Abstract
A dramatic increase in plastic waste has resulted in a strong need to increase plastic recycling accordingly. A selective flotation has been highlighted due to its outstanding efficiency for the separation of mixed plastics with analogous physicochemical characteristics. In this study, the ef-fects of design and operational factors on the bubble’s hydrodynamic and mixing parameters in induced air flotation (IAF) with a mixing device were investigated through a design of experiment method (DOE) analysis for improving the plastic separation efficiency (i.e., PS and ABS). As a result of DOE analysis, the increase in the induced air tube diameter together with the rotational speed could generate a smaller bubble size. This led to the enhancement of the ratio of interfacial area to velocity gradient (a/G), which was interestingly found to be a significant factor affecting plastic recovery apart from the chemical agents. It demonstrates that operating IAF with a mixing device at a greater a/G ratio improved the plastic separation performance. These findings suggest that operating an IAF process with a mixing device at suitable a/G conditions could be a promising tech-nique for separating plastic wastes, which have similar physicochemical characteristics as PS and ABS.
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Fagkaew, P., Chawaloesphonsiya, N., Bun, S., & Painmanakul, P. (2022). Improving the Separation of PS and ABS Plastics Using Modified Induced Air Flotation with a Mixing Device. Recycling, 7(4). https://doi.org/10.3390/recycling7040044
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