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首页> 外文期刊>Hydrogeology journal >Tracer tests, hydrochemical and microbiological investigations as a basis for groundwater protection in a remote tropical mountainous karst area, Vietnam
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Tracer tests, hydrochemical and microbiological investigations as a basis for groundwater protection in a remote tropical mountainous karst area, Vietnam

机译:示踪剂测试,水化学和微生物学研究为越南偏远热带山区喀斯特地区的地下水保护奠定了基础

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The Tam Duong karst area in NW Vietnam is among the poorest and remotest regions in the country. The local population largely depends on water from two main karst springs. Due to agricultural activity and untreated domestic wastewaters, the spring water is often microbiologically contaminated. In order to provide a scientific basis for groundwater protection in the area, different field methods have been applied including hydrogeological framework investigations, tracer tests, and hydrochemical and microbiological sampling and analyses. All methods had to be adapted to the conditions of a poor and remote area. These adaptations included, amongst other measures, the use of a portable microbiological water - testing kit and the involvement of the local population in the sampling campaign. The tracer tests showed simple and direct connections between two important swallow holes and the two main springs, and made it possible to determine the linear groundwater flow velocities, which are extremely high (up to 875 m/h). The hydrochemical and microbiological data confirmed the strong impact of the streams sinking into the swallow holes on the spring water quality. Future groundwater source protection strategies should consequently focus on the reduction of polluting activities near the sinking streams and within their catchment areas.
机译:越南西北部的Tam Duong喀斯特地区是该国最贫穷和最偏远的地区之一。当地人口主要依靠来自两个主要喀斯特温泉的水。由于农业活动和未经处理的生活废水,泉水经常被微生物污染。为了为该地区的地下水保护提供科学依据,已采用了不同的野外方法,包括水文地质框架调查,示踪剂测试以及水化学和微生物采样与分析。所有方法都必须适应贫困和偏远地区的条件。除其他措施外,这些适应措施包括使用便携式微生物水测试套件以及当地居民参与采样活动。示踪剂测试表明,两个重要的吞水孔和两个主弹簧之间具有简单直接的连接,可以确定非常高的线性地下水流速(高达875 m / h)。水化学和微生物学数据证实了下沉到燕子孔中的溪流对泉水水质的强烈影响。因此,未来的地下水源保护策略应集中于减少下沉河流及其集水区内的污染活动。

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