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渤海湾低平原浅层地下水位空间变异性及其化学特征。

Spatial variability of the shallow groundwater level and its chemistry characteristics in the low plain around the Bohai Sea, North China.

机构信息

Institute of Hydrogeology and Environmental Geology, Chinese Academy of Geological Sciences, Zhengding, Hebei 050803, China.

出版信息

Environ Monit Assess. 2012 Jun;184(6):3697-710. doi: 10.1007/s10661-011-2217-1. Epub 2011 Jul 19.

Abstract

To characterize the spatial distribution of groundwater level (GWL) and its chemistry characteristics in the low plain around the Bohai Sea, shallow groundwater depth of 130 wells were determined. Water soluble ions composition, total dissolved solid (TDS), electric conductivity (EC), total hardness (TH), total alkalinity (TA), and total salt content (TS) of 128 representative groundwater samples were also measured. Classical statistics, geostatistical method combined with GIS technique were then used to analyze the spatial variability and distribution of GWL and groundwater chemical properties. Results show that GWL, TDS, EC, TH, TA, and TS all presented a lognormal distribution and could be fitted by different semivariogram models (spherical, exponential, and Gaussian). Spatial structure of GWL, TDS, EC, TH, TA, and TS changed obviously. GWL decreased from west inland plain to the east coastal plain, however, TDS, EC, and TS increased from west to east, TH and TA were higher in the middle and coastal plain area. Groundwater chemical type in the coastal plain was SO (4) (2-) ·Cl(-)-Na(+) while chemical types in the inland plain were SO (4) (2-) ·Cl(-)-Ca(2+)·Mg(2+) and HCO (3) (-) -Ca(2+)·Mg(2+).

摘要

为了描述渤海湾低平原地区地下水位(GWL)的空间分布特征及其化学特性,测定了 130 口浅水井的地下水埋深。同时,还测量了 128 个有代表性的地下水样本的水溶性离子组成、总溶解固体(TDS)、电导率(EC)、总硬度(TH)、总碱度(TA)和总盐含量(TS)。然后,采用经典统计学、地质统计学方法结合 GIS 技术,对 GWL 和地下水化学性质的空间变异性和分布进行了分析。结果表明,GWL、TDS、EC、TH、TA 和 TS 均呈对数正态分布,可以用不同的半变异模型(球状、指数和高斯模型)进行拟合。GWL、TDS、EC、TH、TA 和 TS 的空间结构变化明显。GWL 从内陆平原向西逐渐降低,而 TDS、EC 和 TS 则从西向东逐渐增加,TH 和 TA 在中部和沿海平原地区较高。沿海平原地区的地下水化学类型为 SO(4)(2-)-Cl(-)-Na(+),而内陆平原地区的地下水化学类型为 SO(4)(2-)-Cl(-)-Ca(2+)-Mg(2+)和 HCO(3)-Ca(2+)-Mg(2+)。

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