浮游植物
中国
遥感
卫星
丰度(生态学)
环境科学
海洋学
计算机科学
气象学
地理
地质学
生态学
天文
营养物
考古
生物
物理
作者
Yueqi Wang,Dongyan Liu,Yujue Wang,Meng Gao,Zhiqiang Gao
标识
DOI:10.1109/tgrs.2024.3383391
摘要
Phytoplankton size structure is crucial for the functionality of ocean food web and biogeochemical cycling, serving as a key indicator for assessing the state of marine ecosystems quantitatively. Despite the development of various algorithms to quantify phytoplankton size classes (PSCs) using satellite ocean color data, their reliability in optically complex coastal regions remains uncertain and requires regional optimization. In this study, we optimized and compared typical abundance-based three-component PSCs models for the Bohai and Yellow Seas of China (BYS) using an extensive in situ PSCs dataset derived from pigment samples analyzed via high-performance liquid chromatography (HPLC). The optimized SST-dependent abundance-based PSCs model (SA-PSC-BYS) generated the most accurate remotely sensed PSCs datasets for the BYS, and effectively reproduced the PSCs patterns observed in previous in situ studies. These patterns highlight the prevalence of micro- and pico-phytoplankton at higher and lower total biomass levels, respectively, and the dominance of nano-phytoplankton at mid-range of total biomass. This reliable PSCs model will be invaluable for future remote sensing studies aiming to understand the detailed spatiotemporal variability of PSCs in the BYS. Additionally, it has the potential to enhance our understanding of the trophic connections between phytoplankton size structure and fisheries, thereby facilitating the development of effective marine management strategies.
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