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江油市规划应急水源地地下水水化学特征分析
引用本文:韩新强,谢忠胜,孙金辉,熊德清.江油市规划应急水源地地下水水化学特征分析[J].探矿工程,2018,45(8):141-144.
作者姓名:韩新强  谢忠胜  孙金辉  熊德清
作者单位:中国地质科学院探矿工艺研究所,中国地质科学院探矿工艺研究所,中国地质科学院探矿工艺研究所,中国地质科学院探矿工艺研究所
基金项目:中国地质调查局地质调查项目“涪江流域1∶5万环境地质调查”(编号:DD20160251)
摘    要:通过在江油市规划应急水源地及其上、下游采集地下水水样进行化学分析,共采集15个样品。结合主离子浓度、Piper图及沿程变化对该水源地地下水的水化学特征及其上、下游地下水水化学变化规律进行分析,结果表明:研究区地下水呈弱碱性,属硬度水和极硬度水,TDS平均值为281.446 mg/L,其中阳离子以Ca2+、Mg2+为主,Na++K+次之;阴离子以HCO3-和SO42-为主,Cl-较少;地下水的化学类型为HCO3--Ca2+。在沿程变化上,自上游至下游,地下水TDS及主离子均有整体增加的现象。地下水化学类型由HCO3--Ca2+型变化为HCO3-·SO42--Ca2+·Mg2+型。

关 键 词:应急水源地  地下水  水化学特征
收稿时间:2018/7/16 0:00:00
修稿时间:2018/7/16 0:00:00

Analysis on the Hydrochemical Characteristics of Groundwater of Emergency Water Source in Jiangyou City
HAN Xin-qiang,XIE Zhong-sheng,SUN Jin-hui and XIONG De-qing.Analysis on the Hydrochemical Characteristics of Groundwater of Emergency Water Source in Jiangyou City[J].Exploration Engineering(Drilling & Tunneling),2018,45(8):141-144.
Authors:HAN Xin-qiang  XIE Zhong-sheng  SUN Jin-hui and XIONG De-qing
Affiliation:Institute of Exploration Technology, CAGS,Institute of Exploration Technology, CAGS,Institute of Exploration Technology, CAGS,Institute of Exploration Technology, CAGS
Abstract:15 water samples were collected through chemical analysis in Jiangyou City emergency water source and its upper and lower reaches. The hydrochemical characteristics of the groundwater source and the change law of hydrochemical of the upstream and the downstream were analyzed according to the concentration of main ions, Piper diagram and the variation along the Jianjiang River. The results show that the groundwater in the study area is weak alkaline belonging to hard water and extremely hard water. The average value of TDS is 281.446mg/L, the main cations are Ca2+ and Mg2+, and Na+ + K+ the second; the anion is mainly HCO3- and SO42- with less Cl- and the chemical type of groundwater is HCO3--Ca2+. From upstream to downstream, there is an overall increase in both TDS and main ions of groundwater. The chemical type of groundwater changed from HCO3--Ca2+ type to HCO3-·SO42--Ca2+·Mg2+ type.
Keywords:emergengcy water source  groundwater  hydrochemical characteristics
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