Microbubble and nanobubble-based gas flotation for oily wastewater treatment: a review

Author:

Shen Wanhua1,Mukherjee Debjani1,Koirala Narayan1,Hu Guangji2ORCID,Lee Kenneth3ORCID,Zhao Min4,Li Jianbing1

Affiliation:

1. Environmental Engineering Program, University of Northern British Columbia, 3333 University Way, Prince George, BC V2N 4Z9, Canada

2. School of Engineering, University of British Columbia, Okanagan Campus, 1137 Alumni Avenue, Kelowna, BC V1V 1V7, Canada

3. Ecosystem Science, Fisheries and Oceans Canada, Ottawa, ON KIA 0E6, Canada

4. School of Life and Environmental Sciences, Wenzhou University (WZU), Wenzhou, Zhejiang Province, 325035, China

Abstract

Gas flotation for oily wastewater treatment is based on the attachment of gas bubbles to oil droplets to produce lighter aggregates that rise to the wastewater surface. It is a feasible, promising, and effective method for oily wastewater treatment due to its high separation efficiency with no secondary contamination, cost-effectiveness, and simple operation. This review focuses on separating oil from emulsions by gas flotation using microbubbles (MBs) and nanobubbles (NBs), which offer the advantages of small bubble size, large specific surface area, and slow rising velocity. The properties of different types of gas bubbles and their generation methods were discussed. Different gas flotation system designs and operational parameters were summarized for dissolved gas flotation, induced gas flotation, and electrolytic flotation (EF). The review illustrated that oil removal efficiency in MB- and NB-based gas flotation was affected by various factors including initial oil concentration, pH, temperature, flotation time, and oil droplet size.

Publisher

Canadian Science Publishing

Subject

General Environmental Science

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