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Potential use of an ultrasound antifouling technology as a ballast water treatment system

Academic Article
Publication Date:
2018
abstract:
The aim of this study was to investigate, at a laboratory scale, the potentialities of an ultrasound-based treatment initially designed to eliminate fouling, as a ballast water treatment system. Therefore, early life stages of three different zooplanktonic species (Amphibalanus amphitrite, Brachionus plicatilis and Anemia sauna) were exposed to ultrasound waves (20-22 kHz). The experimental set up included static assays with variations of time exposure (30 s, 60 s and 30 s on/60 s off/30 s on), material of tanks (stainless steel, galvanized steel and plastic) and position of the ultrasound source. Results showed that the treatment efficacy increased from 30 to 60 s and no differences were registered between 60 s-continuous exposure and pulse exposure. The highest efficacy was observed in Experiment I (metal-to-metal contact assay) with a mortality value of 93-95% for B. plicatilis and A. saline. It consisted of organisms located inside stainless steel tubes that were located in direct contact with the ultrasound source and treated for 60 s. Further, we found that, generally, A. amphitrite and B. plicatilis were the most resistant species to the ultrasound treatment whereas A. sauna was the most sensitive. We further discuss that US may unlikely be used for commercial vessels, but may be used to treat ballast water in smaller ballast tanks as on board of mega yachts.
Iris type:
01.01 Articolo in rivista
Keywords:
Ballast water; Efficacy; Marine environment; Sensitivity; Treatment; Ultrasound
List of contributors:
ESTEVEZ CALVAR, Noelia; Faimali, Marco; Garaventa, Francesca; Gambardella, Chiara
Authors of the University:
FAIMALI MARCO
GAMBARDELLA CHIARA
GARAVENTA FRANCESCA
Handle:
https://iris.cnr.it/handle/20.500.14243/352561
Published in:
JOURNAL OF SEA RESEARCH
Journal
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