大沽河流域上游水化学特征及其控制因素研究
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本文为山东省自然资源厅省级地质勘查项目(编号:鲁勘字\[2019\]46号、鲁勘字\[2020\]50号)的成果


Study on hydrochemical characteristics and controlling factors of the upper reach of Dagu river basin
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    摘要:

    大沽河流域是青岛市、烟台市重要的供水源区,为研究大沽河流域水化学特征及成因机制,选取大沽河流域上游补给区开展研究,采集35个地下水样品和5个地表水样品。综合运用描述性统计分析、Piper三线图、Gibbs图以及离子比值等方法,结合水文地质条件,分析研究区水化学特征,探索其水化学组成的成因机制。结果表明,大沽河流域地下水为弱碱性水,占优势的阴、阳离子分别为HCO-3、SO2-4和Ca2+、Mg2+。水化学类型共分多种,其中以HCO-3·SO2-4—Ca2+·Mg2+为主。大沽河流域水化学特征受水—岩作用、阳离子交换作用的影响,岩石风化溶解是水化学特征的主要控制因素,且阳离子交换作用活跃。Na+、K+、Cl-、偏硅酸主要来源于硅酸盐岩的溶解,Ca2+、Mg2+和SO2-4主要来源于碳酸盐岩的溶解,显著高于来自蒸发盐岩风化溶解的贡献。人类活动对地下水化学特征有较大影响,农业种植、养殖业等人类活动导致水中NO-3浓度普遍偏高,同时人类活动加剧了硅酸盐矿物的风化溶解,使得偏硅酸浓度升高,超过74%的水样偏硅酸质量浓度达到了25 mg/L。

    Abstract:

    Dagu River basin is an important water supply source for Yantai City and Qingdao City. This paper is in order to study the water chemical characteristics and genetic mechanism of Dagu River basin. Methods:Water samples, including 35 groundwater and 5 surface water, were collected from the upstream research area of Dagu River basin. Hydrogeologicalinformation, Piper terraph map, descriptive statistics method, Gibbs diagram and ion ratio were used to analyze the hydro- chemical characteristics and explore their evolution mechanism of the study area. Results:The results shown that the groundwater in Dagu River basin is weakly alkaline. HCO-3, SO2-4 and Ca2+, Mg2+ were the dominant anions . All of most of samples belonged to HCO-3·SO2-4—Ca2+·Mg2+water type . The hydro- chemical characteristics of Dagu River Basin are affected by water—rock cation exchange, rock weathering and dissolution are the main controlling factors. Moreover, the cation exchange is active. Conclusions :Na+、K+、Cl- and metasilicic acid mainly comes from the dissolution of silicate rock, while Ca2+, Mg2+and SO2-4 mainly come from the dissolution of carbonate rock, which is significantly higher than that from the dissolution of evaporite rock. Human activities have a great influence on the chemical characteristics of groundwater. Human activities, such as agricultural planting and aquaculture, generally lead to high NO-3 concentration in water, while human activities aggravate the weathering and dissolution of silicate minerals. The concentration of metasilicate increases. The concentration of metasilic acid in more than 74% of the water samples reached 25 mg/L.

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陈京鹏,蒋书杰,杨询昌,王华飞,刘伟,王学鹏,谭志容.2022.大沽河流域上游水化学特征及其控制因素研究[J].地质论评,68(3):2022062028,[DOI].
CHEN Jingpeng, JIANG Shujie, YANG Xunchang, WANG Huafei, LIU Wei, WANG Xuepeng, TAN Zhirong.2022. Study on hydrochemical characteristics and controlling factors of the upper reach of Dagu river basin[J]. Geological Review,68(3):2022062028.

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  • 收稿日期:2021-12-29
  • 最后修改日期:2022-05-12
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  • 在线发布日期: 2022-06-20
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