<p>1. Introduction<br> 1.1 Background and Significance of Gas Separation Membranes<br> 1.2 Objectives of the Study<br>2. Literature Review<br> 2.1 Overview of Gas Separation Membrane Technologies<br> 2.2 Membrane Materials and Fabrication Techniques<br> 2.3 Integration of Membrane Processes in Gas Separation Applications<br>3. Experimental Methodology<br> 3.1 Selection of Gas Separation Membrane Materials<br> 3.2 Membrane Fabrication and Characterization<br> 3.3 Performance Evaluation in Gas Separation Applications<br>4. Results and Discussion<br> 4.1 Characterization of Novel Membrane Materials<br> 4.2 Gas Separation Performance and Selectivity<br> 4.3 Integration with Existing Gas Separation Technologies<br>5. Conclusions and Recommendations<br> 5.1 Summary of Findings<br> 5.2 Implications for Energy-Efficient Gas Separation<br> 5.3 Recommendations for Further Research and Industrial Implementation<br></p>
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