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Evaluation of the Effect of Operating Parameters on the Performance of Orifice/Porous Pipe Type Micro-bubble Generator

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The micro-bubble generator (MBG) is a novel aeration technology utilizing the concept of fluid flow through an orifice, where air is sucked into the internal chamber of the MBG by… Click to show full abstract

The micro-bubble generator (MBG) is a novel aeration technology utilizing the concept of fluid flow through an orifice, where air is sucked into the internal chamber of the MBG by the pressure difference created by the orifice and immediately pushed by the high-velocity flow of the fluid. This mechanism creates micro-size bubbles with a high dissolution rate. This study focused on studying the effect on the oxygen dissolution rate of the two most important operating parameters, i.e. the volumetric flow rate of the liquid (Q L ) and the volumetric flow rate of the air (Q G ). Various combinations of values for Q L and Q G were systematically compared by means of the oxygen mass transfer coefficient (k L a). The experiment was carried out in a transparent container of 2.8 m x 0.6 m x 0.4 m filled with tap water that was aerated using an orifice/porous-pipe type MBG. The dissolved oxygen (DO) values were measured at distances of 60 cm, 120 cm, and 180 cm from the MBG outlet. The experiment was designed with five different values for Q L and Q G respectively. The results showed that the value of k L a, which is proportional to the oxygen dissolution rate, increased asymptotically with increasing Q L value, while the Q G values did not significantly affect the k L a value.

Keywords: orifice porous; operating parameters; bubble generator; micro bubble; rate; porous pipe

Journal Title: Journal of Engineering and Technological Sciences
Year Published: 2020

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