首页> 美国卫生研究院文献>Saudi Journal of Biological Sciences >Assessing water quality and classifying trophic status for scientifically based managing the water resources of the Lake Timsah the lake with salinity stratification along the Suez Canal
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Assessing water quality and classifying trophic status for scientifically based managing the water resources of the Lake Timsah the lake with salinity stratification along the Suez Canal

机译:评估水质并对营养状况进行分类以便以科学的方式管理蒂姆萨湖(苏木运河沿岸盐度分层的湖泊)的水资源

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摘要

Lake Timsah is considered as the biggest water body at Ismailia City with a surface area of 14 km2. It is a saline shallow water basin lies approximately mid-way between the south city of Suez and the north city of Port Said at 30o35′46.55“N and 32o19′30.54″E. Because it receives water with high and low salinities, salinity stratification is producing in the Lake Timsah, with values of 14–40‰ for the surface water and over 40‰ for the bottom water. The temperature of the lake water decreased to below 19 °C in the winter and rose to above 29 °C in the summer; the concentration of dissolved oxygen ranged between 6.5 and 12.2 l−1 and the pH fluctuated between 7.9 in its lower value and 8.2 in its higher value. Water transparency was very low as indicated by Secchi disc readings recorded during this study and varied between 0.3 and 2.7 m. The main chemical nutrient (phosphorus) reached its highest levels of 96 µg l−1 in winter and their lowest values of 24 µg l−1 during summer. This nutrient concentration is high especially by comparing with those of unpolluted marine waters, but is typical of the more eutrophic coastal waters worldwide. The composition and abundance of phytoplankton with dominancy of diatoms and increased population density (20,986 cell l−1) reflect the eutrophic condition of the lake. The intensive growth of phytoplankton was enriched by high concentration of chlorophyll a with annual values ranged between 6.5 and 56 µg l−1. The objective of the present work was quantitative assessment of the quality of the water of the Lake Timsah using different approaches. During the present study, three different approaches were applied for the quantitative assessment of Lake Timsah water quality: the trophic state index (TST); trophic level index (TLI) and water quality index (WQI). Application of the trophic state and trophic level indices (TSI & TLI) revealed that the Lake Timsah has trophic indices of 60 and 5.2 for TSI and TLI, respectively. Both indices reflected the eutrophic condition of the lake waters and confirmed that the eutrophication is a major threat in the Lake Timsah. On the other hand, the WQI calculated for the Lake Timsah during the present study with an average of 49 demonstrated that the water of the Lake Timsah is bad and unsuitable for main and/or several uses. Moreover, WQI allows accounting for several water resource uses and can serve a more robust than TSI and/or TLI and can be used effectively as a comprehensive tool for water quality quantification. In conclusion, the three subjective indices used for the assessment process for the lake water are more suitable and effective for needs of the sustainable water resources protection and management of the Lake Timsah.
机译:蒂姆萨湖被认为是伊斯玛利亚市最大的水体,表面积为14 km 2 。这是一个盐渍浅水盆地,位于苏伊士南部城市和北部塞得港北部城市之间,大约在30 o 35′46.55” N和32 o 19′30.54″ E。由于它接受高盐度和低盐度的水,因此在蒂姆萨湖正在形成盐度分层,地表水的盐度值为14–40‰,而底水的盐度则超过40‰。冬季,湖水的温度降至19°C以下,夏季的温度升至29°C以上。溶解氧的浓度在6.5至12.2 l −1 之间,pH值在较低的7.9和较高的8.2之间波动。如本研究中记录的Secchi磁盘读数所示,水的透明度非常低,在0.3至2.7μm之间变化。冬季,主要化学营养素(磷)达到最高水平96 µg l -1 ,夏季达到最低值24µggll -1 。尤其是与未污染的海水相比,该养分浓度很高,但在世界范围内富营养化的沿海水域中却很典型。浮游植物的组成和丰富度以及硅藻的优势和种群密度的增加(20,986个细胞l −1 )反映了该湖的富营养化状况。高浓度的叶绿素a丰富了浮游植物的集约生长,其年产值在6.5至56µg l -1 之间。本工作的目的是采用不同的方法定量评估蒂姆萨湖的水质。在本研究中,三种不同的方法被用于定量评估蒂姆萨湖水质:营养状态指数(TST);营养状态指数(TST)。营养级指数(TLI)和水质指数(WQI)。营养状态和营养水平指数(TSI和TLI)的应用表明,蒂姆萨湖的TSI和TLI营养指数分别为60和5.2。两项指标均反映了湖水的富营养化状况,并证实了富营养化是蒂姆萨湖的主要威胁。另一方面,在本研究中为蒂姆萨湖计算的水质指数平均为49,这表明蒂姆萨湖的水质不好,不适合主要用途和/或多种用途。此外,WQI可以考虑多种水资源使用情况,并且可以比TSI和/或TLI更加强大,并且可以有效地用作水质定量的综合工具。总之,用于湖水评估过程的三个主观指标更适合并有效满足蒂姆萨湖可持续水资源保护和管理的需求。

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