About
I have always loved mathematics, biology, and computers, and to combine them at the molecular level in the study of biological systems is a truly fascinating area of research. While doing my Bachelor’s in engineering, I was enthralled by computational systems that could model biological activity and simulate their response under different operational conditions. I learned programming to understand the codes that model biological functions in order to create the environment that would mimic real time systems and explain complexities of the biological phenomenon. Through my research experiences in college and during doctoral research work, I learned that studying the genomics of microbial systems allows one to address many real life problems and help tune the microbe to our own benefits for production of valuable commodity products by greener non-synthetic routes.
Employment
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Indian Institute of Petroleum CSIR Principal Scientist2011 - Present
Education
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Indian Institute of Petroleum CSIR Ph.D.2012 - 2017
Projects & Funding
Projects & funding information is unavailable.
Publications (23)
- Nanoparticles: balancing benefits, ecological risks, and remediation approaches Save
- Recent Advances in the Detection of Food Toxins Using Mass Spectrometry Save
- Energy and life cycle impact assessment for xylitol production from corncob Save
- Connecting the dots: Advances in modern metabolomics and its application in yeast system Save
- Effect of utilization of crude glycerol as substrate on fatty acid composition of an oleaginous yeast Rhodotorula mucilagenosa IIPL32: Assessment of nutritional indices Save
- Scale-up strategy for yeast single cell oil production for Rhodotorula mucilagenosa IIPL32 from corn cob derived pentosan Save
- Xylitol production from lignocellulosic pentosans using Kluyveromyces marxianus: kinetic modelling of yeast growth and fermentation Save
- Yeast lipid-based biofuels and oleochemicals from lignocellulosic biomass: life cycle impact assessment Save
- Xylitol Production from Lignocellulosic Pentosans: A Rational Strain Engineering Approach toward a Multiproduct Biorefinery Save
- Converting lignocellulosic pentosan-derived yeast single cell oil into aromatics: Biomass to bio-BTX Save