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第 3 期 王首吉等: 粤东海域表层海水叶绿素 a 时空分布特征 365
in eastern Guangdong and southern Fujian coastal seas to variations of nutrient and the response of phytoplankton
the local wind variation[J]. Haiyang Xuebao, 2016, in PRE and adjacent sea areas[J]. Acta Ecologica Sinica,
38(9): 1 − 12. 2015, 35(12): 4034 − 4044.
[16] 王翠,郭晓峰,方婧,等. 闽浙沿岸流扩展范围的季 [22] 郑鑫. 不同盐度滨海水体浮游植物及微生物对氮磷的
节特征及其对典型海湾的影响 [J]. 应用海洋学学 响应过程研究 [D]. 烟台:中国科学院大学(中国科
报,2018,37(1) :1 − 8. 学院烟台海岸带研究所) ,2023.
Wang C, Guo X F, Fang J, et al. Characteristics of sea- Zheng X. Phytoplankton and microbial response pro-
sonal spatial expansion of Fujian and Zhejiang coastal cesses to nitrogen and phosphorus in coastal waters at
current and their bay effects[J]. Journal of Applied different salinities[D]. Yantai: University of Chinese
Oceanography, 2018, 37(1): 1 − 8. Academy of Sciences (Yantai Institute of Coastal Zone
[17] 曹兵,高清清,何佩东,等. 江苏海域赤潮发生消亡 Research, Chinese Academy of Sciences), 2023.
与水文气象因子关系研究 [J]. 海洋湖沼通报,2019 [23] 舒业强,王强,俎婷婷. 南海北部陆架陆坡流系研究
(3) :36 − 42. 进展 [J]. 中国科学:地球科学,2018,48(3) :
Cao B, Gao Q Q, He P D, et al. Study on the relation- 276 − 287.
ship between occurrence and extinction of red tide and Shu Y Q, Wang Q, Zu T T. Progress on shelf and slope
the hydrological and meteorological factors in Jiangsu circulation in the northern South China Sea[J]. Science
sea area[J]. Transactions of Oceanology and Limnology, China Earth Sciences, 2018, 48(3): 276 − 287.
2019(3): 36 − 42. [24] 黄银爽,欧林坚,杨宇峰. 广东南澳岛大型海藻龙须
[18] 刘子萌,冯民权,杨锐婧,等. 漳泽水库浮游植物群 菜与浮游植物对营养盐的竞争利用 [J]. 海洋与湖
落结构特征及其影响因子 [J]. 黑龙江大学工程学 沼,2017,48(4) :806 − 813.
报,2024,15(1) :76 − 84. Huang Y S, Ou L J, Yang Y F. Nutrient competition
Liu Z M, Feng M Q, Yang R J, et al. Characteristics and between macroalgae Gracilaria lemaneiformis and
influencing factors of phytoplankton community struc- phytoplankton in coastal waters of Nan’ao Island,
ture in Zhangze Reservoir[J]. Journal of Engineering of Guangdong[J]. Oceanologia et Limnologia Sinica, 2017,
Heilongjiang University, 2024, 15(1): 76 − 84. 48(4): 806 − 813.
[19] 陈菁怡,耿兆楣,张秋英,等. 白洋淀浮游生物群落 [25] 陈芸芝,郑高强,汪小钦,等. 基于叶绿素 a 浓度时
结构及关键环境因子分析 [J]. 青岛农业大学学报 序变化的赤潮分布信息遥感提取 [J]. 福州大学学报
(自然科学版) ,2024,41(1) :50 − 61. (自然科学版) ,2013,41(6) :1002 − 1008.
Chen J Y, Geng Z M, Zhang Q Y, et al. Analysis of Chen Y Z, Zheng G Q, Wang X Q, et al. Red tide distri-
plankton community structure and key environmental bution information extraction based on change in time
factors for Baiyangdian Lake[J]. Journal of Qingdao series of chlorophyll-a concentration[J]. Journal of
Agricultural University (Natural Science), 2024, 41(1): Fuzhou University (Natural Science Edition), 2013,
50 − 61. 41(6): 1002 − 1008.
[20] 毕凡,高松,奉杰,等. 赤潮预报技术进展及在秦皇 [26] 陈曦,汪小钦,陈芸芝. 赤潮水体水质遥感参数时空
岛海域的应用前景 [J]. 海洋预报,2024,41(6) : 变化分析 [J]. 遥感信息,2014,29(3) :88 − 93.
113 − 125. Chen X, Wang X Q, Chen Y Z. Temporal variation ana-
Bi F, Gao S, Feng J, et al. Red tide forecasting methods lysis on remote sensing parameters of water quality in
and applications in Qinhuangdao coastal areas[J]. Mar- red tide water[J]. Remote Sensing Information, 2014,
ine Forecasts, 2024, 41(6): 113 − 125. 29(3): 88 − 93.
[21] 张伟,孙健,聂红涛,等. 珠江口及毗邻海域营养盐 [27] Attila J, Koponen S, Kallio K, et al. MERIS case Ⅱ wa-
对浮游植物生长的影响 [J]. 生态学报,2015,35 ter processor comparison on coastal sites of the northern
(12) :4034 − 4044. Baltic Sea[J]. Remote Sensing of Environment, 2013,
Zhang W, Sun J, Nie H T, et al. Seasonal and spatial 128: 138 − 149.