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Mapping the potential for offshore aquaculture of salmonids in the Yellow Sea

Shuang-En Yu; Shuang-Lin Dong; Zhi-Xin Zhang; Yu-Yang Zhang; Gianluca Sarà; Jie Wang; Yun-Wei Dong
Marine Life Science & Technology · Vol. 4, Issue 3 · pp. 329-342 · 2022

Abstract

Mariculture has been one of the fastest-growing global food production sectors over the past three decades. With the congestion of space and deterioration of the environment in coastal regions, offshore aquaculture has gained increasing attention. Atlantic salmon ( Salmo salar ) and rainbow trout ( Oncorhynchus mykiss ) are two important aquaculture species and contribute to 6.1% of world aquaculture production of finfish. In the present study, we established species distribution models (SDMs) to identify the potential areas for offshore aquaculture of these two cold-water fish species considering the mesoscale spatio-temporal thermal heterogeneity of the Yellow Sea. The values of the area under the curve (AUC) and the true skill statistic (TSS) showed good model performance. The suitability index (SI), which was used in this study to quantitatively assess potential offshore aquaculture sites, was highly dynamic at the surface water layer. However, high SI values occurred throughout the year at deeper water layers. The potential aquaculture areas for S. salar and O. mykiss in the Yellow Sea were estimated as 52,270 ± 3275 (95% confidence interval, CI) and 146,831 ± 15,023 km 2 , respectively. Our results highlighted the use of SDMs in identifying potential aquaculture areas based on environmental variables. Considering the thermal heterogeneity of the environment, this study suggested that offshore aquaculture for Atlantic salmon and rainbow trout was feasible in the Yellow Sea by adopting new technologies (e.g., sinking cages into deep water) to avoid damage from high temperatures in summer.

Bibliographic Information

JournalMarine Life Science & Technology
PublisherSpringer
Publication Date2022-08-18
Publication Year2022
Volume4
Issue3
Pages329-342
Document TypeJournal Article
eISSN2662-1746
DOI10.1007/s42995-022-00141-2

Access Information

NARA Access Coverage2019-01-01~Current
Journal Homepagehttps://www.springer.com/journal/42995
Publisher PageOpen Publisher Page
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