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    Synthesis of Titanium Dioxide Nanoparticles Using a Double-Slit Curved Wall-Jet Burner

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    Type
    Article
    Authors
    Ismail, Mohamed cc
    Mansour, Morkous S. cc
    Memon, Nasir K.
    Anjum, Dalaver H. cc
    Chung, Suk Ho cc
    KAUST Department
    Clean Combustion Research Center
    Combustion and Laser Diagnostics Laboratory
    Electron Microscopy
    Imaging and Characterization Core Lab
    Mechanical Engineering Program
    Nanofabrication Core Lab
    Physical Science and Engineering (PSE) Division
    Date
    2016-05-04
    Online Publication Date
    2016-05-04
    Print Publication Date
    2016-05-03
    Permanent link to this record
    http://hdl.handle.net/10754/621757
    
    Metadata
    Show full item record
    Abstract
    A novel double-slit curved wall-jet (DS-CWJ) burner was proposed and utilized for flame synthesis. This burner was comprised of double curved wall-jet nozzles with coaxial slits; the inner slit was for the delivery of titanium tetraisopropoxide (TTIP) precursor while the outer one was to supply premixed fuel/air mixture of ethylene (C2H4) or propane (C3H8). This configuration enabled rapid mixing between the precursor and reactants along the curved surface and inside the recirculation zone of the burner. Particle growth of titanium dioxide (TiO2) nanoparticles and their phases was investigated with varying equivalence ratio and Reynolds number. Flow field and flame structure were measured using particle image velocimetry (PIV) and OH planar laser-induced fluorescence (PLIF) techniques, respectively. The nanoparticles were characterized using high-resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD), and nitrogen adsorption Brunauer–Emmett–Teller (BET) for surface area analysis. The flow field consisted of a wall-jet region leading to a recirculation zone, an interaction jet region, followed by a merged-jet region. The DS-CWJ burner revealed appreciable mixing characteristics between the precursor and combustion gases near the nozzle regions, with a slight increase in the axial velocity due to the precursor injection. The precursor supply had a negligible effect on the flame structure. The burner produced a reasonably uniform size (13–18 nm) nanoparticles with a high BET surface area (>100 m2/g). The phase of TiO2 nanoparticles was mainly dependent on the equivalence ratio and fuel type, which impact flame height, heat release rate, and high temperature residence time of the precursor vapor. For ethylene flames, the anatase content increased with the equivalence ratio, whereas it decreased in the case of propane flames. The synthesized TiO2 nanoparticles exhibited high crystallinity and the anatase phase was dominant at high equivalence ratios (ϕ > 1.6) for C2H4, and at low equivalence ratios (ϕ < 1.3) for the C3H8 flame. © 2016 Taylor & Francis.
    Citation
    Ismail MA, Mansour MS, Memon NK, Anjum DH, Chung SH (2016) Synthesis of Titanium Dioxide Nanoparticles Using a Double-Slit Curved Wall-Jet Burner. Combustion Science and Technology 188: 623–636. Available: http://dx.doi.org/10.1080/00102202.2016.1138725.
    Publisher
    Informa UK Limited
    Journal
    Combustion Science and Technology
    DOI
    10.1080/00102202.2016.1138725
    ae974a485f413a2113503eed53cd6c53
    10.1080/00102202.2016.1138725
    Scopus Count
    Collections
    Nanofabrication Core Lab; Articles; Imaging and Characterization Core Lab; Physical Science and Engineering (PSE) Division; Mechanical Engineering Program; Clean Combustion Research Center

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