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Estimation of submarine groundwater discharge and nutrient loading using radium isotopes quartet in Kuwait

机译:科威特镭同位素四重奏估算潜艇地下水排放和营养加载

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摘要

The water resources in the arid region like Kuwait are a scarce commodity. With the increasing population, industry and urbanization have lead to the demand of water resources with respect to both in quantity and quality. Therefore, quantification of submarine groundwater discharge is essential for sustainable groundwater management. Moreover, submarine groundwater discharge plays a vital role in delivering nutrients, dissolved carbon, and trace elements to the sea. This study used the naturally occurring radioactive isotopes to identify and estimate the SGD in the coastal strip of Kuwait along the Arabian Gulf. The study gains its significance in determining the loss of brackish groundwater from inland, in the arid region. The groundwater samples were collected from wells along the coast. Seawater samples were collected from Kuwait bay and open sea in transects. Samples were analyzed for major ions, nutrients, and(223)Ra,Ra-224,Ra-226, and(228)Ra. Box model and offshore gradient model approaches were used to estimate the SGD. The variation of(223)Ra,Ra-224,Ra-226, and(228)Ra concentrations was studied in different transects, and it was inferred to be influenced by the Kuwait coastal jet in the territorial waters. The water mass residence time calculated for the Kuwait Bay and the open sea ranged from 10 to 58 and 12 to 64 days, respectively. The(223)Ra-based horizontal eddy diffusion coefficients for the Kuwait Bay and the south Arabian Gulf were 205.1 and 827.5 m(2)/s, respectively. The estimation of SGD fluxes in the Kuwait Bay using box model approach based on the spatial distribution of(226)Ra and(228)Ra were 3.05 x 10(6)and 5.46 x 10(6) m(3)/day, respectively. Similarly, the estimated SGD fluxes for the south Arabian Gulf by offshore gradient model using(226)Ra and(228)Ra concentrations were 2.92 x 10(8)and 3.0 x 10(7) m(3)/day, respectively. The nutrient fluxes from groundwater to Kuwait Bay and open sea were estimated for PO43--P, SiO2-Si, and NO3--N using box model and offshore gradient model approach.
机译:像科威特这样的干旱地区的水资源是一种稀缺的商品。随着人口的增加,工业和城市化导致水资源的需求与数量和质量。因此,潜艇地下水排放量度对于可持续地下水管理至关重要。此外,潜艇地下水排放在递送营养,溶解的碳和微量元素到大海中起着至关重要的作用。该研究使用天然存在的放射性同位素来识别和估算沿着阿拉伯海湾的科威特沿海地带的SGD。该研究提高了决定内陆的咸水地下水损失的重要性。地下水样本从沿着海岸的井中收集。从科威特海湾和横断面的海洋收集海水样品。分析了主要离子,营养物和(223)Ra,RA-224,RA-226和(228)Ra的样品。盒式模型和海上梯度模型方法用于估算SGD。在不同的横断调中研究了(223)Ra,RA-224,RA-226和(228)Ra浓度的变化,并推断出受海域科威特沿海射流的影响。为科威特湾和开放海域计算的水质宿舍分别为10至58和12至64天。科威特海湾和南阿拉伯海湾的(223)基于RA的水平涡流扩散系数分别为205.1和827.5米(2)/ s。基于(226)Ra和(228)Ra的空间分布的盒式模型方法使用箱体模型方法的SGD助焊剂分别为3.05×10(6)和5.46×10(6)m(3)/天。类似地,使用(226)Ra和(228)Ra浓度的海上梯度模型的估计的SGD通量由海上梯度模型分别为2.92×10(8)和3.0×10(7)m(3)/天。利用盒式模型和海上梯度模型方法,估计从地下水到科威特湾和开放海域地下水的营养通量。

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