Evolution of primary production and its drivers on the Lebanese coast between 1986 and 2013

Q3 Environmental Science
A. Fadel, Lama Salameh, Malak Kanj, A. Kobaissi
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引用次数: 0

Abstract

Abstract Physical-biogeochemical models help us to understand the dynamics and the controlling factors of primary production. In this study, the outputs of a validated hydrodynamic and biogeochemical model were used to elucidate the primary production dynamics between 1992 and 2012 for three studied sites on the Lebanese coast: Naqoura, Beirut, and Tripoli. The results showed that primary production presents a homogeneous spatial distribution along the Lebanese coastline. The phytoplankton community has a low optimal temperature. The thermocline develops in March, with maximum stratification in August and fades in October. Chlorophyll, dissolved oxygen and salinity were positively correlated throughout the water column. A significant increasing trend of sea surface temperature was found on the Lebanese coast over 27 years, between 1986 and 2013. Annual averages increased from 22°C in 1986 to 23.1°C in 2013 with the highest recorded average temperature of 23.7 °C in 2010.
1986年至2013年间黎巴嫩海岸初级生产及其驱动因素的演变
物理-生物地球化学模型有助于我们了解初级生产的动态和控制因素。在这项研究中,利用一个经过验证的水动力和生物地球化学模型的输出来阐明黎巴嫩沿海三个研究地点(Naqoura、Beirut和Tripoli) 1992年至2012年的初级生产动态。结果表明:黎巴嫩沿海地区初级生产空间分布呈均匀分布;浮游植物群落的最适温度较低。温跃层在3月形成,8月分层最大,10月减弱。叶绿素、溶解氧和盐度在整个水体中呈正相关。1986年至2013年间,黎巴嫩海岸的海表温度呈显著上升趋势。年平均气温从1986年的22°C上升到2013年的23.1°C, 2010年的最高平均气温为23.7°C。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Limnological Review
Limnological Review Environmental Science-Ecology
CiteScore
1.60
自引率
0.00%
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0
审稿时长
16 weeks
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