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Removal of dissolved oxygen from water by nitrogen stripping coupled with vacuum degassing in a rotor–stator reactor

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dc.contributor.author Zhao, Zemeng
dc.contributor.author Liu, Zhibang
dc.contributor.author Xiang, Yang
dc.contributor.author Arowo, Moses NyoTonglo
dc.contributor.author Shao, Lei
dc.date.accessioned 2021-11-23T12:44:52Z
dc.date.available 2021-11-23T12:44:52Z
dc.date.issued 2021
dc.identifier.uri https://doi.org/10.3390/pr9081354
dc.identifier.uri http://ir.mu.ac.ke:8080/jspui/handle/123456789/5444
dc.description.abstract Oxygen is a harmful substance in many processes because it can bring out corrosion and oxidation of food. This study aimed to enhance the removal of dissolved oxygen (DO) from water by employing a novel rotor–stator reactor (RSR). The effectiveness of the nitrogen stripping coupled with vacuum degassing technique for the removal of DO from water in the RSR was investigated. The deoxygenation efficiency (η) and the mass transfer coefficient (KLa) were determined under various operating conditions for the rotational speed, liquid volumetric flow rate, gas volumetric flow rate, and vacuum degree. The nitrogen stripping coupled with vacuum degassing technique achieved values for η and KLa of 97.34% and 0.0882 s−1, respectively, which are much higher than those achieved with the vacuum degassing technique alone (η = 89.95% and KLa = 0.0585 s−1). A correlation to predict the KLa was established and the predicted KLa values were in agreement with the experimental values, with deviations generally within 20%. The results indicate that RSR is a promising deaerator thanks to its intensification of gas–liquid contact. en_US
dc.language.iso en en_US
dc.publisher Multidisciplinary digital publishing institute en_US
dc.subject Deoxygenation efficiency en_US
dc.subject Vacuum–N2–H2O–O2 system en_US
dc.subject Rotor–stator reactor en_US
dc.subject Mass transfer en_US
dc.title Removal of dissolved oxygen from water by nitrogen stripping coupled with vacuum degassing in a rotor–stator reactor en_US
dc.type Article en_US


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