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Hydro-geochemical characteristics of the groundwater resources in the southern part of the Red River's Delta plain, Vietnam

机译:越南红河三角洲平原南部地区地下水资源的水文地球化学特征

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摘要

In this study, the origin and recharge areas as well as the chemistry of the groundwater in the southern part of the Red River Delta plain, in Thai Binh, Nam Dinh and Ninh Binh provinces (North Vietnam) was investigated by using isotopic techniques combined with geochemical analysis. Groundwaters under the study were those that are available in the Holocene, Pleistocene, Neogene and Triassic aquifers. Groundwater in the Holocene aquifer is brackish of Na-Cl type with an electric conductivity as high as up to 6000 mu Scm(-1). The water in the shallow aquifer comprises three end-members: the local precipitation, Red River's water and intruded seawater. Groundwater in the Pleistocene, Neogene and Triassic aquifers in the Southwest of the study region is fresh containing less than 1gL(-1) of total dissolved solids and is characterized by the Ca-Na-HCO3 type. However, groundwater in the deep aquifers in the Northeast area is brackish of Na-Ca-Cl-HCO3 ion type containing more than 1gL(-1) TDS. The chemistry of groundwater in the study region is controlled by three processes, namely the incongruent dissolution of the biogenic high Mg-calcite, the reduction of sulphate and iron oxyhydroxide with organic matters present in the aquifers. The salinity in deep aquifers in the NE was attributed to the diffusion of saline pore water from aquifer or/and aquitard deposits to the recharge water. Groundwater in the Pleistocene, Neogene and Triassic aquifers in the study region seem to have meteoric origin with long traveling time and it mixed with the saline pore water that migrated from the aquifers sediments, as it was evident from the water isotopic compositions. The isotopic compositions of water (H-2 and O-18) in the Neogene and Triassic aquifers are similar to that found in the Pleistocene aquifer suggesting the aquifers are hydraulically connected to each other due to the over-extraction rate of fresh water from the latter aquifer. Recharge area of groundwater in the Pleistocene and Neogene aquifers is suggested to be from the NW extension of the region and out crops at a highland at an altitude of 140-160-m above sea level (masl). The recharge water flows from northwesterly towards southeasterly to the sea coast. The results of the C-14-dating for groundwater combined with the hydraulic heads distribution in the deep aquifers revealed that the saline groundwater is flowing from the NE and backwards from the sea side to the production well field in the center of the region due to the high rate of groundwater mining. In order to mitigate the saltwater intrusion and avoid deterioration of the quality of the groundwater that is currently being mined and supplied to the local population, it needs to develop and implement an appropriate strategy for the groundwater resource management in the region.
机译:在这项研究中,结合同位素技术结合使用,研究了红河三角洲平原南部的泰平,南定和宁平省(越南北部)的起源和补给区以及地下水的化学性质。地球化学分析。该研究中的地下水是全新世,更新世,新近纪和三叠纪含水层中可用的地下水。全新世含水层中的地下水为Na-Cl型微咸水,电导率高达6000μScm(-​​1)。浅层含水层中的水包括三个末端成员:局部降水,红河水和入侵海水。研究区西南部的更新世,新近纪和三叠纪含水层中的地下水是新鲜的,含有少于1gL(-1)的总溶解固体,并且具有Ca-Na-HCO3类型的特征。但是,东北地区深层含水层中的地下水呈微咸的Na-Ca-Cl-HCO3离子型,含TDS超过1gL(-1)。研究区域的地下水化学由三个过程控制,即生物高镁方解石的不相容溶解,含水层中有机物对硫酸盐和羟基氧化铁的还原作用。 NE内深层含水层的盐度归因于盐水孔隙水从含水层或/和阿奎塔德沉积物扩散到补给水中。该研究区的更新世,新近纪和三叠纪含水层中的地下水似乎是流星起源的,具有很长的传播时间,并且与从含水层沉积物中迁移出来的盐水孔隙水混合在一起,这从水的同位素组成可以明显看出。新近纪和三叠纪含水层中的水(H-2和O-18)的同位素组成与更新世含水层中的同位素组成相似,这表明由于淡水从水体中过度提取的速率,这些含水层彼此水力相连。后一个含水层。建议在更新世和新近纪含水层中的地下水补给区来自该地区的西北延伸,并在海拔140-160-m的高地上离开农作物。补给水从西北向东南流向沿海。地下水的C-14测年结果与深层含水层中的水力压头分布相结合的结果表明,由于以下原因,盐碱地下水从东北向北流,从海侧流回该区域中心的生产井田:地下水开采率很高。为了减轻咸水的入侵并避免恶化目前正在开采并供应给当地居民的地下水的质量,它需要制定并实施适当的策略来管理该地区的地下水资源。

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