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首页> 外文期刊>Journal of water resource and protection >Effect of Talus Deposit Excavations on Hydrogeochemical Characteristics of Kuvars Spring Water, Maltepe, Istanbul, Turkey
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Effect of Talus Deposit Excavations on Hydrogeochemical Characteristics of Kuvars Spring Water, Maltepe, Istanbul, Turkey

机译:距骨沉积物开挖对土耳其伊斯坦布尔马尔特佩的Kuvars泉水水文地球化学特征的影响

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Spring waters consumed for drinking purposes should be clean and quality. These waters with balanced mineral distribution, which do not contain organic substances, whose physical and chemical caharacteristics comply with certain quality parameters and which do not negatively affect human health are identified as healthy water. Kuvars water is a spring water which is pumped out from the draw well at the Camurluk stream basin of Maltepe province of Istanbul and filled into bottles. The Camurluk stream basin is approximately 4.5 km~2. The Camurluk stream basin is sedimentary rocks and talus deposit outcrops. Reaching of trace elements, which is found more in the talus deposit samples than outcropping quartzarenite at the basin, to underground aquifer as ions under effect of rains, water rock interaction, leakage and filtration, is prevented by illite type clay levels existing within the talus deposit stack, which have upto 20 cm thickness. However, negative effects of the excavation that were made at the talus deposit reflect on the hydrologic cycle and chemical compositions of well waters. This effect was at first negatively affected the physical characteristics of the well waters. During the rainy periods, the water in the excavated area which was enriched with respect to the suspended sediments was percolated into the groundwaters from the joints and cracks of the quartzarenite. The turbidity value measured in the well waters of K2 and K3 were determined as 40.3 NTU and 34.2 NTU respectively. Although at the basin, the aquifer of underground water and the well waters being managed are quartzarenite, the fact that water types belonging to well waters differ (they are not same) according to the Piper diagram and when the heavy metal content of the water of well numbered KS1 is taken as basis, that some heavy metals such as Al~(3+), Fe~(2+), Ni~(2+), Mn~(2+) and Cu~(2+) be enriched 3 to 40 times in KS2 and KS3 well waters, are caused by talus deposit-water interaction at the excavation area. After a rainfall, in the water that became turbid with the water-talus deposit interaction at the excavation area, the water-mineral interaction has caused the limit value for drinking water suggested by World Health Organization (WHO) to be exceeded with the Al~(3+) concentration of 189 ppb detected in KS2 well water and Fe~(2+) concentration of 185 ppb has caused to approach the drinking water limit value of 200 ppb permitted by World Health Organization (WHO), United States Environmental Protection Agency (EPA), European Union (EU) and Turkish Standards (TS). Therefore, at the water basins where bottled spring waters consumed for drinking purposes are produced, technical undertakings that shall disturb the stability of geological units should not be permitted.
机译:饮用饮用的泉水应清洁,优质。这些矿物质分布平衡,不含有机物质,其物理和化学特性符合某些质量参数且不会对人体健康产生负面影响的水被视为健康水。 Kuvars水是一种泉水,从伊斯坦布尔的Maltepe省Camurluk流域的抽水井抽出,装满瓶装。 Camurluk流域约4.5 km〜2。 Camurluk流域是沉积岩和距骨沉积露头。在距骨中存在的伊利石型粘土含量可以防止微量元素在雨水,水岩相互作用,渗漏和过滤的作用下到达离子层,而在雨水,水岩相互作用,渗漏和过滤的作用下,在距骨沉积样品中发现的微量元素比在盆地露头的石英亚硒酸盐更容易到达地下含水层。堆积物,最大厚度为20厘米。但是,距骨沉积物开挖的负面影响反映在井水的水文循环和化学组成上。起初,这种影响不利地影响了井水的物理特性。在雨季,开挖区相对于悬浮沉积物富集的水从石英亚砷酸盐的缝隙和裂缝渗入地下水。在K2和K3井水中测得的浊度值分别确定为40.3 NTU和34.2 NTU。尽管在盆地中,地下水的含水层和被管理的井水是石英亚砷酸盐,但根据Piper图以及当水的重金属含量不同时,属于井水的水类型不同(它们不相同)的事实。以编号KS1为基础,富集Al〜(3 +),Fe〜(2 +),Ni〜(2 +),Mn〜(2+)和Cu〜(2+)等重金属KS2和KS3井水中的3至40倍是由于开挖区域的距骨沉积物与水的相互作用引起的。降雨后,在开挖区因水-沉积物相互作用而变得混浊的水中,水-矿物质相互作用导致世界卫生组织(WHO)建议的饮用水极限值超出了Al〜 KS2井水中检测到的(3+)浓度为189 ppb,Fe〜(2+)的浓度为185 ppb,已接近美国环境保护署世界卫生组织(WHO)允许的饮用水限值200 ppb (EPA),欧盟(EU)和土耳其标准(TS)。因此,在生产饮用饮用瓶装泉水的水盆中,不允许进行会破坏地质单位稳定性的技术活动。

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