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Multi-Layer Composite (MLC) Membranes for Gas Separation : Volume 1: A Fundamental Overview / edited by Sarah Farrukh, Syed Shujaat Karim, Xianfeng Fan, Zhibin Yu.

Springer eBooks EBA - Energy Collection 2025 Available online

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Format:
Book
Contributor:
Farrukh, Sarah., Editor.
Karim, Syed Shujaat., Editor.
Fan, Xianfeng., Editor.
Yu, Zhibin, Editor.
Series:
Lecture Notes in Energy, 2195-1292 ; 102
Language:
English
Subjects (All):
Cogeneration of electric power and heat.
Fossil fuels.
Composite materials.
Chemical engineering.
Fossil Fuel.
Composites.
Chemical Engineering.
Local Subjects:
Fossil Fuel.
Composites.
Chemical Engineering.
Physical Description:
1 online resource (IX, 191 p. 49 illus., 42 illus. in color.)
Edition:
1st ed. 2025.
Place of Publication:
Cham : Springer Nature Switzerland : Imprint: Springer, 2025.
Summary:
This book offers an in-depth exploration of the fundamentals of multi-layer composite (MLC) membranes for the gas separation applications. It provides a comprehensive overview of MLC membranes, including their historical development, structural features, fabrication techniques, selection criteria, mathematical models for gas transport, gas separation mechanisms, characterization methods, detailed adsorption mechanisms, current challenges, and future trends in gas separation technology. Serving as a valuable reference, this book is designed for materials scientists, environmental engineers, and chemical engineers seeking fundamental insights into the effective utilization of MLC membranes for energy-efficient gas separation processes.
Contents:
Chapter 1 - Introduction
Chapter 2 – Synthesis Methods and Characterization Techniques of Multi-layer Composite (MLC) Membranes
Chapter 3 – Multi-layer composite (MLC) Membranes Gas Transport Models and Separation Mechanisms
Chapter 4 – Multi-layer composite (MLC) Membranes For Methane Purification (CO2/CH4)
Chapter 5 - Multi-layer composite (MLC) Membranes For Hydrogen Purification
Chapter 6 - Multi-layer composite (MLC) Membranes For Post-Combustion Carbon Capture (CO2/N2)
Chapter 7 - Multi-layer composite (MLC) Membranes For Air Separation (O2/N2)
Chapter 8 - Multi-layer composite (MLC) Membranes For Helium Enrichment
Chapter 9 – Computational Approaches On Multi-layer composite (MLC) Membrane-based Gas Separation
Chapter 10 – Current Challenges and Future Prospect/Trends
Chapter 11 – Conclusion.
Notes:
Description based on publisher supplied metadata and other sources.
ISBN:
3-031-86402-6
OCLC:
1522485425

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