Energy Blog
CO2 Capture Using Zeolite Membrane
The excessive emission of CO2 is a major cause of Global Warming, which can be reduced by cutting down the combustion of Fossil Fuels. Membrane Separation using Zeolites offers an energy efficient way to capture CO2 compared to conventional techniques such as Amine Absorption.
Dense Electrodes
With the rapid development of mobile electronics and electric vehicles, future Electrochemical Capacitors (ECs) need to store as much energy as possible in a rather limited space.
Hydrogen Fuel Cell
Hydrogen Fuel Cells generate electricity using a chemical reaction. Each Fuel Cell has two electrodes i.e. Anode and Cathode. The reaction to generate the electricity occurs at these electrodes
Methods for Battery Separator Characterization
Separator is an important component of Li-ion battery which is mainly a Polymeric Membrane forming microporous layer having chemical and electrochemical stability along with being mechanically
Hydrogen Fuel for Sustainable Development
Hydrogen is a clean alternative to Natural Gas. It's the most abundant chemical element of the universe. On earth, vast amounts of Hydrogen Atoms are contained in water, plants, animals, land etc.
Composite Membranes Using Hydrophilized Porous Substrates
Recently Proton Exchange Membrane (PEM) development has shifted from more proton conductivity to more proton conductance at relative low humidity and higher temperature.
Essential Energy Storage for Sustainability
This Blog emphasizes energy storage's role in sustainable power systems, citing economic viability and longevity for cleaner energy future.
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