• Produktbild: Handbook of Biofuels
  • Produktbild: Handbook of Biofuels

Handbook of Biofuels

195,99 €

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

01.11.2021

Abbildungen

80 illustrations (20 in full color)

Herausgeber

Sanjay Sahay

Verlag

Elsevier Science & Technology

Seitenzahl

692

Maße (L/B/H)

27,9/21,6/3,5 cm

Gewicht

1578 g

Sprache

Englisch

ISBN

978-0-12-822810-4

Beschreibung

Portrait

Prof. Sanjay Sahay, Professor and Head, Department Of Botany, Government Postgraduate College. Dr Sahay obtained his PhD degree in fungal genetics from Patna University, and has post-doctoral research experience in yeast molecular biology from Indian Institute of Science, Bangalore. Currently, he is working as Professor and head, Department of Botany, Government Postgraduate College, Biaora, India. His main research interest is 2G Bioethanol, cold-active enzymes and psychrophilic fungi. He has 26 years of teaching experience, guided 18 PhD students in Botany and Biotechnology, published more than 30 papers in peer reviewed journals, contributed 3 book chapters and submitted two patent applications in 2G bioethanol. He has been selected as Biotechnology National Associate by Department of Science and Technology, Government of India and Research Awardee by University Grants Commission, India

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

01.11.2021

Abbildungen

80 illustrations (20 in full color)

Herausgeber

Sanjay Sahay

Verlag

Elsevier Science & Technology

Seitenzahl

692

Maße (L/B/H)

27,9/21,6/3,5 cm

Gewicht

1578 g

Sprache

Englisch

ISBN

978-0-12-822810-4

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: Handbook of Biofuels
  • Produktbild: Handbook of Biofuels
  • A. Introduction
    1. An economic analysis of biofuels: policies, trade, and employment opportunities
    2. Technoeconomic analysis of biofuel production: concept, steps, and tools
    B. Bioenergy: Potential feedstock
    3. Plants: a sustainable platform for second-generation biofuels and biobased chemicals
    4. Energy plants (crops): potential natural and future designer plants
    5. Algal biorefinery: technoeconomic analysis
    6. Tapping wastewater resource: why and how?
    7. Bioenergy from food waste
    C. Bioethanol: 2G and 3G
    9. Decongestion of lignocellulosics: critical assessment of physicochemical approaches
    10. Deconstruction of lignocellulosics: potential biological approaches
    11. Lignin: value addition is key to profitable biomass biorefinery
    12. Downstream process: toward cost/energy effectiveness
    13. Process integration: hurdles and approaches to overcome
    14. Community-level second-generation bioethanol plant: a case study focused on a safety issue
    15. Third-generation bioethanol: status, scope, and challenges
    D. Biobutanol: renewed interest
    16. Biobutanol, the forgotten biofuel candidate: latest research and future directions
    E. Biodiesel: potential sources and prospect
    17. Algal biodiesel: technology, hurdles, and future directions
    18. Microbial biodiesel: a comprehensive study toward sustainable biofuel production
    19. Assessment of farm-level biodiesel unit-a potential alternative for sustainable future
    F. Biohydrogen: The cleanest fuel
    20. Biohydrogen: potential applications, approaches, and hurdles to overcome
    21. Biological routes of hydrogen production: critical assessment
    22. Thermochemical routes applying biomass: critical assessment
    23. Splitting of water: biological and nonbiological approaches
    G. Biogas: the decentralised fuel
    24. Decentralized biogas plants: status, prospects, and challenges
    25. Biogas: microbiological research to enhance efficiency and regulation
    H. Syngas
    26. Biogas technology implementation in rural areas: a case study of Vhembe District in Limpopo Province, South Africa
    27. A biotechnological overview of syngas fermentation
    I. Bioelectricity
    28. Biofuel cell: existing formats, production level, constraints, and potential uses
    29. Enzymatic and microbial biofuel cells: current developments and future directions
    30. Biomass-based electrification
    J. New directions
    31. Nanotechnological interventions in biofuel production
    32. Carbon dioxide capture for biofuel production
    33. Solar intervention in bioenergy
    34. The pursuits of solar application for biofuel generation