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On the use of validated ocean models to investigate the evolution of primary productivity in the Levantine Sea

机译:关于使用经过验证的海洋模型来研究左海洋初级生产力的演变

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Marine ecosystems are vital natural resources that contribute to the global biogeochemical cycle, food, and energy production. In order to monitor and evaluate variations of different factors for decision making processes, validated ecosystem models were used in this study to analyze the evolution of different variables: temperature and salinity concentrations (from 1987 to 2014) and nitrate, phosphate, dissolved oxygen, chlorophyll concentrations, and phytoplankton biomass (from 1999 to 2014) in four sites (from 0 to 66 m depth) along the Levantine Sea: Lebanon, Turkey, Egypt and in the Open Sea. Principal component analysis and TRIX were then applied. Spatio-temporal analysis and PCA results showed that phytoplankton biomass is temporally affected by temperature and nutrients (in all stations) as well as salinity in some cases, in addition to its decrease with depth. TRIX analysis showed that all stations had higher primary productivity, in the first half of the year (January-May). Intense anthropogenic activities in Turkey and Egypt have altered the ecosystem’s stability and affected the phytoplankton biomass.
机译:海洋生态系统是重要的自然资源,有助于全球生物地球化学循环,食品和能源生产。为了监测和评估决策过程的不同因素的变化,在本研究中使用了验证的生态系统模型,分析了不同变量的演变:温度和盐度浓度(从1987年至2014年)和硝酸盐,磷酸盐,溶解氧,叶绿素浓度和浮游植物生物量(从1999年到2014年)在左边海(黎巴嫩,土耳其,埃及和公海)中四个地点(从0到66米深度)。然后应用主成分分析和Trix。时空分析和PCA结果表明,在某些情况下,浮游植物生物量在时间上受到温度和营养物质(在所有站中)以及盐度,除了其深度的减少。 Trix分析表明,在今年上半年(1月至5月),所有车站都具有更高的初级生产率。土耳其和埃及的强烈人为活动改变了生态系统的稳定性并影响了浮游植物生物量。

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