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    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Fysik
    4. Klassisk mekanik

    Nanofluids and Mass Transfer

    AvMohammad Reza Rahimpour,Mohammad Amin Makarem

    Häftad, Engelska, 2021

    2 300 kr

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

    Beskrivning

    In the recent decades, efficiency enhancement of refineries and chemical plants has been become a focus of research and development groups. Use of nanofluids in absorption, regeneration, liquid-liquid extraction and membrane processes can lead to mass transfer and heat transfer enhancement in processes which results in an increased efficiency in all these processes. Nanofluids and Mass Transfer introduces the role of nanofluids in improving mass transfer phenomena and expressing their characteristics and properties. The book also covers the theory and modelling procedures in details and finally illustrates various applications of Nanofluids in mass transfer enhancement in various processes such as absorption, regeneration, liquid-liquid extraction and membrane processes and how can nanofluids increase mass transfer in processes.



    • Introduces specifications of nanofluids and mechanisms of mass transfer enhancement by nanofluids in various mass transfer processes
    • Discusses mass transfer enhancement in various mass transfer processes such as: absorption, regeneration, liquid-liquid extraction and membrane processes
    • Offers modelling mass transfer and flow in nanofluids
    • Challenges industrialization and scale up of nanofluids

    Produktinformation

    • Utgivningsdatum:2021-09-09
    • Mått:191 x 235 x 26 mm
    • Vikt:1 040 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:512
    • Förlag:Elsevier Science
    • ISBN:9780128239964

    Utforska kategorier

    • Klassisk mekanik inom Naturvetenskap och teknik
    • Maskinteknik och material 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.Mohammad Reza Kiani is a research associate at the University of Tehran. He started his research with writing a book chapter about aquatic water and water treatment. He is working on CO2 absorption in micro channels and specifications of microfluidic and nanofluidic systems. His research interests are modelling and experimental investigations about novel methods of CO2 capture. Besides, he has collaborated with other researchers in Shiraz University in writing new book chapters and books from Elsevier. Dr. Mohammad Amin Sedghamiz is a research associate at Shiraz University since 2018. He started his Ph.D. at Shiraz University, in 2012, with a focus on environmental aspects of energy production from the waste materials. During the Ph.D. level, he has emphasized novel solvents in Chemical Engineering applications, e.g., he investigated the application and efficiency of Ionic Liquids to absorb acid gases at different conditions. During this project, the first idea for utilizing the next generation of the Ionic liquids, i.e., Deep Eutectic Solvents (DES), erupted in his mind and has continued this idea, thermodynamic research group. Besides the research mentioned earlier, Dr. Sedghamiz was also a research associate in four different industrial and academic research projects collaborating with industrial professions and academic teams, e.g., south pars gas company, national Iranian oil company, etc.

    Innehållsförteckning

    • Section 1: Mass transfer basics of nanofluids1. Introduction to nanofluids, challenges and opportunities2. Synthesis, preparation and characterization of nanofluids3. Thermodynamic properties of nanofluids4. Mass transfer mechanisms in nanofluids5. Effect of nanofluids in solubility enhancement6. Binary nanofluids and mass transfer mechanism7. Magnetic nanofluids and mass transfer mechanism8. Conjugate heat and mass transfer in nanofluids9. Bio-nanofluids and mass transfer characteristicsSection 2: Mass transfer modelling and simulation of nanofluids10. Mass transfer modelling in nanofluids: Theoretical basics and model development11. Mass transfer modelling in nanofluids: Numerical approaches and challenges12. Modelling and prediction of mass transfer coefficient in nanofluids13. CFD simulation of nanofluids flow dynamics including mass transferSection 3: Applications of nanofluids as mass transfer enhancers14. Mass transfer enhancement in liquid-liquid extraction process by nanofluids15. Increasing mass transfer in absorption and regeneration processes via nanofluids16. Mass transfer enhancement by nanofluids in membrane systems17. Mass transfer improvement in hydrate formation processes by nanofluids18. Mass transfer enhancement in solar stills by nanofluids19. Application of nanofluids in drug delivery and disease treatment20. Industrialization of nanofluidic based processes: economic aspects and environmental challenges