of Pyrolysis Temperature on PhysicoChemical Properties and Acoustic-Based Amination of Biochar for Efficient CO2 Adsorption Save
- Impact of Biomass Sources on Acoustic-Based Chemical Functionalization of Biochars for Improved CO2 Adsorption Save
- Acoustic Treatment of a Coal Gasification Residue for Extraction of Selenium Save
- Low Frequency Ultrasound Enhanced Dual Amination of Biochar: A Nitrogen-Enriched Sorbent for CO2 Capture Save
- Ultrasound-assisted amine functionalized graphene oxide for enhanced CO2 adsorption Save
- Ultrasound activation followed by amine functionalization: An efficient strategy for CO2 capture by biochar Save
- Ultrasound cavitation intensified amine functionalization: A feasible strategy for enhancing CO2 capture capacity of biochar Save
- CO2 capture by ultrasonicated amine-functionalized graphene oxide as a model for biochar Save
- Development of magnetic biochar for water purification Save
- Synergistic processes in early-etage acoustic treatment of biochar in CO2 and water Save