• ISSN 2305-7068
  • ESCI CABI CAS Scopus GeoRef AJ CNKI 维普收录
高级检索

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Hydrochemical characteristics and geochemistry evolution of groundwater in the plain area of the Lake Baiyangdian watershed, North China Plain

ZHANG Yu-qin WANG Guang-wei WANG Shi-qin YUAN Rui-qiang TANG Chang-yuan SONG Xian-fang

ZHANG Yu-qin, WANG Guang-wei, WANG Shi-qin, et al. 2018: Hydrochemical characteristics and geochemistry evolution of groundwater in the plain area of the Lake Baiyangdian watershed, North China Plain. Journal of Groundwater Science and Engineering, 6(3): 220-233. doi: 10.19637/j.cnki.2305-7068.2018.03.007
Citation: ZHANG Yu-qin, WANG Guang-wei, WANG Shi-qin, et al. 2018: Hydrochemical characteristics and geochemistry evolution of groundwater in the plain area of the Lake Baiyangdian watershed, North China Plain. Journal of Groundwater Science and Engineering, 6(3): 220-233. doi: 10.19637/j.cnki.2305-7068.2018.03.007

doi: 10.19637/j.cnki.2305-7068.2018.03.007

Hydrochemical characteristics and geochemistry evolution of groundwater in the plain area of the Lake Baiyangdian watershed, North China Plain

    • 关键词:
    •  / 
    •  / 
    •  / 
    •  / 
    •  
  • Aghazadeh N, Mogaddam A A. 2011. Investigation of hydrochemical characteristics of groundwater in the Harzandat aquifer, Northwest of Iran. Environmental Monitoring and Assessment, 176(1-4):183-195 .
    WANG Shi-qin, TANG Chang-yuan, et al. 2016. Factors contributing to nitrate contamination in a groundwater recharge area of the North China Plain. Hydrological Processes, 30(13):2271-2285 .
    YUAN Rui-qiang. 2011. Study on the mechanism of shallow groundwater circulation in the Baiyangdian catchment with the influence of human activities. Beijing: Doctoral Disser-tation of Graduate University of Chinese Academy of Sciences .
    Babiker I S, Mohamed M A A, et al. 2004. Assessment of groundwater contamination by nitrate leaching from intensive vegetable cultivation using geographical information system. Environment International, 29(8): 1009-1017 .
    LIANG Hui-ya, ZHAI De-qin, et al. 2017. Sources, migration and transformation of nitrate in Fuhe River and Baiyangdian Lake, China. Chinese Journal of Eco-Agriculture, 25(8): 1236-1244 .
    JIANG Ti-sheng, QU Ci-xiao, et al. 2017. Analysis on temporal and spatial variations of groundwater hydrochemical characteristics in the past decade in southern plain of Beijing, China. Journal of Groundwater Science and Engineering, 5(3): 235-248 .
    Jalali M. 2009. Geochemistry characterization of groundwater in an agricultural area of Razan, Hamadan, Iran. Environmental Geology, 56(7): 1479-1488 .
    ZHUANG Chang-wei, OU-YANG Zhi-yun, et al. 2011. Impacts of human activities on the hydrology of Baiyangdian Lake, China. Environmental Earth Sciences, 62(7): 1343-1350 .
    Tsujimura M, Abe Y, et al. 2007. Stable isotopic and geochemical characteristics of ground-water in Kherlen River Basin, a semi-arid region in eastern Mongolia. Journal of Hydrology, 333(1):47-57 .
    Meybeck M. 1987. Global chemical weathering of surficial rocks estimated from river dissolved loads. American Journal of Science, 287(5): 401-428 .
    LIU Chen-wuing, LIN Kao-hung, KUO Yi-ming. 2003. Application of factor analysis in the assessment of groundwater quality in a blackfoot disease area in Taiwan. Science of the Total Environment, 313(1-3):77-89 .
    Moiwo J P, YANG Yong-hui, et al. 2010. Impact of water resource exploitation on the hydrology and water storage in Baiyangdian Lake. Hydrological Processes, 24(21):3026-3039 .
    Gibbs R J. 1970. Mechanisms controlling world water chemistry. Science, 170(3962): 1088- 1090 .
    WANG Shi-qin, TANG Chang-yuan, et al. 2014. The impacts of a linear wastewater reservoir on groundwater recharge and geochemical evolution in a semi-arid area of the Lake Baiyangdian watershed, North China Plain. Science of the Total Environment, 482: 325-335 .
    Fijani E, Moghaddam A A, et al. 2016. Analysis and assessment of hydrochemical charac-teristics of Maragheh-Bonab Plain Aquifer, Northwest of Iran. Water Resources Manage-ment, 31(3): 765-780 .
    Parkhurst D L. 1995. User’s guide to PHREEQC: A computer program for speciation, reaction-path, advective-transport, and inverse geochemical calculations. Lakewood: U.S. Geological Survey .
    ZHONG Ping, YANG Zhi-feng, et al. 2005. Studies on water resource requirements for eco-environmental use of the Baiyangdian Wetland. Acta Scientiae Circumstantiae, 25(8): 1119-1126 .
    ZHANG Guang-hui, FEI Yu-hong, et al. 2013. A between irrigation intensity and groundwater carrying capacity in North China Plain. Transactions of the Chinese Society of Agricultural Engineering, 29(1):1-10 .
    ZHANG Zhao-ji, FEI Yu-hong, et al. 2009. Investigation and assessment of the sustainable use of groundwater in NCP. Beijing: Geological Publishing House .
    ZHANG Chun-chao, WANG Wen-ke, et al. 2015. Processes of hydrogeochemical evolution of groundwater in the Guanzhong Basin, China. Journal of Groundwater Science and Engineering, 3(2):136-146 .
    HE Nai-hua, ZHU Xuan-qing. 1992. Palaeo environment changes since 30 000 a. BP and effects of human activities in the Baiyangdian area. Marine Geology & Quaternary Geology, 12(2):79-88 .
    LIU Chun-lan, XIE Gao-di, XIAO Yu. 2007. Impact of climatic changes on Baiyangdian wetland. Resources and Environment in the Yangtze Basin, 16(2):245-250 .
    Ledesma-Ruiz R, Pastén-Zapata E, et al. 2015. Investigation of the geochemical evolution of groundwater under agricultural land: A case study in northeastern Mexico. Journal of Hydrology, 521:410-423 .
    WANG Shi-qin, SHAO Jing-li, et al. 2008. Application of MODFLOW and geographic information system to groundwater flow simulation in North China Plain, China. Environmental Geology, 55(7):1449-1462 .
    Brown D G, Johnson K M, et al. 2005. Rural land-use trends in the conterminous United States, 1950-2000. Ecological Applications, 15(6):1851-1863 .
    XIA Jun, ZHANG Yong-yong. 2017. Water resource and pollution safeguard for Xiongan New Area construction and its sustainable development. China Academic Journal, 32(11):1199-1205 .
    Hedges J I. 1992. Global biogeochemical cycles: Progress and problems. Marine Chemistry, 39(1-3): 67-93 .
    LI Li-juan, ZHENG Hong-xing. 2001. Environ-mental and ecological water requirements of a river system: A case study of the Haihe-Luanhe River System. Journal of Geographical Sciences, 11(2):224-230 .
    LV Chen-xu, JIA Shao-feng, JI Zhi-heng. 2010. Dynamics and causes of groundwater table change in plain area of Baiyangdian Basin in last 30 years. South-to-North Water Transfers and Water Science & Technology, 8(1):65-68 .
    YUAN Rui-qiang, WANG Shi-qin, et al. 2017. Changes in flow and chemistry of groundwater heavily affected by human impacts in the Baiyangdian catchment of the North China Plain. Environmental Earth Sciences, 76(16):571 .
    Appelo C A J, Postma D. 2005. Geochemistry, groundwater and pollution. Boca Raton: CRC Press .
    Güler C, Thyne G D. 2004. Hydrologic and geologic factors controlling surface and groundwater chemistry in Indian Wells- Owens Valley area, southeastern California, USA. Journal of Hydrology, 285(1-4): 177-198 .
    LIU Fei, SONG Xian-fang, et al. 2015. Identifying the origin and geochemical evolution of groundwater using hydrochemistry and stable isotopes in the Subei Lake Basin, Ordos energy base, Northwestern China. Hydrology and Earth System Sciences, 19:551-565 .
    YUAN Rui-qiang, SONG Xian-fang, et al. 2011. Using major ions and stable isotopes to characterize recharge regime of a fault-influenced aquifer in Beiyishui River Watershed, North China Plain. Journal of Hydrology, 405(3-4):512-521 .
    WANG Shi-qin, TANG Chang-yuan, et al. 2013. Using major ions and δ15N-NO3- to identify nitrate sources and fate in an alluvial aquifer of Baiyangdian lake watershed, North China Plain. Environmental Science: Processes & Impacts, 15(7):1430-1443 .
    Narany T S, Sefie A, Aris A Z. 2018. The long-term impacts of anthropogenic and natural processes on groundwater deterio?ration. Science of the Total Environment, 630: 931-942 .
    Freeze R A, Cherry J A. 1979. Groundwater. New Jersey: Prentice-Hall, Inc Englewood Cliffs, 604: 2l5-227 .
    WANG Wei-dong, YIN Cheng-qing. 2008. The boundary filtration effect of reed-dominated ecotones under water level fluctuations. Wetlands Ecology and Management, 16: 65-76 .
    CHEN Jian-yao, TANG Chang-yuan, et al. 2004. Spatial geochemical and isotopic charac-teristics associated with groundwater flow in the North China Plain. Hydrological Processes, 18(16): 3133-3146 .
    Chenini I, Khemiri S. 2009. Evaluation of ground water quality using multiple linear regression and structural equation modeling. International Journal of Environmental Science & Technology, 6(3): 509-519 .
  • [1] Rui-fang Meng, Hui-feng Yang, Xi-lin Bao, Bu-yun Xu, Hua Bai, Jin-cheng Li, Ze-xin Liang2023:  Optimizing groundwater recharge plan in North China Plain to repair shallow groundwater depression zone, China, Journal of Groundwater Science and Engineering, 11, 133-145. doi: 10.26599/JGSE.2023.9280012
    [2] Tong Xiao-xia, Gan Rong, Gu Shu-qian, Sun Xing-le, Huang Kai-tuo, Yan Xiao-feng2022:  Stable chlorine isotopic signatures and fractionation mechanism of groundwater in Anyang, China, Journal of Groundwater Science and Engineering, 10, 393-404. doi: 10.19637/j.cnki.2305-7068.2022.04.007
    [3] Ahmed Mohammad Tofayal, Monir Minhaj Uddin, Hasan Md Yeasir, Rahman Md Mominur, Rifat Md Shamiul Islam, Islam Md Naim, Khan Abu Shamim, Rahman Md Mizanur, Islam Md Shajidul2020:  Hydro-geochemical evaluation of groundwater with studies on water quality index and suitability for drinking in Sagardari, Jashore, Journal of Groundwater Science and Engineering, 8, 259-273. doi: 10.19637/j.cnki.2305-7068.2020.03.006
    [4] LI Bo, LI Xue-mei2018:  Characteristics of karst groundwater system in the northern basin of Laiyuan Spring area, Journal of Groundwater Science and Engineering, 6, 261-269. doi: 10.19637/j.cnki.2305-7068.2018.04.002
    [5] LI Xiao-hang, WANG Rui, LI Jian-feng2018:  Study on hydrochemical characteristics and formation mechanism of shallow groundwater in eastern Songnen Plain, Journal of Groundwater Science and Engineering, 6, 161-170. doi: 10.19637/j.cnki.2305-7068.2018.03.001
    [6] ZHOU Xun2017:  Arsenic distribution and source in groundwater of Yangtze River Delta economic region, China, Journal of Groundwater Science and Engineering, 5, 343-353.
    [7] BAI Bing, CHENG Yan-pei, JIANG Zhong-cheng, ZHANG Cheng2017:  Climate change and groundwater resources in China, Journal of Groundwater Science and Engineering, 5, 44-52.
    [8] TIAN Xia, FEI Yu-hong, ZHANG Zhao-ji, LI Ya-song, DUN Yu, GUO Chun-yan2017:  Analysis on hydrochemical characteristics of groundwater in strongly exploited area in Hutuo River Plain, Journal of Groundwater Science and Engineering, 5, 130-139.
    [9] JIANG Ti-sheng, QU Ci-xiao, WANG Ming-yu, SUN Yan-wei, HU Bo, CHU Jun-yao2017:  Analysis on temporal and spatial variations of groundwater hydrochemical characteristics in the past decade in southern plain of Beijing, China, Journal of Groundwater Science and Engineering, 5, 235-248.
    [10] LIU Chun-yan, SUN Ji-chao, JING Ji-hong, ZHANG Ying, GUO Wei-xuan2016:  Distribution characteristics and source of BTEX in groundwater in Guangzhou, Guangdong Province, P. R. China, Journal of Groundwater Science and Engineering, 4, 238-246.
    [11] LIU Ji-chao, SHI Jian-sheng, GAO Ye-xin, REN Zhan-bing2016:  Exploration on compound water circulation system to solve water resources problems of North China Plain, Journal of Groundwater Science and Engineering, 4, 229-237.
    [12] LIU Min, NIE Zhen-long, WANG Jin-zhe, WANG Li-fang, TIAN Yan-liang2016:  An assessment of the carrying capacity of groundwater resources in North China Plain region–Analysis of potential for development, Journal of Groundwater Science and Engineering, 4, 174-187.
    [13] ZHANG Chun-chao, WANG Wen-Ke, SUN Yi-bo, LI Xiang-quan,HOU Xin-wei2015:  Processes of hydrogeochemical evolution of groundwater in the Guanzhong Basin, China, Journal of Groundwater Science and Engineering, 3, 136-146.
    [14] SHANG Xiao-gang, YU Xiang-hui, LI Cheng-ying, CHAI Hui-peng, JIANG Nan-jie2015:  Geochemical characteristics of geothermal water in Weiyuan geothermal field, Huzhu County, Qinghai Province, Journal of Groundwater Science and Engineering, 3, 59-69.
    [15] FEI Yu-hong, ZHANG Zhao-ji, LI Ya-song, GUO Chun-yan, TIAN Xia2015:  Quality evaluation of groundwater in the North China Plain, Journal of Groundwater Science and Engineering, 3, 306-315.
    [16] MA Shao-bing, ZHOU Jun, LIANG Peng, SU Yao-ming2014:  Characteristics-based classification research on typical petroleum contaminants of groundwater, Journal of Groundwater Science and Engineering, 2, 41-47.
    [17] WANG Chun-xiao, ZHANG Zhao-ji, FEI Yu-hong, QIAN Yong2014:  Research on Migration Features of Salt-Fresh Water Interface on the North China Plain, Journal of Groundwater Science and Engineering, 2, 68-79.
    [18] Song Bo, Liu Changli, Zhang Yun, Hou Hongbing, Pei Lixin, Yang Liu2013:  Urban Waste Disposal and Its Impact on Groundwater Pollution in China, Journal of Groundwater Science and Engineering, 1, 88-95.
    [19] Yan Zhang, Shuai Song, Jing Li, Fadong Li, Guangshuai Zhao, Qiang Liu2013:  Stable Isotope Composition of Rainfall, Surface Water and Groundwater along the Yellow River, Journal of Groundwater Science and Engineering, 1, 82-88.
    [20] Zhao Wang, Jiansheng Shi, Zhaoji Zhang, Yuhong Fei2013:  Organic Contamination of Soil and Goundwater in the Piedimont Plain of the Taihang Mountains, Journal of Groundwater Science and Engineering, 1, 74-81.
  • 加载中
计量
  • 文章访问数:  768
  • HTML全文浏览量:  269
  • PDF下载量:  582
  • 被引次数: 0
出版历程
  • 刊出日期:  2018-09-28

目录

    /

    返回文章
    返回