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    3. Övrig teknik och tillämpad vetenskap

    Renewable Energy Innovations

    Biofuels, Solar, and Other Technologies

    AvAlok Kumar Patel,Amit Kumar Sharma

    Inbunden, Engelska, 2023

    2 577 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    RENEWABLE ENERGY INNOVATIONS This critical text, designed for microbiologists, biotechnologists, entrepreneurs, process engineers, chemical engineers, electrical engineers, physicists, and environmentalists, assesses the current knowledge about lab-scale and large-scale production of renewable and sustainable fuels, chemicals, and materials. Global warming is having a huge impact on the world’s ecosystem. Glaciers have shrunk, ice on rivers and lakes is breaking up early, and plant and animal ranges have relocated. On a worldwide scale, the threat posed by climate change and pollution is obvious. A green and sustainable future necessitates using renewable resources to produce fuels, chemicals, and materials. This book investigates diverse bioprocesses that are crucial to everyday life, including the key concerns regarding the generation of biofuels, energy, and food securities, along with waste management. Commercial interest in biotechnological processes has risen to produce pharmaceuticals, health supplements, foodstuffs, biofuels, and chemicals using a biocatalyst such as enzymes, microorganisms, plant cells, or animal cells in a bioreactor. The sustainability of renewable biomass, replacement of depleted fossil fuels, and the mitigation of greenhouse gas emissions from the existing chemical and oil industries are the key benefits of switching to bioproducts. This book discusses bioprocessing to produce biofuels, biobased chemicals, bioproducts, and biomass biorefinery processes. This involves designing novel pretreatment and fractionation technologies for lignocellulose biomass into cellulose, hemicellulose, and lignin and the conversion of these streams into biofuels and biobased chemicals via biochemical and thermochemical routes. This book also covers the advancement of oleaginous microorganisms for biofuels and nutraceutical, biological wastewater treatment. Written and edited by authors from leading biotechnology research groups from across the world, this exciting new volume covers all of these technologies, including the basic concepts and the problems and solutions involved with the practical applications in the real world. Whether for the veteran engineer or scientist, student, manager, or another technician working in the field, this volume is essential for any library.

    Produktinformation

    • Utgivningsdatum:2023-08-31
    • Mått:158 x 237 x 34 mm
    • Vikt:853 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:464
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119785675

    Utforska kategorier

    • Övrig teknik och tillämpad vetenskap inom Naturvetenskap och teknik
    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Alok Patel, PhD, is an assistant professor in Biochemical Process Engineering, Lulea University of Technology, Lulea, Sweden, and is the principal investigator of a project funded by the Swedish Research Council. He earned his PhD in biotechnology from IIT Roorkee in 2017, and his research interest focuses on biofuels, biorefineries, and other biotechnologies. Amit Kumar Sharma, PhD, is an assistant professor in Applied Sciences Cluster, and Centre of Alternate Energy Research at the University of Petroleum and Energy Studies, Dehradun, Uttarakhand, India. He earned his PhD in microalgae-based fuels from UPES, and his research interest focuses on biofuels, biorefineries, and other biotechnologies.

    Innehållsförteckning

    • 1 Microbial Fuel Cells -- A Sustainable Approach to Utilize Industrial Effluents for Electricity Generation 1Manisha Verma and Vishal MishraAbbreviation 21.1 Introduction 21.2 History of Microbial Fuel Cell 31.3 Principle of Microbial Fuel Cell 41.4 Material Used in MFC System 51.5 Electrogenic Microorganisms 141.6 Electron Transport Mechanism in MFCs 161.7 Configuration of MFC 171.8 Applications of Microbial Fuel Cell 211.9 Future Perspectives 271.10 Conclusion 272 Nanotechnologies in the Renewable Energy Sector 41Yogesh Kumar Sharma, Yogesh Kumar, Sweta Sharma and Meenal Gupta2.1 Introduction 422.2 Fundamentals of Renewable Energy Sources 442.3 Storage of Energy in Electrical Devices 522.4 Nanotechnology in Energy Storage Devices 562.5 Nanomaterials for Rechargeable Batteries 652.6 Nanomaterials in Fuel Cells 692.7 Conclusion 762.8 Future Scope 763 Sustainable Approach in Utilizing Bioenergy Commonly for Industrial Zones by Limiting Overall Emission Footprint 83Prashanth Kumar S, Mainak Mukherjee, Rhea Puri and Shrey Singhal3.1 Introduction 843.2 Co-Firing Plants in Small- and Medium-Scale Industries 853.3 Impact of Usage of Biogas for Steam Generation 873.4 Case Scenarios for Promoting Industrial Uptake 913.5 Conclusion 934 Recycling of Plastic Waste into Transportation Fuels and Value-Added Products 97Shashank Pal and Shyam Pandey4.1 Introduction 974.2 Plastic Waste: A Global Challenge 994.3 Future Projection of the Waste Plastic 1004.4 Plastic Waste Effect on Environment and Ecology 1014.5 Plastic Waste Management 1034.6 Parameters Affect the Pyrolysis Process 1084.7 Value-Added Products from Plastic Waste Pyrolysis 1124.8 Application in Transportation Sector 1144.9 Conclusion 1155 An Outlook on Oxygenated Fuel for Transportation 123Shashank Pal, Shyam Pandey, Ram Kunwar and P.S. Ranjit5.1 Introduction 1235.2 Oxygenated Fuel 1276 Greenhouse Gas (GHG) Emissions and Its Mitigation Technology in Transportation Sector 159Swapnil Bhurat, Manas Jaiswal, P. S. Ranjit, Ram Kunwer, S. K. Gugolothu and Khushboo Bhurat6.1 Introduction 1606.2 Mitigation Technologies 1636.3 Conclusion 1767 Advanced Techniques for Bio-Methanol Production 181Cecil Antony, Praveen Kumar Ghodke, Saravanakumar Thiyagarajan, Dinesh Mohanakrishnanand Amit Kumar Sharma7.1 Introduction 1827.2 Scope of Biofuel 1837.3 Types of Biofuels 1837.4 Why Biomethanol 1847.5 Methanol Properties 1847.6 Source of Bio-Methanol 1847.7 Production of Methanol 1857.8 Gasification 1867.9 Pyrolysis 1867.10 Liquefaction 1877.11 Syngas to Methanol 1887.12 Biomethanol from MSW 1887.13 Energy Efficiency of a Process 1927.14 Biological Conversion of Methanol 1937.15 Anaerobic Digestion 1937.16 Methanotrophic Bacteria 1937.17 Production of Methanol from Methanotrophic Bacteria (Methanotrophs) 1947.18 Large-Scale Production of Methanol from Waste Biomass 1957.19 Challenges Associated with Methanol Production Using Methanotrophic Bacteria at the Industrial Level 1977.20 Role of Ammonia-Oxidizing Bacteria (AOB) 1977.21 Future Prospective and Conclusion 1988 Biodiesel Production: Advance Techniques and Future Prospective 205Satyajit Chowdhury, Romsha Singh, Saket Kumar Shrivastava and Jitendra S. Sangwai8.1 Introduction 2068.2 Biodiesel and Its Properties 2088.3 Synthesis of Biodiesel 2098.4 Modern Methods for the Development of Prospects 2218.5 Future Prospects and Policies 2258.6 Conclusions 2279 Biomass to Biofuel: Biomass Sources, Pretreatment Methods and Production Strategies 233Margavelu Gopinath, Chandrasekaran Muthukumaran, Madhusudhanan Manisha, Murugesan Nivedha and Krishnamurti Tamilarasan9.1 Introduction 2349.2 Biomass Sources in India 2349.3 Lignocellulosic Biomass 2399.4 Biomass Pretreatment Methods 2409.5 Biomass to Biofuel Conversion Technologies 2489.6 Types of Biofuel 2549.7 Conclusion 25810 Opportunity and Challenges in Biofuel Productions through Solar Thermal Technologies 267Praveen Kumar Ghodke, Cecil Antony and Amit Kumar Sharma10.1 Introduction 26710.2 Solar Pyrolysis of Biomass Feedstocks 26910.3 Production of Bio-Oil by Solar Pyrolysis 27110.4 Conclusions 28211 Algae Biofuels: A Promising Fuel of the Transport Sector 289P.S. Ranjit, S. S. Bhurat, Sukanchan Palit, M. Sreenivasa Reddy, Shyam Pandey and Shashank Pal11.1 Introduction 28911.2 Biofuels in the Transport Sector 29111.3 Modes of Biofuels in Practice 29411.4 Algae Biofuel -- A Promising Energy Source 29711.5 Microalgae Growth Conditions 30711.6 Harvesting of Algae 30911.7 Biofuel Extraction Techniques from Microalgae 31111.8 Algae Biofuel as a Transport Fuel 31311.9 Conclusion 31812 A Review of Chemical and Physical Parameters of Biodiesel vs. Diesel: Their Environmental and Economic Impact 329Pradeep Kumar, Kalpna, Hariom Sharma, Mukesh Chand and Hament Panwar12.1 Introduction 32912.2 Historical Background 33112.3 Current Status of Biodiesel 33312.4 Sources of Biodiesel 33412.5 Advantages of Biodiesel Over Diesel 33512.6 Biodiesel as Safer and Cleaner Fuel 33612.7 Major Negative Aspects to Use of Biodiesel 33812.8 Chemical and Physical Properties of Biodiesel 33812.9 Biodiesel Applications 34012.10 Conclusion and Future Prospective 34113 An Indian Viewpoint on Promoting Hydrogen-Powered Vehicles: Focussing on the Scope of Fuel Cells 345Mainak Mukherjee, Jaideep Saraswat and Amit Kumar Sharma13.1 Introduction 34613.2 Can Hydrogen Be the Way Forward? 34813.3 The Inception of Fuel Cells (FCs) and PEMFCs in Particular 34913.4 FCEVs v/s Existing Automobile Infrastructure in India 35013.5 The Green Policy Push for Hydrogen and Associated Technologies in India 35313.6 Pervasive Challenges of PEMFC Technology 35313.7 Conclusion and Recommendations 35714 Microalgae as Source of Bioenergy 361Dimitra Karageorgou and Petros Katapodis14.1 Introduction 36114.2 Microalgae Bioenergy Production Options 36314.3 Conclusions 37415 Hazards and Environmental Issues in Biodiesel Industry 383Tattaiyya Bhattacharjee, Paulami Ghosh and Surajit Mondal15.1 Introduction 38415.2 Life Cycle Analysis of Biodiesel 39115.3 Causes of Occurrence 39215.4 Future Risk and Opportunities 39615.5 Lessons Learnt for Prevention of Hazards 39815.6 Conclusion 399References 400Index 403