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  • © 2019

An Economy Based on Carbon Dioxide and Water

Potential of Large Scale Carbon Dioxide Utilization

  • Presents an authoritative perspective on CO2 Capture and Utilization
  • Explores the use of perennial energy for achieving large volumes of converted CO2
  • Outlines the major bottlenecks and breakthroughs of converting CO2 into energy-rich compounds

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Table of contents (14 chapters)

  1. Front Matter

    Pages i-xviii
  2. Capture of CO2 from Concentrated Sources and the Atmosphere

    • Xiaoxing Wang, Chunshan Song
    Pages 35-72
  3. Technical and Industrial Applications of CO2

    • Jan Vansant, Peter-Wilhem Koziel
    Pages 73-103
  4. Mineral Carbonation for Carbon Capture and Utilization

    • Tze Yuen Yeo, Jie Bu
    Pages 105-153
  5. Catalytic CO2 Conversion to Added-Value Energy Rich C1 Products

    • Jangam Ashok, Leonardo Falbo, Sonali Das, Nikita Dewangan, Carlo Giorgio Visconti, Sibudjing Kawi
    Pages 155-210
  6. Use of CO2 as Source of Carbon for Energy-Rich Cn Products

    • Jiang Xiao, Xinwen Guo, Chunshan Song
    Pages 211-238
  7. Electrochemical and Photoelectrochemical Transformations of Aqueous CO2

    • Aubrey R. Paris, Jessica J. Frick, Danrui Ni, Michael R. Smith, Andrew B. Bocarsly
    Pages 239-286
  8. Plasma-Based CO2 Conversion

    • Annemie Bogaerts, Ramses Snoeckx
    Pages 287-325
  9. Bioelectrochemical Syntheses

    • Suman Bajracharya, Nabin Aryal, Heleen De Wever, Deepak Pant
    Pages 327-358
  10. Enhanced Biological Fixation of CO2 Using Microorganisms

    • Fuyu Gong, Huawei Zhu, Jie Zhou, Tongxin Zhao, Lu Xiao, Yanping Zhang et al.
    Pages 359-378
  11. Enhanced Fixation of CO2 in Land and Aquatic Biomass

    • Angela Dibenedetto
    Pages 379-412
  12. Technoenergetic and Economic Analysis of CO2 Conversion

    • Suraj Vasudevan, Shilpi Aggarwal, Shamsuzzaman Farooq, Iftekhar A. Karimi, Michael C. G. Quah
    Pages 413-430
  13. Correction to: Technical and Industrial Applications of CO2

    • Jan Vansant, Peter-Wilhem Koziel
    Pages C1-C1

About this book

This book is devoted to CO2 capture and utilization (CCU) from a green, biotechnological and economic perspective, and presents the potential of, and the bottlenecks and breakthroughs in converting a stable molecule such as CO2 into specialty chemicals and materials or energy-rich compounds.

The use of renewable energy (solar, wind, geothermal, hydro) and non-fossil hydrogen is a must for converting large volumes of CO2 into energy products, and as such, the authors explore and compare the availability of hydrogen from water using these sources with that using oil or methane. Divided into 13 chapters, the book offers an analysis of the conditions under which CO2 utilization is possible, and discusses CO2 capture from concentrated sources and the atmosphere. It also analyzes the technological (non-chemical) uses of CO2, carbonation of basic minerals and industrial sludge, and the microbial-catalytic-electrochemical-photoelectrochemical-plasma conversion of CO2 into chemicals and energy products. Further, the book provides examples of advanced bioelectrochemical syntheses and RuBisCO engineering, as well as a techno-energetic and economic analysis of CCU.

Written by leading international experts, this book offers a unique perspective on the potential of the various technologies discussed, and a vision for a sustainable future. Intended for graduates with a good understanding of chemistry, catalysis, biotechnology, electrochemistry and photochemistry, it particularly appeals to researchers (in academia and industry) and university teachers.

Editors and Affiliations

  • IC²R srl, Lab H124, Tecnopolis, Valenzano, Italy

    Michele Aresta

  • Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore, Singapore

    Iftekhar Karimi, Sibudjing Kawi

About the editors

Michele Aresta received his PhD in Industrial Chemistry from the University of Milan, Milan-IT. He is the President of the Scientific Board of the Interuniversity Consortium on Chemical Reactivity and Catalysis, Italy; former IMM, Professor-NUS-SG and David Parkin Professor at the University of Bath, UK and Honorary Professor at the Chemical Engineering Faculty, University of Tianjin, China. His scientific interests are in the fields of Chemistry of small molecules (N2, H2, O2, CO, CO2, olefins), metals in low-negative oxidation state, reaction mechanisms, catalysis, photocatalysis; utilization of biomass and new bio-sourced monomers for polymeric materials. He is the author of over 290 papers in peer reviewed international journals and of 12 books on CO2 and Biomass valorization as well as owner of several patents.

I A Karimi is a Professor of Chemical & Biomolecular Engineering at the National University of Singapore. Professor Karimi received his BTech in Chemical Engineering from Indian Institute of Technology Bombay and MS & PhD from Purdue University. He is a leading expert in the area of process systems engineering and optimization with a unique blend of experience from academia and industry. His current research interests include process modeling, simulation, and optimization, energy efficiency, process integration and intensification, energy systems, chemical logistics, CCSU, process operations, and natural gas.


Bibliographic Information

Buy it now

Buying options

eBook USD 139.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 179.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 179.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access