• The Core Journal of China
  • Included in Chinese Science Citation Database
  • The Key Magazine of China technology
  • Frontrunner 5000—Top Articles in Outstanding S&T Journals of China
  • Included in Scopus
  • Included in Chemical Abstracts (CA)
  • Included in Russian Abstract Journal (AJ)
Advanced Search
ZHANG Yanlin, DING Hongwei, FU Donglin, HUANG Zengbao, LI Aijun, YAN Chengyun, JIN Xia. A study of enrichment environment and formation mechanism of strontium mineral water in Gansu Province[J]. GEOLOGY IN CHINA, 2020, 47(6): 1688-1701. DOI: 10.12029/gc20200607
Citation: ZHANG Yanlin, DING Hongwei, FU Donglin, HUANG Zengbao, LI Aijun, YAN Chengyun, JIN Xia. A study of enrichment environment and formation mechanism of strontium mineral water in Gansu Province[J]. GEOLOGY IN CHINA, 2020, 47(6): 1688-1701. DOI: 10.12029/gc20200607

A study of enrichment environment and formation mechanism of strontium mineral water in Gansu Province

Funds: 

the Projects from Department of Land and Resources of Gansu Province (Mineral Water Survey in Gansu Province) and China Geological Survey DD20160288

More Information
  • Author Bio:

    ZHANG Yanlin, male, born in 1971, senior engineer, mainly engages in hydrogeological and environmentgeological investigation and research; E-mail:zhyl319@126.com

  • Received Date: May 06, 2019
  • Revised Date: January 31, 2020
  • Available Online: September 25, 2023
  • Gansu Province is located at the juncture of the four major geographical areas of China, i.e., north area, south area, northwest area and the Tibetan Plateau, and is characterized by various climates, strong geo-tectonic activities, complex topography, diverse geomorphologic forms, and complex geological and hydrogeological conditions; all these factors provide favorable conditions for forming strontium mineral water. The test and analysis of the mineral water samples from 644 water spots in the whole province show the strontium content of these mineral water are mainly in the range of 0.09-1.00 mg/L, the highest value is 15.6 mg/L, and there are 411 water points where the strontium content is higher than or equal to 0.40 mg/L, and reaches the level content of drinking natural mineral water, accounting for 58.1% of all water points; therefore, strontium is one of the most common and abundant trace elements in groundwater of Gansu Province. The statistic analysis of these testing data shows the following phenomena:the hydrogeological units which are most favorable to strontium enrichment are the Quaternary groundwater in the piedmont basin of the Hexi Corridor plain area and the Cretaceous pore and gap groundwater of clastic rock in the Loess hilly area in east Gansu Province; the type of groundwater which is likely to enrich strontium element is the Mesozoic and Cenozoic detrital groundwater rather than the fractured groundwater of bedrock in metamorphic rock area. The circulation characteristics are that the basin-type groundwater system with deep circulation conditions is most favorable to strontium enrichment, while the groundwater strontium content of the local flowing system where the circulation path is short and the alternate conditions are stronger is poor. The content of strontium in groundwater depends on the strontium abundance in surrounding rocks. Strontium abundance is higher in Cretaceous and Neogene clastic rocks and Paleozoic carbonate rocks than in the other rocks, so the groundwater in the Cretaceous and Neogene clastic rocks and the carbonate karst groundwater has certain material conditions for enrichment of strontium mineral water. At the same time, strontium accumulation in groundwater is related to the geo-tectonic environment in which the groundwater is located and the characteristics of groundwater circulation and migration. The basin-type groundwater flowing system and the groundwater for deep circulation are far away from the recharge area to the discharge area, and the circulation path is long. The retention time of groundwater is long in aquifers, which is beneficial to the dissolution and enrichment of strontium in groundwater.

  • Ding Hongwei, Zhang Ju. 2005. Goechemical properties and evolution of groundwater beneath the Hexi corridor, Gansu Province[J]. Arid Zone Research, 22(1):24-28(in Chinese with English abstract). http://d.wanfangdata.com.cn/Periodical/ghqyj200501005
    Fan Youjun, Fan Shufang, Ren He. 2010.Genetic study of the rich strontium content in water quality of Heihe River Basin[J]. Popular Science & Technology, 12(10):132-133(in Chinese).
    Hu Jinwu, Wang Zengyin, ZhouLian, Wang Yusong. 2004.Hyrogeochemical characteristics of the strontium in karst water.Carsologica Sinica, 23(1):37-42(in Chinese with English abstract).
    Li Wenpeng, Hao Aibing. 1999. Groundwater formation evolves mode and its meanings in the dry basin of the northwest in China[J]. Hydrogeology and Engineering Geology, 26(4):28-32(in Chinese with English abstract).
    Liu Qingxuan, Wang Guiling, Zhang Fawang.2004.Geochemical environment of trace element strontium (Sr) enriched in mineral waters[J]. Hydrogeology & Engimeering Geology, 31(6):19-23(in Chinese with English abstract). http://www.cqvip.com/Main/Detail.aspx?id=11313528
    Liu Xinbiao, Zhang Yanlin, Wang Yanjiang, Zhou Bin. 2007. Analysis of hydrochemistry characteristic in the Longdong basin[J].Geology of Chemical Minerals, 29(4):237-241(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-HGKC200704009.htm
    Liu Xinbiao, Zhang Yanlin, Wang Yanjiang, Zhou Bin. 2009.Evaluation of the movement of cretaceous groundwater beneath the Longdong basin[J].Arid Zone Research, 26(2):176-180(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-GHQJ200902004.htm
    Su Chuntian, Zhang Fawang, Xia Riyuan, Yao Xin, Zou Shengzhang, Luo Fei, Zhao Guangshuai, Yang Yang, Ba Junjie, Li Xiaopan. 2017. A study of the water-rock interaction of large rich Sr mineral spring in Xintian, Hunan Province[J]. Geology in China, 44(5):1029-1030(in Chinese with English abstract).
    Su Chuntian, Huang Chenhui, Zou Shengzhang, Xie Daixing, Zhao Guangshuai, Tang Jiansheng, Luo Fei, Yang Yang. 2017. Enrichm entenvironment and sources of strontium of groundwater in Xintian county, Hunan Province[J]. Carsologica Sinica, 36(5):678-683(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-ZGYR201705010.htm
    Sun Qifa, Tian Hui, Guo Xiaodong, Yu Huiming, Ma Shimin, Li Lijun. 2017. The discovery of silicic acid and strontium enrichment areas in groundwater of Changchun area, Jilin Province[J].Geology in China, 44(5):1031-1032(in Chinese with English abstract).
    Sun Qifa, Tian Hui, Guo Xiaodong, Yu Huiming. 2019. Strontiumenriched areas discovered in Lianhuashan, Changchun[J].Geology in China, 46(2):430-431(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-LVKJ201918014.htm
    Wang Yugong, Chen Yueyuan, Wang Jianbo. 2009. Development of natural mineral water in Gansu Province[J]. Gansu Geology, 18 (1):60-65(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-GSDZ200901015.htm
    Wang Zengyin, Liu Juan, Wang Tao, Wang Yusong, Hu Jinwu. 2003.Application advances of strontium geochemistry in hydrogeology research[J]. Geological Science and Technology Information, 22(4):91-95 (in Chinese with English abstract). http://www.researchgate.net/publication/298618782_Application_advances_of_strontium_geochemistry_in_hydrogeology_research
    Wei Rongdao, Yao Baogui. 2005. Discussions of the Distrbution characteristics and genesis of the tertiary confined water and its strontium mineral waters in longquan of Yongdeng County, Gansu province[J].Acta Geologica Gansu, 14(1):86-90(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-GSDZ200501017.htm
    Wu Dongdong, Kang Weidong, Wang Wenxiang, An Yonghui, Shao Xinmin, Li Wenpeng. 2017. Study on Sr geochemistry characteristics of groundwater in Zhangye basin[J].Water Resources and Power, 35(4):41-45(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-SDNY201704011.htm
    Xu Peiyao, Ding Zhinong. 1997. Formation of potable natural mingeral spring water congtaining strontium[J].Site Investigation Science and Technology, 15(5):36-38(in Chinese with English abstract). http://www.en.cnki.com.cn/Article_en/CJFDTOTAL-KCKX199705008.htm
    Zhang Yanlin, Li Shengyong, Cui Xudong, Liu Xinbiao. 2005. The geological features analysis of karst in eastern foot of Liupan montain[J]. Acta Geologica Gansu, 14(1):71-75(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-GSDZ200501013.htm
    Zhang Yanlin, Li Shengyong, Fu Donglin, Cui Xudong. 2006.Formation mechanism of karst groundwater Longdong basin, northwestern China[J]. Geology in China, 33(6):1393-1399(in Chinese with English abstract). http://www.researchgate.net/publication/281570773_Formation_mechanism_of_karst_groundwater_in_the_western_Longdong_basin_northwestern_China
    丁宏伟, 张举.2005.河西走廊地下水水化学特征及其演化规律[J].干旱区研究, 22(1):24-28. http://d.wanfangdata.com.cn/Periodical/ghqyj200501005
    樊有俊, 樊姝芳, 任河.2010.黑河流域水质锶含量丰富成因研究[J].大众科技, 12(10):132-133. http://www.cnki.com.cn/Article/CJFDTotal-DZJI201010067.htm
    胡进武, 王增银, 周炼, 汪玉松.2004.岩溶水锶元素水文地球化学特征[J].中国岩溶, 23(1):37-42. http://d.wanfangdata.com.cn/Periodical/zgyr200401007
    李文鹏, 郝爱兵.1999.中国西北干旱盆地地下水形成演化模式及其意义[J].水文地质工程地质, 26(4):28-32. http://www.cqvip.com/Main/Detail.aspx?id=3581330
    刘庆宣, 王贵玲, 张发旺.2004.矿泉水中微量元素锶富集的地球化学环境[J].水文地质工程地质, 31(6):19-23. http://www.cqvip.com/Main/Detail.aspx?id=11313528
    刘心彪, 张彦林, 王延江, 周斌.2007.陇东盆地地下水水化学特征分析[J].化工矿产地质, 29(4):237-241. http://www.cnki.com.cn/Article/CJFDTotal-HGKC200704009.htm
    刘心彪, 张彦林, 王延江, 周斌.2009.陇东盆地白垩系地下水运移研究[J].干旱区研究, 26(2):176-180. http://d.wanfangdata.com.cn/Periodical/ghqyj200902004
    苏春田, 张发旺, 夏日元, 姚昕, 邹胜章, 罗飞, 赵光帅, 杨杨, 巴俊杰, 李小盼.2017.湖南新田发现大型富锶矿泉水及机理研究[J].中国地质, 44(5):1029-1030. http://geochina.cgs.gov.cn/geochina/ch/reader/view_abstract.aspx?file_no=20170515&flag=1
    苏春田, 黄晨晖, 邹胜章, 谢代兴, 赵光帅, 唐建, 罗飞, 杨杨.2017.新田县地下水锶富集环境及来源分析[J].中国岩溶, 36(5):678-683. http://www.cqvip.com/QK/95841X/201705/674200994.html
    孙岐发, 田辉, 郭晓东, 于慧明, 马诗敏, 李丽君.2017.吉林长春地区地下水中发现偏硅酸和锶富集区[J].中国地质, 44(5):1031-1032. http://geochina.cgs.gov.cn/geochina/ch/reader/view_abstract.aspx?file_no=20170516&flag=1
    孙岐发, 田辉, 郭晓东, 于慧明.2019.长春莲花山发现锶富集区[J].中国地质, 46(2):430-431. http://geochina.cgs.gov.cn/geochina/ch/reader/view_abstract.aspx?file_no=20190219&flag=1
    王玉功, 陈月源, 王建波.2009.甘肃省天然矿泉水开发利用现状分析与可持续发展[J].甘肃地质, 18 (1):60-65. http://www.cnki.com.cn/Article/CJFDTotal-GSDZ200901015.htm
    王增银, 刘娟, 王涛, 汪玉松, 胡进武.2003.锶元素地球化学在水文地质研究中的应用进展[J].地质科技情报, 22(4):91-95. http://d.wanfangdata.com.cn/Periodical/dzkjqb200304017
    魏荣道, 姚宝贵.2005.甘肃永登龙泉第三系锶型承压矿泉水分布特征与成因探讨[J].甘肃地质学报, 14(1):86-89. http://www.cqvip.com/QK/96503A/200501/15889903.html
    武冬冬, 康卫东, 王文祥, 安永会, 邵新民, 李文鹏.2017.张掖盆地地下水锶元素地球化学特征研究[J].水电能源科学, 35(4):41-44. http://www.cqvip.com/QK/95255X/20174/671759982.html
    许佩瑶, 丁志农.1997.含锶饮用天然矿泉水的形成[J].勘察科学技术, 15(5):36-38. http://www.cqvip.com/Main/Detail.aspx?id=2868176
    张彦林, 李生永, 崔旭东, 刘心彪.2005.六盘山东麓地区岩溶地质特征分析[J].甘肃地质学报, 14(1):71-75. http://www.cnki.com.cn/article/cjfdtotal-gsdz200501013.htm
    张彦林, 李生永, 付东林, 崔旭东.2006.陇东盆地西部岩溶地下水形成机制研究[J].中国地质, 33(6):1393-1399. http://geochina.cgs.gov.cn/geochina/ch/reader/view_abstract.aspx?file_no=20060624&flag=1
  • Cited by

    Periodical cited type(13)

    1. 王强,李五福,王秉璋,王涛,周金胜,马林,李玉龙,袁博武,王春涛,王军,张新远,刘建栋,薛尔堃,胡万龙,黄彤宇,李旺超. 与碱性岩-碳酸岩杂岩共生的铌-稀土成矿作用——兼论东昆仑大格勒铌-稀土矿床中的碱性岩-碳酸岩杂岩成因. 大地构造与成矿学. 2024(01): 1-37 .
    2. 张照伟,钱兵,王亚磊,李文渊. 东昆仑造山带岩浆镍钴硫化物矿床形成构造背景探讨. 中国地质. 2024(02): 371-384 . 本站查看
    3. 李思奥,包亚文,梁慨慷,高旭,许瑶,张铭杰,李立武,李中平. 东昆仑古生代镁铁质岩浆镍钴成矿条件——希望沟地区超镁铁质岩C-He-Ne-Ar同位素制约. 岩石学报. 2024(07): 2153-2168 .
    4. Xue-peng Duan,Fan-cong Meng,Zong-qi Wang,Xiao-fei Yu. Metallogenic characteristics of Shitoukengde intrusion and its implications for Ni-Co-(Cu) sulfide mineralization in East Kunlun. China Geology. 2024(04): 714-729 .
    5. 王秉璋,张金明,李五福,王泰山,金婷婷,付长垒. 昆仑河早古生代两期埃达克质侵入岩的发现及其对东昆仑碰撞造山过程的启示. 岩石学报. 2023(03): 763-784 .
    6. 赵云川,胡俊,周洪兵,何志威. 东昆仑那更银矿床斜长花岗岩锆石U-Pb年代学、地球化学特征与地质意义. 矿物学报. 2023(05): 640-652 .
    7. 张照伟,钱兵,王亚磊,李文渊. 中国西北地区岩浆铜镍矿床地质特点与找矿潜力. 西北地质. 2021(01): 82-99 .
    8. 张照伟,王亚磊,邵继,李文渊. 东昆仑夏日哈木超大型岩浆镍钴硫化物矿床成矿特征. 矿床地质. 2021(06): 1230-1247 .
    9. 李文渊,王亚磊,钱兵,刘月高,韩一筱. 塔里木陆块周缘岩浆Cu-Ni-Co硫化物矿床形成的探讨. 地学前缘. 2020(02): 276-293 .
    10. 潘彤,张勇. 东昆仑夏日哈木铜镍矿区榴辉岩地球化学特征及成矿响应. 大地构造与成矿学. 2020(03): 447-464 .
    11. 刘超,王亚磊,张照伟,刘月高,韩一筱,董一博,冷馨. 东昆仑夏日哈木矿床镍黄铁矿、磁黄铁矿成因认识及钴赋存特征. 西北地质. 2020(02): 183-199 .
    12. 张照伟,钱兵,王亚磊,李文渊,张江伟,尤敏鑫. 东昆仑夏日哈木镍成矿赋矿机理认识与找矿方向指示. 西北地质. 2020(03): 153-168 .
    13. Zhao-wei Zhang,Ya-lei Wang,Chi-yuan Wang,Bing Qian,Wen-yuan Li,Jiang-wei Zhang,Min-xin You. Mafic-ultramafic magma activity and copper-nickel sulfide metallogeny during Paleozoic in the Eastern Kunlun Orogenic Belt, Qinghai Province, China. China Geology. 2019(04): 467-477 .

    Other cited types(7)

Catalog

    Article views (3294) PDF downloads (5009) Cited by(20)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return