Mamleshwar Kumar
Indian Institute of Technology Roorkee, Indian Institute of Technology Guwahati, Harcourt Butler Technical University
About
With over 6 years of dedicated research experience in hydrogen generation and storage, particularly focused on its application as a fuel, I bring a wealth of expertise to the field. My Ph.D. work at the esteemed Indian Institute of Technology, Roorkee, has centered on advancing our understanding of hydrogen generation and storage from metal hydrides, employing a thermolytic approach as the cornerstone of my research methodology.
My proficiency extends across various domains, including materials synthesis and a suite of surface/interface characterization techniques such as XRD, TDA-TGA, SEM, TEM, in-situ Raman spectroscopy, in-situ FT-IR, and GC. I am also adept at utilizing essential software tools like Microsoft Office, Chem-Draw, Origin Pro, ASPEN Plus, COMSOL, and MATLAB, enabling me to analyze data and model complex systems effectively.
Moreover, my collaborative spirit and leadership skills have been honed through successful engagement with multi-disciplinary teams, where I have led and mentored six engineering graduates/researchers. This experience underscores my ability to foster synergy among team members and oversee projects with efficiency and effectiveness.
Driven by a passion for advancing renewable energy solutions, I am committed to leveraging my expertise in hydrogen-related technologies to contribute meaningfully to the field. With a solid foundation built over years of dedicated research, I am poised to make valuable contributions to the advancement of renewable energy and fuel applications.
Employment
Employment history is unavailable.
Education
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Indian Institute of Technology Roorkee Doctor of Philosophy2018 - 2024
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Indian Institute of Technology Guwahati Master of Technology2016 - 2018
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Harcourt Butler Technical University Bachelor of Technology2011 - 2015
Projects & Funding
Projects & funding information is unavailable.
Publications (6)
- Study on the catalytic thermal decomposition of metal-hydride (NaH) to enhance the hydrogen desorption characteristics Save
- Effect of the Temperature and Pressure on Hydrogen Generation from Sodium Borohydride by Thermolysis Using a Catalyst Save
- Graphene growth via chemical vapour deposition on cross-rolled surface-textured nickel-copper foils Save
- Comprehensive study of the kinetics of combustion and pyrolysis of petrochemical sludge: Experimentation and application of artificial neural network Save
- Hydrogen generation from metal chloride doped sodium-borohydride by thermolysis at low temperature: The effect of material preparation methods Save
- Generation of hydrogen from sodium borohydride at low temperature using metal halides additive Save