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Full Description
High-Value Bioenergy Recovery from Wastewater explores the innovative advancements in converting municipal sewage into valuable bioenergy resources. This comprehensive reference delves into the latest scientific principles and technological solutions that enable the efficient extraction of high-value liquid, colloid, and solid bioenergy from wastewater treatment processes. By presenting effective methods for bioenergy collection, storage, and transportation, the book addresses the growing need for sustainable and economically viable energy solutions in urban environments. It serves as a critical resource for researchers, engineers, and industry professionals, offering insights that bridge the gap between academic research and practical applications.
The book is organized into four distinct sections: it begins by evaluating the potential of high-value bioenergy sources within sewage, then explains the underlying science and technical aspects of both liquid and solid bioenergy recovery. The final section presents integrated recovery modules, providing a holistic approach to maximizing energy extraction.
Contents
Part I: Potential high-value bioenergy from sewage
1. Sewage as a bioenergy resource pool
2. Sewage sludge compositions and its bioenergy recovery potential
Part II: High-value liquid bioenergy recovery: Science and technical module
3. Short-chain fatty acids recovery from sewage sludge
4. Bioconversion of methane to short-chain fatty acids
5. Medium-chain fatty acids production from sewage sludge
6. Long-chain alcohols production from sewage sludge
7. Biolipid production from sewage cultivated microalgae and sludge
Part III: High-value colloid and solid bioenergy recovery: Science and technical module
8. Cellulose recovery from sewage sludge
9. Microbial protein recovery from sewage
10. Extracellular polymers recovery from sewage sludge
11. Organic fertilizers production from sewage sludge
12. Plant-growth biostimulants production from sewage sludge
Part IV: Integrated modules for high-value bioenergy recovery
13. Scale-up/pilot scale studies and development for high-value bioenergy recovery in MSTP
14. Life-cycle assessment for single and integrated recovery module



