Produktbild: Renewable Energy Innovations

Renewable Energy Innovations Biofuels, Solar, and Other Technologies

269,99 €

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

06.09.2023

Herausgeber

Alok Kumar Patel + weitere

Verlag

John Wiley & Sons Inc

Seitenzahl

464

Maße (L/B/H)

22,9/15,2/2,8 cm

Gewicht

853 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-78567-5

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

06.09.2023

Herausgeber

Verlag

John Wiley & Sons Inc

Seitenzahl

464

Maße (L/B/H)

22,9/15,2/2,8 cm

Gewicht

853 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-78567-5

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: Renewable Energy Innovations
  • 1 Microbial Fuel Cells -- A Sustainable Approach to Utilize Industrial Effluents for Electricity Generation 1
    Manisha Verma and Vishal Mishra
     
    Abbreviation 2
     
    1.1 Introduction 2
     
    1.2 History of Microbial Fuel Cell 3
     
    1.3 Principle of Microbial Fuel Cell 4
     
    1.4 Material Used in MFC System 5
     
    1.5 Electrogenic Microorganisms 14
     
    1.6 Electron Transport Mechanism in MFCs 16
     
    1.7 Configuration of MFC 17
     
    1.8 Applications of Microbial Fuel Cell 21
     
    1.9 Future Perspectives 27
     
    1.10 Conclusion 27
     
    2 Nanotechnologies in the Renewable Energy Sector 41
    Yogesh Kumar Sharma, Yogesh Kumar, Sweta Sharma and Meenal Gupta
     
    2.1 Introduction 42
     
    2.2 Fundamentals of Renewable Energy Sources 44
     
    2.3 Storage of Energy in Electrical Devices 52
     
    2.4 Nanotechnology in Energy Storage Devices 56
     
    2.5 Nanomaterials for Rechargeable Batteries 65
     
    2.6 Nanomaterials in Fuel Cells 69
     
    2.7 Conclusion 76
     
    2.8 Future Scope 76
     
    3 Sustainable Approach in Utilizing Bioenergy Commonly for Industrial Zones by Limiting Overall Emission Footprint 83
    Prashanth Kumar S, Mainak Mukherjee, Rhea Puri and Shrey Singhal
     
    3.1 Introduction 84
     
    3.2 Co-Firing Plants in Small- and Medium-Scale Industries 85
     
    3.3 Impact of Usage of Biogas for Steam Generation 87
     
    3.4 Case Scenarios for Promoting Industrial Uptake 91
     
    3.5 Conclusion 93
     
    4 Recycling of Plastic Waste into Transportation Fuels and Value-Added Products 97
    Shashank Pal and Shyam Pandey
     
    4.1 Introduction 97
     
    4.2 Plastic Waste: A Global Challenge 99
     
    4.3 Future Projection of the Waste Plastic 100
     
    4.4 Plastic Waste Effect on Environment and Ecology 101
     
    4.5 Plastic Waste Management 103
     
    4.6 Parameters Affect the Pyrolysis Process 108
     
    4.7 Value-Added Products from Plastic Waste Pyrolysis 112
     
    4.8 Application in Transportation Sector 114
     
    4.9 Conclusion 115
     
    5 An Outlook on Oxygenated Fuel for Transportation 123
    Shashank Pal, Shyam Pandey, Ram Kunwar and P.S. Ranjit
     
    5.1 Introduction 123
     
    5.2 Oxygenated Fuel 127
     
    6 Greenhouse Gas (GHG) Emissions and Its Mitigation Technology in Transportation Sector 159
    Swapnil Bhurat, Manas Jaiswal, P. S. Ranjit, Ram Kunwer, S. K. Gugolothu and Khushboo Bhurat
     
    6.1 Introduction 160
     
    6.2 Mitigation Technologies 163
     
    6.3 Conclusion 176
     
    7 Advanced Techniques for Bio-Methanol Production 181
    Cecil Antony, Praveen Kumar Ghodke, Saravanakumar Thiyagarajan, Dinesh Mohanakrishnan
     
    and Amit Kumar Sharma
     
    7.1 Introduction 182
     
    7.2 Scope of Biofuel 183
     
    7.3 Types of Biofuels 183
     
    7.4 Why Biomethanol 184
     
    7.5 Methanol Properties 184
     
    7.6 Source of Bio-Methanol 184
     
    7.7 Production of Methanol 185
     
    7.8 Gasification 186
     
    7.9 Pyrolysis 186
     
    7.10 Liquefaction 187
     
    7.11 Syngas to Methanol 188
     
    7.12 Biomethanol from MSW 188
     
    7.13 Energy Efficiency of a Process 192
     
    7.14 Biological Conversion of Methanol 193
     
    7.15 Anaerobic Digestion 193
     
    7.16 Methanotrophic Bacteria 193
     
    7.17 Production of Methanol from Methanotrophic Bacteria (Methanotrophs) 194
     
    7.18 Large-Scale Production of Methanol from Waste Biomass 195
     
    7.19 Challenges Associated with Methanol Production Using Methanotrophic Bacteria at the Industrial Level 197
     
    7.20 Role of Ammonia-Oxidizing Bacteria (AOB) 197
     
    7.21 Future Prospective and Conclusion 198