Metals and suspended solids in the effluents from in-water hull cleaning by remotely operated vehicle (ROV): Concentrations and release rates into the marine environment SCIE SCOPUS

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Title
Metals and suspended solids in the effluents from in-water hull cleaning by remotely operated vehicle (ROV): Concentrations and release rates into the marine environment
Author(s)
Soon, Zhi Yang; Kim, Taek Hyun; Jung, Jee Hyun; Kim, Moon Koo
KIOST Author(s)
Kim, Taek Hyun(김택현)Jung, Jee Hyun(정지현)Kim, Moon Koo(김문구)
Alternative Author(s)
Soon Zhi; 김택현; 정지현; 김문구
Publication Year
2023-10
Abstract
An increase in the use of ROVs for in-water hull cleaning (IWC) has led to the need to understand the risks to the marine environment posed by the release of IWC effluents. The primary objective of this research is to investigate the characteristics of wastewater generated during IWC, specifically concerning suspended solids (SS) and metal concentrations, and their release rates and total load to the environment. The IWC effluents contain substantial amounts of SS and metals, with Cu and Zn being the most prevalent. These metals are predominantly associated with fine antifouling paint particles, posing a potential risk of secondary pollution upon release into the marine environment. While the treatment systems demonstrated effectiveness in reducing SS and particulate metals, achieving complete removal of dissolved and particulate metals below ambient levels proved to be challenging. To mitigate environmental risks, this study proposes, based on the particle size analysis, the implementation of multistage filtration systems with an optimal filtration pore size for the effluent treatment. In conclusion, we highlight the potential environmental risks of IWC activities. As most metals have a strong affinity towards particles in wastewater, effective removal of particles is essential to alleviate environmental stress at IWC sites.
ISSN
0304-3894
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/44655
DOI
10.1016/j.jhazmat.2023.132456
Bibliographic Citation
Journal of Hazardous Materials, v.460, 2023
Publisher
Elsevier BV
Keywords
Environmental risk; Antifouling paint particle; Marine ecosystem; Particle size distribution; Leaching
Type
Article
Language
English
Document Type
Article
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