Mixing time in an agitated multi-lamp cylindrical photoreactor using electrical resistance tomography

被引:24
|
作者
Zhao, Zhen Fang [1 ]
Mehrvar, Mehrab [1 ]
Ein-Mozaffari, Farhad [1 ]
机构
[1] Ryerson Univ, Dept Chem Engn, Toronto, ON M5B 2K3, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
UV photoreactor; mixing time; electrical resistance tomography; mixing performance;
D O I
10.1002/jctb.1986
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
BACKGROUND: There is scarce information on the application of electrical resistance tomography (ERT) in UV photoreactors, in which mixing and mass transfer are important. Therefore, the feasibility of an ERT system in an agitated multi-lamp UV photoreactor was investigated to monitor the mixing process. RESULTS: The locations of the UV tubes had a significant impact on the mixing time, particularly at the lower impeller speeds (45 and 150 rpm). Also, at the higher impeller speeds (250, 350, and 500 rpm) and the same radial position (r), changing the angle theta from 15 to 45 degrees, resulted in only a slight variation of the mixing time. Finally, the maximum mixing time occurred when UV tubes were positioned at r = 13 cm (r/R = 0.68) and theta = 0 degrees, while minimum mixing time occurred at location r = 16 cm (r/R = 0.83) and theta = 45 degrees. CONCLUSION: The experimental results demonstrated the feasibility of the ERT system to monitor the mixing process in the UV photoreactor. The ERT results also indicated that the locations of the UV tubes had a significant effect on the mixing performance of the photoreactor. Furthermore, the mixing time varied inversely with the rotational speed, and this effect was more pronounced at lower speeds. (C) 2008 Society of Chemical Industry
引用
收藏
页码:1676 / 1688
页数:13
相关论文
共 50 条
  • [31] Three-dimensional electrical resistance tomography in a stirred mixing vessel
    Pinheiro, P.A.T.
    Loh, W.W.
    Wang, M.
    Mann, R.
    Waterfall, R.C.
    Chemical Engineering Communications, 175 : 25 - 38
  • [32] Augmented-reality visualization of fluid mixing in stirred chemical reactors using electrical resistance tomography
    Mann, R
    Stanley, S
    Vlaev, D
    Wabo, E
    Primrose, K
    JOURNAL OF ELECTRONIC IMAGING, 2001, 10 (03) : 620 - 629
  • [33] Analysis of gas phase characteristics and mixing performance in an activated sludge bioreactor using electrical resistance tomography
    Babaei, Roghayyeh
    Bonakdarpour, Bab
    Ein-Mozaffari, Farhad
    CHEMICAL ENGINEERING JOURNAL, 2015, 279 : 874 - 884
  • [34] Development of slurry mixing models using resistance tomography
    Williams, RA
    Jia, X
    McKee, SL
    POWDER TECHNOLOGY, 1996, 87 (01) : 21 - 27
  • [35] Mixing time of cylindrical bath agitated by swirl motion of gas-liquid two-phase jet and sludge treatment using ozone
    Shitara, M
    Iguchi, M
    Tamamori, T
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 2005, 91 (01): : 224 - 229
  • [36] Measurement of mixing of two miscible liquids in a stirred vessel with electrical resistance tomography
    Kim, Sin
    Nkaya, Andre Ngansib
    Dyakowski, Tomasz
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2006, 33 (09) : 1088 - 1095
  • [37] An electrical resistance tomography method for determining mixing in batch addition with a level change
    Rodgers, T. L.
    Kowalski, A.
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2010, 88 (2A): : 204 - 212
  • [38] Liquid mixing dynamics in slurry stirred tanks based on electrical resistance tomography
    Carletti, Claudio
    Montante, Giuseppina
    De Blasio, Cataldo
    Paglianti, Alessandro
    CHEMICAL ENGINEERING SCIENCE, 2016, 152 : 478 - 487
  • [39] Mixing of Oil in Water Through Electrical Resistance Tomography and Response Surface Methodology
    Mirshekari, Fahimeh
    Pakzad, Leila
    CHEMICAL ENGINEERING & TECHNOLOGY, 2019, 42 (05) : 1101 - 1115
  • [40] Solid-liquid mixing studies in lab-scale flotation tank using electrical resistance tomography
    Machado, Lucas Pich
    MINERALS & METALLURGICAL PROCESSING, 2014, 31 (03) : 180 - 180