Home / Chemical engineering / Investigation of Advanced Membrane Technologies for Gas Separation

Investigation of Advanced Membrane Technologies for Gas Separation

 

Table Of Contents


<p>1. Introduction<br>&nbsp; - Importance of gas separation technologies in various industrial applications<br>&nbsp; - Overview of existing membrane-based gas separation methods<br>2. Membrane Materials and Fabrication Techniques<br>&nbsp; - Types of membrane materials for gas separation<br>&nbsp; - Fabrication methods for advanced membrane structures<br>3. Characterization of Novel Membrane Materials<br>&nbsp; - Analytical techniques for membrane characterization<br>&nbsp; - Evaluation of membrane performance and selectivity<br>4. Gas Separation Applications<br>&nbsp; - Natural gas processing and purification<br>&nbsp; - Carbon capture and storage<br>&nbsp; - Hydrogen purification for fuel cell applications<br>5. Performance Optimization and Scale-Up<br>&nbsp; - Strategies for improving membrane performance and durability<br>&nbsp; - Scale-up considerations for industrial gas separation processes<br></p>

Thesis Abstract

<p> This project aims to investigate advanced membrane technologies for gas separation applications, with a focus on the development of high-performance membranes for efficient and selective separation of gas mixtures. The project will involve the synthesis and characterization of novel membrane materials, as well as the evaluation of their performance in various gas separation processes. The findings of this research will contribute to the advancement of membrane-based gas separation technologies with potential applications in natural gas processing, carbon capture, and hydrogen purification. <br></p>

Thesis Overview

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