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Groundwater flow and geochemistry in the lower reaches of the Yellow River: a case study in Shandang Province, China

机译:黄河下游的地下水流与地球化学:以山东省山东省为例

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Water samples were collected from the Yellow River and from wells for chemical and isotopic measurement in the counties of Yucheng and Qihe, to which 6 - 9 * 10~8 m~3 of water is diverted annually from the Yellow River. A zone of high electrical conductivity (EC) in groundwater corresponds well on the regional scale with a ridge in groundwater level, which is the main flow path through the region, but has a low gradient. The zone of highest Ec along this ridge occurs at a position with the lowest ground altitude in the study area. The unique characteristic of the groundwater is the linear relationship among the principal anions as the result of mixing. The mixing effect is confirmed by its isotopic signature, which was then used to calculate the contributions from three sources: rainfall, old water, and diverted water with an average mixing rate of 18, 17, and 65%, respectively. As an indicator of water movement, Cl~- content varies across a wide range in the profile from 30-10 m with a maximum concentration at about 1.2 m depth. Concentrations are relatively stable at about 2 m, which is the average boundary of the saturated and unsaturated zone. The water from the Yellow River has proved to be dominant in mixing in the aquifer in terms of groundwater flow and geochemistry.
机译:黄河和禹城县和齐河县从黄河和井中采集水样进行化学和同位素测量,每年从黄河分流的水量为6-9 * 10〜8 m〜3。地下水中的高电导率(EC)区域在区域范围内与地下水位的山脊相当吻合,这是穿过该地区的主要流动路径,但坡度较低。沿着该山脊的Ec最高的区域出现在研究区域内最低地面高度的位置。地下水的独特特征是混合后主要阴离子之间的线性关系。混合效果通过其同位素特征得到证实,然后被用于计算三种来源的贡献:降雨,旧水和转向水,平均混合率分别为18%,17%和65%。作为水分运动的指标,Cl〜-含量在30-10 m的宽范围内变化很大,最大浓度约为1.2 m。浓度在大约2 m处相对稳定,这是饱和区和非饱和区的平均边界。从地下水流量和地球化学方面来看,黄河水已被证明在含水层的混合中占主导地位。

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