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Investigation of Novel Separation Techniques for Industrial Applications

 

Table Of Contents


<p>1. Introduction<br>&nbsp; 1.1 Significance of Separation Processes in Industrial Applications<br>&nbsp; 1.2 Objectives of the Project<br>2. Fundamentals of Separation Techniques<br>&nbsp; 2.1 Membrane Separation Processes<br>&nbsp; 2.2 Adsorption and Ion Exchange<br>&nbsp; 2.3 Hybrid Separation Systems<br>3. Advanced Membrane Technologies<br>&nbsp; 3.1 Membrane Materials and Fabrication Techniques<br>&nbsp; 3.2 Membrane Characterization and Performance Evaluation<br>4. Adsorption Processes for Industrial Separations<br>&nbsp; 4.1 Adsorbent Materials and Surface Chemistry<br>&nbsp; 4.2 Dynamic Adsorption and Regeneration Processes<br>5. Hybrid Separation Systems<br>&nbsp; 5.1 Integration of Multiple Separation Techniques<br>&nbsp; 5.2 Process Design and Optimization<br></p>

Thesis Abstract

<p> Separation processes are integral to various industrial sectors, including chemical, pharmaceutical, and environmental industries. This project aims to investigate novel separation techniques for industrial applications, focusing on the development of advanced membrane technologies, adsorption processes, and hybrid separation systems. The project will involve experimental characterization, computational modeling, and process optimization to evaluate the performance and feasibility of novel separation techniques in industrial settings. <br></p>

Thesis Overview

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