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Information Journal Paper

Title

Effects of magnetic field on the CO2 absorption in nanofluids in a bubble column

Pages

  72-85

Abstract

 Effects of Magnetic field on the CO2 absorption in deionized water, water/Fe3O4, and water/Al2O3 Nanofluids in a Bubble column are studied. Effect of the other key parameters such as gas flow rate, nanoparticle type, Magnetic field direction, and Nanofluid concentration on the mass transfer rate and mass transfer coefficient has also been investigated. The results showed that according to the polar nature of the water molecules, by increasing the Magnetic field to 1133 gauss, the mass transfer coefficient in pure water increases up to 6. 7%. The enhancement can be achieved if the direction of the Magnetic field is parallel to the direction of the continuous phase. By adding the nanoparticles to the pure water, the mass transfer coefficient, and the mass transfer rate increases. By increasing the water/Fe3O4 concentration, the mass transfer coefficient increases, but in the water/Al2O3 Nanofluid, by increasing the Nanofluid concentration up to 0. 005%, the mass transfer coefficient increases, and then decreases.

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  • Cite

    APA: Copy

    Mohammadzadeh, Negin, Rafieian, Farzaneh, Haghshenasfard, Masoud, NASR ESFAHANY, MOHSEN, & Tavakoli, Touraj. (2020). Effects of magnetic field on the CO2 absorption in nanofluids in a bubble column. JOURNAL OF SEPARATION SCIENCE AND ENGINEERING, 11(2 ), 72-85. SID. https://sid.ir/paper/150053/en

    Vancouver: Copy

    Mohammadzadeh Negin, Rafieian Farzaneh, Haghshenasfard Masoud, NASR ESFAHANY MOHSEN, Tavakoli Touraj. Effects of magnetic field on the CO2 absorption in nanofluids in a bubble column. JOURNAL OF SEPARATION SCIENCE AND ENGINEERING[Internet]. 2020;11(2 ):72-85. Available from: https://sid.ir/paper/150053/en

    IEEE: Copy

    Negin Mohammadzadeh, Farzaneh Rafieian, Masoud Haghshenasfard, MOHSEN NASR ESFAHANY, and Touraj Tavakoli, “Effects of magnetic field on the CO2 absorption in nanofluids in a bubble column,” JOURNAL OF SEPARATION SCIENCE AND ENGINEERING, vol. 11, no. 2 , pp. 72–85, 2020, [Online]. Available: https://sid.ir/paper/150053/en

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