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首页> 外文期刊>Environmental earth sciences >Major ion geochemistry of Ghannouch-Gabes coastline (at Southeast Tunisia, Mediterranean Sea): study of the impact of phosphogypsum discharges by geochemical modeling and statistical analysis
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Major ion geochemistry of Ghannouch-Gabes coastline (at Southeast Tunisia, Mediterranean Sea): study of the impact of phosphogypsum discharges by geochemical modeling and statistical analysis

机译:Ghannouch-Gabes海岸线(在突尼斯东南部,地中海)的主要离子地球化学:通过地球化学建模和统计分析研究磷石膏排放的影响

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摘要

Since the 1970s, the Ghannouch-Gabes coastline (Southeast of Tunisia, Mediterranean Sea) has experienced significant industrialization, especially after the chemical industries were set up for phosphate ore processing in Ghannouch. These industries are the source of various discharges, phosphogypsum (PG) in particular, which is directly discharged into the sea, disastrously impacting the marine environment. The present study utilized geochemical modeling (PHREEQC) and multivariate statistical tools to identify and analyze the natural and anthropogenic factors governing the chemical composition of the major elements of the Ghannouch-Gabes coastal waters, especially through the study of the impact of the compounds derived from the PG discharge. To achieve this, a geochemical modeling and statistical investigation was conducted by dividing the study area into two zones: I and II. Zone I was located in the south of the study area, between the wadi Gabes and wadi al Fard. In Zone I, the water was less influenced by the PG inflow. The concentrations of the major elements, temperature values, pH, and dissolved oxygen content were comparable with those of the average surface seawater. Zone I water was supersaturated in terms of calcite and undersaturated with respect to gypsum and fluorite. Zone II, located in the north of the study area, between wadi Ettine and wadi Gabes showed water that was strongly influenced by the release of PG, with important amounts of Ca2+, SO42-, and F-. Application of the PHREEQC program showed that the PG released in this area was almost completely dissolved, a process accelerated by the high acidity and the high temperature of the water in this zone.
机译:自1970年代以来,Ghannouch-Gabes海岸线(突尼斯东南部,地中海)经历了显着的工业化,特别是在加纳努什建立了化学工业用于磷矿石加工之后。这些工业是各种排放物的来源,尤其是磷石膏(PG),其直接排放到海洋中,对海洋环境造成灾难性的影响。本研究利用地球化学建模(PHREEQC)和多元统计工具来识别和分析控制Ghannouch-Gabes沿海水域主要元素化学组成的自然和人为因素,特别是通过研究源自PG放电。为了实现这一目标,通过将研究区域分为两个区域进行了地球化学建模和统计调查:I和II。第一区位于研究区的南部,在瓦迪加布斯和瓦迪阿尔法德之间。在I区,水受PG流入的影响较小。主要元素的浓度,温度值,pH和溶解氧含量与平均地表海水相当。 I区的水在方解石方面过饱和,而在石膏和萤石方面则过饱和。位于研究区北部,瓦迪埃蒂汀和瓦迪加贝斯之间的II区显示水受到PG释放的强烈影响,其中含有大量的Ca2 +,SO42-和F-。 PHREEQC程序的应用表明,该区域释放的PG几乎完全溶解,该区域的高酸度和高温加速了该过程。

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