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    1. Naturvetenskap och teknik
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    Advances and Technology Development in Greenhouse Gases: Emission, Capture and Conversion.

    Carbon Dioxide Conversion to Chemicals and Energy

    AvRahimpour,Mohammad Rez,Mohammad Reza Rahimpour

    Häftad, Engelska, 2024

    2 306 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Fler format och utgåvor

    Häftad

    2 306 kr

    Beskrivning

    Advances and Technology Development in Greenhouse Gases: Emission, Capture and Conversion is a comprehensive series that discusses the composition and properties of greenhouse gases (GHGs) and introduces different sources of GHG emission and the relation between GHGs and global warming. The comprehensive and detailed presentation of common technologies as well as novel research related to all aspects of GHGs makes this work an indispensable encyclopedic resource for researchers in academia and industry.

    Carbon Dioxide Conversion to Chemicals and Energy provides a beneficial strategy to control the rise of GHGs in the atmosphere and their conversion into valuable materials such as chemical and energy carriers. The book touches on concepts about the conversion of carbon dioxide, which is the main GHG. This two-section volume provides applications of carbon dioxide and the chemical processes employed to fabricate a host of materials. Each section reviews a process in detail and surveys the economic assessments, cost analysis, environmental impacts and challenges, recent advances and new concepts, and the largest operating plants and pilots for carbon conversion.



    • Introduces different applications of carbon dioxide
    • Includes environmental challenges and economic assessment of carbon capture and utilization
    • Describes various chemicals produced from CO2

    Produktinformation

    • Utgivningsdatum:2024-07-24
    • Mått:191 x 235 x 29 mm
    • Vikt:1 160 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:556
    • Förlag:Elsevier Science
    • ISBN:9780443192357

    Utforska kategorier

    • Energiteknik inom Naturvetenskap och teknik
    • Energiindustri inom Ekonomi och Ledarskap
    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Prof. Mohammad Reza Rahimpour is a professor in Chemical Engineering at Shiraz University, Iran. He received his Ph.D. in Chemical Engineering from Shiraz University joint with University of Sydney, Australia 1988. He started his independent career as Assistant Professor in September 1998 at Shiraz University. Prof. M.R. Rahimpour, was a Research Associate at University of California, Davis from 2012 till 2017. During his stay in University of California, he developed different reaction networks and catalytic processes such as thermal and plasma reactors for upgrading of lignin bio-oil to biofuel with collaboration of UCDAVIS. He has been a Chair of Department of Chemical Engineering at Shiraz University from 2005 till 2009 and from 2015 till 2020. Prof. M.R. Rahimpour leads a research group in fuel processing technology focused on the catalytic conversion of fossil fuels such as natural gas, and renewable fuels such as bio-oils derived from lignin to valuable energy sources. He provides young distinguished scholars with perfect educational opportunities in both experimental methods and theoretical tools in developing countries to investigate in-depth research in the various field of chemical engineering including carbon capture, chemical looping, membrane separation, storage and utilization technologies, novel technologies for natural gas conversion and improving the energy efficiency in the production and use of natural gas industries.Dr. Mohammad Amin Makarem is an Adjunct Lecturer at the School of Engineering, Taylor’s University, Malaysia. He holds a PhD in Chemical Engineering from Shiraz University, Iran. His research covers gas separation and purification, green energy, nanofluids, microfluidics, and catalyst synthesis. Beyond research, he has extensive experience as an editor and contributor to academic publishing, serving as Editor or Co-editor for many books, book series, and major reference works from leading academic publishers. His editorial work spans topics such as carbon capture and storage, bioenergy, greenhouse gases, hydrotreating, oily wastewater, chemical industry crises, hydrogen and methanol energy production, homogeneous catalysis, synthesis gas, natural gas, and renewable energy systems. He recently served as series editor for Advances in Biotechnology: Methods, Applications, and Case Studies and has reviewed manuscripts for prominent international journals, helping guide researchers and industry through high-impact resources.Maryam Meshksar is a research associate at Shiraz University. Her research has focused on gas separation, clean energy, and catalyst synthesis. In gas separation, she is working on membrane separation process, and in the clean energy field, she has worked on reforming-based processes for hydrogen production from methane experimentally. She has also synthesized novel catalysts for this process which are tested in for the first time. Recently, she has written various book chapters for famous publishers such as Elsevier, Springer and Wiley

    Innehållsförteckning

    • Section I: Carbon Dioxide Conversion and Applications1. Introduction to high value chemicals and energy production from CO22. Economic assessments and cost analysis of CO2 capture and utilization3. Environmental impacts and challenges of CO2 usage for synthesizing products and energy4. Recent advances and new concepts in CO2 conversion and applications5. The largest operating plants and pilots for carbon conversionSection II: Carbon Dioxide to Products6. CO2 conversion to urea7. CO2 conversion to methanol8. CO2 conversion to methane9. Carbon monoxide synthesis from carbon dioxide10. Salicylic acid production from CO211. Cyclic carbonates, polycarbonates and dimethyl carbonate production from CO212. CO2 photoreduction to hydrocarbons and oxygenated hydrocarbons13. Fuel production from CO214. Oxalate and oxalic acid production from CO215. Carboxylic acid production from CO216. Direct conversion of CO2 to dimethyl ether17. Direct conversion of CO2 to formic acid18. Syngas production from dry reforming or tri-reforming processes19. Ethylene and ethanol production from CO220. Polymer production from CO221. Carbon nanotube synthesis from CO222. Graphene synthesis from CO2