Produktbild: Towards Green Hydrogen Generation

Towards Green Hydrogen Generation

Fr. 303.00

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

24.09.2024

Herausgeber

Mehmet Sankir + weitere

Verlag

Wiley

Seitenzahl

496

Gewicht

907 g

Sprache

Englisch

ISBN

978-1-394-23408-0

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

24.09.2024

Herausgeber

Verlag

Wiley

Seitenzahl

496

Gewicht

907 g

Sprache

Englisch

ISBN

978-1-394-23408-0

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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Die Leseprobe wird geladen.
  • Produktbild: Towards Green Hydrogen Generation
  • Preface xiii

    Part 1: Hydrogen and the Green Deal 1

    1 Decarbonizing the Industry with Green Hydrogen 3
    Cigdem Tuc Altaf, Orcun Demir, Tuluhan Olcayto Colak, Emine Karagöz, Mehmet Kurt, Nurdan Demirci Sankir and Mehmet Sankir

    1.1 Introduction 4

    1.2 Intersections of National H2 Strategies 6

    1.3 Decarbonization of Carbon-Intensive Sectors 9

    1.4 Developments in Industrial Use of Green H2 19

    1.5 Conclusions 35

    2 Conventional to Renewable Hydrogen Production: A Paradigm Shift Toward Sustainable Energy 49
    Kriti Shrivasava and Ankur Jain

    2.1 Introduction 50

    2.2 Hydrogen Production Technologies 52

    2.3 Production of Blue Hydrogen 54

    3 Toward Green Hydrogen Generation 87
    Kexin Yin, Yinglong Wang, Xiaoying Zhang, Yusen Chen and Jianhui Zhong

    3.1 Introduction 88

    3.2 Traditional Hydrogen Production Technology 91

    3.3 Green Hydrogen Production Technology 95

    3.4 Challenges Facing the Industrialization of Green Hydrogen Production 112

    3.5 Conclusion 114

    Part 2: Carbon Capturing and Hydrogen 121

    4 Biomass Waste-to-Hydrogen Conversion: Innovations in Methanol and Ammonia Production as Efficient and Sustainable Hydrogen Storage Pathways 123
    Arif Darmawan, Abdul Hadi, Abdul Hamid Budiman, Eniya Listiani Dewi and Muhammad Aziz

    4.1 Introduction 124

    4.2 Hydrogen Production from Thermochemical Conversion and Methanol/Ammonia as Potential Hydrogen Carriers 126

    4.3 Enhancing Efficiency through Process Modeling and Exergy Optimization 129

    4.4 Municipal Solid Waste Conversion to Hydrogen and Methanol for Efficient Energy Storage 136

    4.5 Innovations in Direct Ammonia Production from Biomass Waste through Carbonization and Thermochemical Cycles 138

    4.6 Exergoeconomic Analysis, Combining Techno-Economic Analysis, and Exergy Analysis 141

    4.7 Conclusion 144

    5 Advances and Challenges in Metal Oxide--Based Carbon Capture Technologies: An Overview 149
    Berfu Kocabas, Olgu C. Cosar, Arpad Mihai Rostas, Ipek Deniz Yildirim, Ahmet Gungor and Emre Erdem

    5.1 Introduction 149

    5.2 Metal Oxides as Carbon Capture Agents 152

    5.3 Enhancing Carbon Capture Efficiency 154

    5.4 Future Trends and Research Directions 165

    5.5 Conclusion 166

    6 Coupling of Process Intensification to Life Cycle Assessment for Eco-Design of Biohydrogen Factory by Microalgae 171
    Iván Ehecatl López-González, Pablo Antonio López-Pérez and Dulce Jazmín Hernández-Melchor

    6.1 Introduction 172

    6.2 Methodology 181

    6.3 Numerical Experiments 187

    6.4 Conclusion 193

    7 In Situ Monitoring for Biohydrogen Production Using a Low-Cost Sensor 205
    Pablo Antonio López Pérez, Patricia Meneses Martínez, Emmanuel Vallejo Castañeda and Ricardo Aguilar López

    7.1 Introduction 206

    7.2 Methodology 219

    7.3 Results 225

    7.4 Conclusions 231

    Part 3: Green Hydrogen Generation 237

    8 Green Hydrogen Production by PEM Water Electrolysis 239
    Sergey A. Grigoriev

    9 Wind Driven Hydrogen Production in Eastern Morocco: Suitability Atlas Development and Techno-Economic Analysis 267
    Salaheddine Amrani, Samir Touili, Abdellatif Azzaoui, Ahmed Alami Merrouni and Hassane Dekhissi

    9.1 Introduction 268

    9.2 Materials and Methods 269

    9.3 Results and Discussion 282

    9.4 Conclusion 288

    10 Bifunctional Electrocatalyst--Driven Hybrid Water Splitting for Energy-Saving Coproduction of Green H2 and ValuableChemicals 293
    Hui Jiang, Guoliang Mei and Bo You

    10.1 Introduction 294

    10.2 Fundamentals of Hybrid Water Splitting 296

    10.3 Electrochemical Reconstruction 303

    10.4 Hybrid Water Splitting with Oxidative Upgrading 306

    10.5 Conclusions and Outlook 334

    11 Electrolyzers for H2 Production: A Review 359
    Edisson Villa-Ávila, Paul Arévalo, Marcos Tostado-Véliz and Francisco Jurado

    11.1 Introduction 360

    11.2 Materials and Methods 362

    11.3 Advances in Electrolyzer Technology 371

    11.4 Future Perspectives and Trends 377

    11.5 Current Challenges and Obstacles 382

    11.6 Applications and Industrial Potential 383

    11.7 Case Studies 385

    11.8 Economic and Sustainability Considerations 387

    11.9 Conclusions and Recommendations 394

    12 Green Hydrogen Generation by Water Electrolysis 407
    Weizhe Zhang, Yixiang Shi, Shuang Li and Ningsheng Cai

    12.1 Introduction 408

    12.2 Fundamentals of Water Electrolysis 408

    12.3 Alkaline Electrolysis Cell (AEC) 414

    12.4 Polymer Electrolyte Membrane Electrolysis Cell (PEMEC) 422

    12.5 Protonic Ceramic Electrolysis Cell (PCEC) 429

    12.6 Solid Oxide Electrolysis Cell (SOEC) 435

    12.7 Summary 440

    References 441

    Index 463