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Full Description
Hybrid Membrane Technology: Innovations and Applications: Current Trends and Future Developments in Bio-Membranes explores the latest advancements in membrane technology, merging traditional methods with innovative hybrid systems to address contemporary challenges. The book delves into the principles, innovations, and practical applications of hybrid membranes across diverse industries, including water treatment, energy, pharmaceuticals, and food processing. It provides in-depth coverage of emerging materials, fabrication techniques, and performance enhancements. The book is structured into six parts, beginning with an introduction to hybrid membrane technology, covering the evolution, importance, and types of membranes. It then delves into materials and fabrication techniques, detailing organic, inorganic, and nanomaterials, alongside advanced manufacturing methods. Subsequent sections focus on characterization and performance evaluation, exploring structural, thermal, and mechanical properties, followed by a comprehensive examination of various hybrid membrane types and their applications in water treatment, gas separation, energy, and biomedical fields. The final sections highlight recent innovations, challenges, and future directions in hybrid membrane research. Hybrid Membrane Technology: Innovations and Applications: Current Trends and Future Developments in Bio-Membranes is a vital resource for a diverse audience, including researchers, engineers, and professionals in fields such as environmental science, chemical engineering, materials science, and biomedical engineering.
Contents
Part I: Introduction to Hybrid Membrane Technology
1. Overview of Membrane Technology
2. Fundamentals of Hybrid Membranes
Part II: Materials and Fabrication Techniques
3. Materials for Hybrid Membranes
4. Fabrication Methods
Part III: Characterization and Performance Evaluation
5. Structural and Morphological Characterization
6. Thermal and Mechanical Characterization
7. Surface and Chemical Properties
8. Performance Evaluation
Part IV: Types of Hybrid Membranes
9. Polymer-Inorganic Hybrid Membranes
10. Biopolymer-Inorganic Hybrid Membranes
11. Other Hybrid Membrane Types
Part V: Applications of Hybrid Membranes
12. Water Treatment Technologies
13. Gas Separation Technologies
14. Energy Applications
15. Biomedical Applications
Part VI: Innovations and Future Directions
16. Recent Innovations in Hybrid Membrane Technology
17. Challenges and Opportunities
18. Future Directions in Hybrid Membrane Research



