Literature DB >> 31778869

High-pressure jet-induced hydrodynamic cavitation as a pre-treatment step for avoiding cyanobacterial contamination during water purification.

Štěpán Zezulka1, Eliška Maršálková2, František Pochylý3, Pavel Rudolf3, Martin Hudec3, Blahoslav Maršálek2.   

Abstract

Due to specific physical properties, hydrodynamic cavitation (HC) is assigned to the powerful technologies for treating the biotic contamination in water including cyanobacteria. Contaminated water stream (CWS) can be cavitated directly by passing through some HC device, or indirectly when high-pressure jet stream (HPJS) is directed against its flow. Relatively small HPJS stream can thus treat a big volume of CWS in a short time or even work in continuous mode. Cyanobacteria floating in the CWS are forced to flow through the mixing cavitation zone. Within 2 h after single HC treatment, cyanobacterial cell suspensions showed disintegration of larger colonies and enhanced biomass sedimentation. Additional pre-treatment of CWS with low amounts of hydrogen peroxide (H2O2; 33, 66 and 99 μmol/L) enhanced the effect of HC and led to further inhibition of cyanobacterial photosynthesis (maximum quantum yield of photosystem II decreased by up to 60%). The number of cyanobacterial cells in the treated CWS decreased continuously over 48 and 72 h, though some cells remained alive and were able to recover photosynthetic activity. The technique proposed (direction of a HPJS against a CWS and pre-treatment with low H2O2 concentrations) provides (i) effective removal of cells from the water column, and (ii) reduced contamination by organic compounds released from the cells (especially cyanotoxins) as the cell membranes are not destroyed and the cells remain alive. This process shows potential as an effective pre-treatment step in water purification processes related to cyanobacterial contamination.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Advanced oxidation processes; Biotic contamination removal; Continuous treatment technology; High-pressure water jet; Hydrodynamic cavitation; Water treatment

Mesh:

Substances:

Year:  2019        PMID: 31778869     DOI: 10.1016/j.jenvman.2019.109862

Source DB:  PubMed          Journal:  J Environ Manage        ISSN: 0301-4797            Impact factor:   6.789


  3 in total

1.  Design and optimization of a cavitating device for Congo red decolorization: Experimental investigation and CFD simulation.

Authors:  Zahra Abbas-Shiroodi; Mohammad-Taghi Sadeghi; Soroush Baradaran
Journal:  Ultrason Sonochem       Date:  2020-11-13       Impact factor: 7.491

2.  A novel continuous hydrodynamic cavitation technology for the inactivation of pathogens in milk.

Authors:  Xun Sun; Xiaoxu Xuan; Li Ji; Songying Chen; Jingting Liu; Shan Zhao; Seulgi Park; Joon Yong Yoon; Ae Son Om
Journal:  Ultrason Sonochem       Date:  2020-11-13       Impact factor: 7.491

3.  Experimental and numerical studies on the cavitation in an advanced rotational hydrodynamic cavitation reactor for water treatment.

Authors:  Xun Sun; Xiaoxu Xuan; Yongxing Song; Xiaoqi Jia; Li Ji; Shan Zhao; Joon Yong Yoon; Songying Chen; Jingting Liu; Guichao Wang
Journal:  Ultrason Sonochem       Date:  2020-08-19       Impact factor: 7.491

  3 in total

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