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The Standard and Reverse Mode Operation of a Hydrocyclone for Microplastic Separation

Authors :
Thomas Senfter
Andreas Walter
Lukas Dür
Florian Alber
Manuel Berger
Michael Kraxner
Martin Pillei
Source :
Microplastics, Vol 3, Iss 1, Pp 22-30 (2024)
Publication Year :
2024
Publisher :
MDPI AG, 2024.

Abstract

Harmonization in the analytical framework is needed to detect, define and further categorize plastics released into the environment. In the range of particles smaller than 200 μm, hydrocyclones (HCs) have proven their capacity in removing microplastics efficiently by offering technical advantages at low operational costs. This publication aims to expand scientific knowledge by introducing four commercially available, low-priced microplastics to a pilot-scale HC setting. The physicochemical characteristics of particles as well as the separation efficiency of the test rig were investigated in depth. Particles with a density of >1000 kg/m3 passed the primary vortex and were discharged into the underflow, allowing us to employ standard mode operation. Particles with a density of 3 entered the secondary vortex and were removed through the overflow. As expected, separation efficiencies were found to be higher for particles revealing a greater density difference when compared with the mobile phase water. Furthermore, an increase in the inlet volume flow revealed significant positive impacts on the separation efficiency for three plastics to a certain threshold. Data on standard and reverse mode operations presented in this publication can lay out an important source for the harmonization and standardization of future HC research, with the goal of overcoming plastic pollution by developing economically competitive separation processes.

Details

Language :
English
ISSN :
26738929
Volume :
3
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Microplastics
Publication Type :
Academic Journal
Accession number :
edsdoj.6cd45aad1cef40dbaba231af40cbd58c
Document Type :
article
Full Text :
https://doi.org/10.3390/microplastics3010002