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Current Trends and Future Developments in (Bio-) Membranes: Cogeneration Systems and Membrane Technology offers an exhaustive overview of the status of cogeneration systems as they relate to advanced membrane technologies for energy savings. The different options for cogeneration are analyzed, both for large (district) and small (residential) size units, with different primary fuels. Energy efficiency is reported and lifecycle analysis is carried out for all different options. The book outlines strategies for engineering development and process intensification of interest to both industrial and developing countries. Finally, the book includes three chapters on lifecycle analysis (LCA) and economic analysis.
- Provides an overview of the interconnections between membrane technology and the systems used for the cogeneration of electricity, such as exhaust gas cleaning, carbon capture and sequestration, and low temperature fuel cells- Includes two different studies on LCA and a case study on economic analysis- Presents comprehensive reviews on various traditional cogeneration systems and compares them to alternative membrane-based technologies- Covers membrane based technologies and their application in co-generation systems- Addresses key issues on the introduction of process intensification in energy production
1. Cogeneration plants for district heating (and cooling)2. The application of membranes in district energy systems3. Impact assessment of exhaust gas emissions from cogeneration PEMFC systems4. Conventional systems for exhaust gas cleaning and carbon capture and sequestration5. Development of membrane technologies for exhaust gas cleaning and carbon capture and sequestration6. Life Cycle Assessment of tri-generation plants7. Residential cogeneration and trigeneration8. Integrated membrane-assisted reforming in fuel processors for cogeneration applications9. Residential cogeneration and trigeneration with fuel cells10. Solar reformers coupled with PEMFCs for residential cogeneration and trigeneration applications11. Conventional syngas cleaning systems for low temperature fuel cells12. Development of membrane technologies for H2 production in reforming process for low temperature13. Case study: Economic assesment of co-generation fuel and electricity in an IGCC plant.