The impact and control of biofouling in marine aquaculture: a review

Воздействие обрастания и методы его контроля в морской аквакультуре: обзор
Isla Fitridge, Tim Dempster, Jana Guenther, Rocky de Nys
2012-07-09

antifouling strategiesaquaculture infrastructurebiocidesbiofouling controlmarine aquaculture
Biofouling in marine aquaculture is a specific problem where both the target culture species and/or infrastructure are exposed to a diverse array of fouling organisms, with significant production impacts. In shellfish aquaculture the key impact is the direct fouling of stock causing physical damage, mechanical interference, biological competition and environmental modification, while infrastructure is also impacted. In contrast, the key impact in finfish aquaculture is the fouling of infrastructure which restricts water exchange, increases disease risk and causes deformation of cages and structures. Consequently, the economic costs associated with biofouling control are substantial. Conservative estimates are consistently between 5-10% of production costs (equivalent to US$ 1.5 to 3 billion yr(-1)), illustrating the need for effective mitigation methods and technologies. The control of biofouling in aquaculture is achieved through the avoidance of natural recruitment, physical removal and the use of antifoulants. However, the continued rise and expansion of the aquaculture industry and the increasingly stringent legislation for biocides in food production necessitates the development of innovative antifouling strategies. These must meet environmental, societal, and economic benchmarks while effectively preventing the settlement and growth of resilient multi-species consortia of biofouling organisms.
1
Biofouling causes substantial production impacts in marine aquaculture by affecting both cultured organisms and infrastructure.
2
Biofouling control costs are conservatively estimated at 5–10% of production costs, equivalent to US$1.5–3 billion annually.
3
Current control relies on avoiding natural recruitment, physical removal, and antifoulants, but stricter biocide regulations require innovative, environmentally, socially, and economically acceptable strategies.
4
In finfish aquaculture, infrastructure fouling restricts water exchange, increases disease risk, and deforms cages and other structures.
5
In shellfish aquaculture, fouling directly damages stock, interferes mechanically, creates biological competition, and modifies the culture environment.

biofouling in marine aquaculture, including fouling organisms affecting cultured shellfish, finfish, and aquaculture infrastructure

the production impacts, economic costs, and control strategies for biofouling, including prevention of settlement and growth of multispecies fouling communities

Publication Details
Publication Date
2012-07-09
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Isla Fitridge
Tim Dempster
Jana Guenther
Rocky de Nys
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%