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Environmental Quality Assessment of Bizerte Lagoon (Tunisia) Using Living Foraminifera Assemblages and a Multiproxy Approach

机译:使用有孔有孔虫组件和多代理方法对比塞大泻湖(突尼斯)进行环境质量评估

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摘要

This study investigated the environmental quality of the Bizerte Lagoon (Tunisia) through an integrated approach that combined environmental, biogeochemical, and living benthic foraminiferal analyses. Specifically, we analyzed the physicochemical parameters of the water and sediment. The textural, mineralogical, and geochemical characteristics of the sediment, including total organic carbon, total nitrogen, simultaneously extracted metals (SEM), acid volatile sulfides (AVS), chlorophyll a, CaCO3, and changes in bacterial populations and carbon isotopes were measured. The SEM/AVS values indicated the presence of relatively high concentrations of toxic metals in only some areas. Foraminiferal assemblages were dominated by species such as A. parkinsoniana (20–91%), Bolivina striatula (<40%), Hopkinsina atlantica (<17%), and Bolivina ordinaria (<15%) that cannot be considered typical of impacted coastal lagoons both in Mediterranean and northeast Atlantic regions. The results of this work suggest that Bizerte Lagoon is a unique setting. This lagoon is populated by typical marine species that invaded this ecosystem, attracted not only by the prevailing favorable environmental conditions but also by the abundance and quality of food. The results indicate that the metal pollution found in some areas have a negative impact on the assemblages of foraminifera. At present, however, this negative impact is not highly alarming.
机译:这项研究通过结合环境,生物地球化学和活底栖有孔虫分析的综合方法,调查了比塞大泻湖(突尼斯)的环境质量。具体来说,我们分析了水和沉积物的理化参数。测量了沉积物的质地,矿物学和地球化学特征,包括总有机碳,总氮,同时提取的金属(SEM),酸挥发性硫化物(AVS),叶绿素a,CaCO3以及细菌种群和碳同位素的变化。 SEM / AVS值表明仅在某些区域中存在较高浓度的有毒金属。有孔虫的组合主要由不能被认为是典型的沿海沿海受害物种的物种组成,如A. parkinsoniana(20–91%),细纹玻利维亚(<40%),Hopkinsina atlantica(<17%)和Bolivina ordinaria(<15%)。地中海和东北大西洋地区的泻湖。这项工作的结果表明,比塞大泻湖是一个独特的环境。这个泻湖由入侵该生态系统的典型海洋物种组成,不仅受到当时有利的环境条件的吸引,而且还受到食物的丰度和质量的吸引。结果表明,在某些地区发现的金属污染对有孔虫的组成有负面影响。但是,目前这种负面影响并不十分令人震惊。

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