4.7 Review

A critical review of the recent developments in micro-nano bubbles applications for domestic and industrial wastewater treatment

期刊

ALEXANDRIA ENGINEERING JOURNAL
卷 61, 期 8, 页码 6591-6612

出版社

ELSEVIER
DOI: 10.1016/j.aej.2021.11.0411110-0168

关键词

Wastewater treatment; Micro-nano bubbles; Application; Bubble characterization; Mass transfer

资金

  1. Abu Dhabi Department of Educa-tion and Knowledge (ADEK) through ADEK Award for Research Excellence (AARE) [AARE19-047]
  2. National Water and Energy Center at United Arab Emirates University, UAE [21N226]
  3. National Research Foundation of Korea [4120200313708] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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This review examines the advantages of using micro-nano bubble (MNB) technology in wastewater treatment, including performance differences among bubble types, removal of target pollutants, bubble characterization techniques, and the impact of bubble size on treatment efficiency. Various applications of MNBs are also explored.
This review highlights the advantages of using micro-nano bubble (MNB) technology in various applications of wastewater treatment. Initially, the review examines key performance dissimilarities among different types of bubbles toward the treatment process. Specifically, a qualitative and quantitative meta-analysis of the effects of MNBs in the removal of target pollutants found in wastewater from different sources is conducted. A review on the MNBs characterization techniques to identify bubble size, size distribution, and accordingly bubble rising velocity as well as gas mass transfer rates, zeta potential, generation of free radicals, and bubble stability is also included. Moreover, the effect of bubble size on the efficiency of municipal and industrial wastewater treatment processes is evaluated. Finally, the applications of MNBs are investigated to explore their effectiveness in different wastewater treatment processes, such as ozonation, flotation/dissolved air flotation, aeration, and other processes. It is anticipated that the use MNBs could be a promising sustainable and low-cost wastewater treatment technology.

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