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  • Format: ePub

Waste Biorefineries: Advanced Design Concepts for Integrated Waste to Energy Processes presents a detailed guide to the design of energy-efficient and cost-effective waste-integrated biorefineries. Integrating thermochemical processing of waste with existing waste-to-energy technologies, the book includes the latest developments and technologies. It introduces current waste valorization techniques and examines reasons to modify existing waste-to-energy systems through the integration of new processes. In addition, the book explains the design of novel biorefineries and methods to assess these…mehr

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Produktbeschreibung
Waste Biorefineries: Advanced Design Concepts for Integrated Waste to Energy Processes presents a detailed guide to the design of energy-efficient and cost-effective waste-integrated biorefineries. Integrating thermochemical processing of waste with existing waste-to-energy technologies, the book includes the latest developments and technologies. It introduces current waste valorization techniques and examines reasons to modify existing waste-to-energy systems through the integration of new processes. In addition, the book explains the design of novel biorefineries and methods to assess these processes alongside detailed results, including the integration of waste-based CHP plants with waste gasification and the integration of pyrolysis technologies and biogas plants with waste thermochemical processing.

Other sections discuss the issues and challenges of commercializing waste-to-energy technologies, including uncertainty in waste thermochemical process designs, the environmental impact of waste-integrated biorefineries, and the role of integrated waste-to-energy management in smart cities and urban energy systems. This book will be an invaluable reference for students, researchers and those in industry who are interested in the design and implementation of waste-to-energy systems, waste biomass-based combined heat and power plants, biogas plants and forest-based industries.
  • Presents advanced and novel waste conversion processes and provides the tools, data and models for waste-to-energy processes and waste biorefineries availability
  • Provides comprehensive uncertainty analysis of waste-to-energy designs and modelling processes
  • Examines the replicability potential of methods for the design of waste biorefineries for different regions and markets with different sets of products

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Autorenporträt
Dr. Prof. Jinyue Yan, Fellow of European Academy of Sciences, KTH-Royal Institute of Technology and Mälardalen University, Sweden. Prof. Yan is the EiC of Elsevier's journal Advances in Applied Energy and has served as the editorial board members for many prestigious journals such as Energy, Energy Conversion and Management, Journal of Energy Storage, International Journal of Energy Research and etc. Prof. Yan has published more than 400 journal in the field of solar thermal energy utilization, large-scale renewable energy systems.