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Towards improved accuracy in modeling aeration efficiency through understanding bubble size distribution dynamics

(2018) WATER RESEARCH. 131. p.346-355
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BIOMATH, Oxygen transfer, Overall volumetric oxygen transfer, coefficient, Hydrodynamics, Liquid viscosity, Wastewater treatment, GAS HOLD-UP, OXYGEN-TRANSFER, ACTIVATED-SLUDGE, MASS-TRANSFER, INTERFACIAL AREA, COLUMN REACTORS, SYSTEMS, LIQUID, TANKS, WATER

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Citation

Please use this url to cite or link to this publication:

Chicago
Neves do Amaral, Andreia, Giacomo Bellandi, Usman Rehman, Ramiro Neves, Youri Amerlinck, and Ingmar Nopens. 2018. “Towards Improved Accuracy in Modeling Aeration Efficiency Through Understanding Bubble Size Distribution Dynamics.” Water Research 131: 346–355.
APA
Neves do Amaral, A., Bellandi, G., Rehman, U., Neves, R., Amerlinck, Y., & Nopens, I. (2018). Towards improved accuracy in modeling aeration efficiency through understanding bubble size distribution dynamics. WATER RESEARCH, 131, 346–355.
Vancouver
1.
Neves do Amaral A, Bellandi G, Rehman U, Neves R, Amerlinck Y, Nopens I. Towards improved accuracy in modeling aeration efficiency through understanding bubble size distribution dynamics. WATER RESEARCH. 2018;131:346–55.
MLA
Neves do Amaral, Andreia et al. “Towards Improved Accuracy in Modeling Aeration Efficiency Through Understanding Bubble Size Distribution Dynamics.” WATER RESEARCH 131 (2018): 346–355. Print.
@article{8581886,
  author       = {Neves do Amaral, Andreia and Bellandi, Giacomo and Rehman, Usman and Neves, Ramiro and Amerlinck, Youri and Nopens, Ingmar},
  issn         = {0043-1354},
  journal      = {WATER RESEARCH},
  language     = {eng},
  pages        = {346--355},
  title        = {Towards improved accuracy in modeling aeration efficiency through understanding bubble size distribution dynamics},
  url          = {http://dx.doi.org/10.1016/j.watres.2017.10.062},
  volume       = {131},
  year         = {2018},
}

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