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Innovative Energy Conversion from Biomass Waste

Editat de Arif Darmawan, Muhammad Aziz
en Limba Engleză Paperback – 25 aug 2021
Innovative Energy Conversion from Biomass Wasteoffers a new approach to optimizing energy recovery from waste using thermochemical conversion. Instead of conventional pinch technology, the book proposes integrated systems employing exergy recovery and process integration technologies to minimize exergy loss due to entropy generation. This innovative approach is demonstrated in three case studies using high-potential low-rank fuels from industrial waste products with high moisture content, high volatile matter, and high hemicellulose content. From these case studies, readers are provided with three different examples of biomass type, pre-treatment route, and conversion, from fruit bunch cofired within existing coal power plants, black liquor in a stand-alone system, and rice waste processing integrated into existing agricultural systems.
Innovative Energy Conversion from Biomass Wasteis a valuable resource for researchers and practitioners alike, and will be of interest to environmental scientists, biotechnologists, and chemical engineers working in waste-to-energy and renewable energy.


  • Provides a new approach to developing systems based on exergy recovery and process integration technologies
  • Discusses the possible routes of energy recovery in different scenarios from selected low-rank fuels from industrial waste biomass
  • Includes a replicable and applicable efficiency improvement method for different process developments
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Specificații

ISBN-13: 9780323854771
ISBN-10: 032385477X
Pagini: 238
Dimensiuni: 152 x 229 mm
Greutate: 0.32 kg
Editura: ELSEVIER SCIENCE

Public țintă

Researchers and practitioners working in the areas of Waste-to-Energy, Renewable Energy, including Environmental Scientists, Biotechnologists, and Chemical Engineers

Cuprins

    1. An overview of biomass waste utilization Arif Darmawan and Muhammad Aziz
    2. Process and products of biomass conversion technology Arif Darmawan and Muhammad Aziz
    3. Application of exergy analysis and enhanced process integration Arif Darmawan and Muhammad Aziz
    4. Proposed integrated system from black liquor Arif Darmawan, Muhammad Aziz and Koji Tokimatsu
    5. Integrated ammonia production from the empty fruit bunch Arif Darmawan, Muhammad Aziz, Muhammad W. Ajiwibowo, Muhammad Kunta Biddinika, Koji Tokimatsu and Baskoro Lokahita
    6. Integrated systems from agricultural waste for power generation Arif Darmawan, Muhammad Aziz, Muhammad Kunta Biddinika and Koji Tokimatsu
    7. Exergoeconomic, exergoenvironmental, and conclusion
  1. Arif Darmawan and Muhammad Aziz


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Descriere

Innovative Energy Conversion from Biomass Waste offers a new approach to optimizing energy recovery from waste using thermochemical conversion. Instead of conventional pinch technology, the book proposes integrated systems employing exergy recovery and process integration technologies to minimize exergy loss due to entropy generation. This innovative approach is demonstrated in three case studies using high-potential low-rank fuels from industrial waste products with high moisture content, high volatile matter, and high hemicellulose content. From these case studies, readers are provided with three different examples of biomass type, pre-treatment route, and conversion, from fruit bunch cofired within existing coal power plants, black liquor in a stand-alone system, and rice waste processing integrated into existing agricultural systems.
Innovative Energy Conversion from Biomass Waste is a valuable resource for researchers and practitioners alike, and will be of interest to environmental scientists, biotechnologists, and chemical engineers working in waste-to-energy and renewable energy.

 

 

 

  • Provides a new approach to developing systems based on exergy recovery and process integration technologies
  • Discusses the possible routes of energy recovery in different scenarios from selected low-rank fuels from industrial waste biomass
  • Includes a replicable and applicable efficiency improvement method for different process developments