• ISSN 2305-7068
  • Indexed by ESCI CABI CAS
  • DOAJ Scopus GeoRef AJ CNKI
Advanced Search
Volume 4 Issue 2
Jun.  2016
Turn off MathJax
Article Contents
WU Jian-qiang, WU Xia-yi. 2016: Geological environment impact analysis of a landfill by the Yangtze River. Journal of Groundwater Science and Engineering, 4(2): 96-102.
Citation: WU Jian-qiang, WU Xia-yi. 2016: Geological environment impact analysis of a landfill by the Yangtze River. Journal of Groundwater Science and Engineering, 4(2): 96-102.

Geological environment impact analysis of a landfill by the Yangtze River

  • Publish Date: 2016-06-28
  • In order to assess the geological environment impact of a city landfill by the Yangtze River, soils from different depths in the dumpsite were sampled and analyzed. It was found that pollutants content at the site was distinctly higher than that in nearby environments. The content of heavy metals, such as Cd, Hg, As, Pb and Cu, reduces as depth increases; the content of elements F, Cl and N is the contrary. Pollutants migration driven by underground water flow was analyzed, considering the hydro-geological conditions of the site. It is believed that, due to leaching after rainfall infiltration, pollutants in the garbage layer migrates deeper, the cohesive soil in the underlying surface prevents them from spreading to the deeper aquifer; additionally, the high pressure tolerance of the deep groundwater is a key factor in preventing pollutants from entering the aquifer. Furthermore, human control has reduced the annual fluctuation range of water level in nearby rivers, weakening the hydrodynamic relations with phreatic water, and thus reducing the spreading of pollutants to nearby surface waters.
  • 加载中
  • LI Chun. 2001. Foreign groundwater resource protection and administration research development. Chinese Population, Resources and Environment, 11(51): 163–164 .
    YANG Wen-lan, LIU Li, ZHU Rui-jun. 2010. Study on nitrogen contamination and its main form in groundwater around the refuse landfills of a city in north Jiangsu province. Earth and Environment, 38(2): 157–160 .
    WANG Guang-hua. 1999. Geological points for attention and suggestions on landfill site selection. Environment Protection, (9): 17–18 .
    ZHAO Yong-sheng. 2012. Risk management and screening of remediation technologies for contaminated groundwater site. Journal of Jilin University (Earth Science Edition), 42(5): 1426–1433 .
    WANG Lin-qing, LI Xiao-ming, ZHU Fa-hua. 2015. Current situation of municipal solid wastes disposal and development proposals in China. Environmental Pollution & Control, 37(2): 106–109 .
    ZENG Zhao-hua. 1994. The formation and distribution of Fe and Mn elements in the groundwater in the lower-middle reaches area of the Yangtze River. Resources and Environment in the Yangtze Valley, 3(4): 326–329 .
    QIAN Hui, MA Zhi-yuan, LI Pei-yue. 2012. Hydrogeochemistry (second edition). Beijing: Geological Publishing House .
    LIU Hui-hu, SANG Shu-xun, et al. 2007. Study on geochemistry of heavy metals in municipal landfill leachate. Studies of Trace Elements and Health, 24(2): 59–61 .
    CAO Jian-juan, LIU Yong-juan, GUO Guang-li. 2004. The research on the selection of municipal solid waste landfill site. Industrial Safety and Environmental Protection, 30(4): 22–24 .
    FENG Ya-bin, CHEN Quan. 2000. Study on existing problems of landfill sites in China. Environment Protection, (10): 14–16 .
    ZENG Zhao-hua. 1997. The background features and formation of chemical elements of groundwater in the region of the middle and lower reaches of the Yangtze River. Acta Geologica Sinica (English Edition), 71(1): 80–89 .
  • Relative Articles

    [1] Xiao-xia Tong, Rong Gan, Shu-qian Gu, Xing-le Sun, Kai-tuo Huang, Xiao-feng Yan, 2022: 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
    [2] Vinay Kumar Gautam, Mahesh Kothari, P.K. Singh, S.R. Bhakar, K.K. Yadav, 2022: Analysis of groundwater level trend in Jakham River Basin of Southern Rajasthan, Journal of Groundwater Science and Engineering, 10, 1-9.  doi: 10.19637/j.cnki.2305-7068.2022.01.001
    [3] Abdelhakim LAHJOUJ, Abdellah EL HMAIDI, Karima BOUHAFA, 2020: Spatial and statistical assessment of nitrate contamination in groundwater: Case of Sais Basin, Morocco, Journal of Groundwater Science and Engineering, 8, 143-157.  doi: 10.19637/j.cnki.2305-7068.2020.02.006
    [4] KHELFAOUI Hakim, DAJBRI Larbi, LAKHAL Fatima Zohra, CHAFFAI Hicham, HANI Azzedine, SAYAD Lamine, 2020: Determination of the origin of mineralization and groundwater salinity in the Adrar region in the southwest of Algeria, Journal of Groundwater Science and Engineering, 8, 158-171.  doi: 10.19637/j.cnki.2305-7068.2020.02.007
    [5] LI Bo, LI Xue-mei, 2018: 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
    [6] LI Xiao-hang, WANG Rui, LI Jian-feng, 2018: 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
    [7] ZHOU Xun, 2017: Arsenic distribution and source in groundwater of Yangtze River Delta economic region, China, Journal of Groundwater Science and Engineering, 5, 343-353.
    [8] Eunhee Lee, Kyoochul Ha, Nguyen Thi Minh Ngoc, Adichat Surinkum, Ramasamy Jayakumar, Yongje Kim, Kamaludin Bin Hassan, 2017: Groundwater status and associated issues in the Mekong-Lancang River Basin: International collaborations to achieve sustainable groundwater resources, Journal of Groundwater Science and Engineering, 5, 1-13.
    [9] Pezhman ROUDGARMI, Ebrahim FARAHANI, 2017: Investigation of groundwater quantitative change, Tehran Province, Iran, Journal of Groundwater Science and Engineering, 5, 278-285.
    [10] Khongsab Somphone, OunakoneKone Xayviliya, 2017: Climate change and groundwater resources in Lao PDR, Journal of Groundwater Science and Engineering, 5, 53-58.
    [11] BAI Bing, CHENG Yan-pei, JIANG Zhong-cheng, ZHANG Cheng, 2017: Climate change and groundwater resources in China, Journal of Groundwater Science and Engineering, 5, 44-52.
    [12] Chamroeun SOK, Sokuntheara CHOUP, 2017: Climate change and groundwater resources in Cambodia, Journal of Groundwater Science and Engineering, 5, 31-43.
    [13] CUI Zhen, YANG Po, ZHANG Zheng, 2016: Comprehensive suitability evaluation of urban geological environment in Zhengzhou-Kaifeng area, Journal of Groundwater Science and Engineering, 4, 204-212.
    [14] ZHANG Chun-chao, WANG Wen-Ke, SUN Yi-bo, LI Xiang-quan,HOU Xin-wei, 2015: Processes of hydrogeochemical evolution of groundwater in the Guanzhong Basin, China, Journal of Groundwater Science and Engineering, 3, 136-146.
    [15] Liang ZHU, Wei-dong KANG, Ji-chao SUN, Jing-tao LIU, 2014: Quantitative Calculation of Groundwater Vulnerability Assessment Based on Quantification Theory III, Journal of Groundwater Science and Engineering, 2, 78-85.
    [16] MA Shao-bing, ZHOU Jun, LIANG Peng, SU Yao-ming, 2014: Characteristics-based classification research on typical petroleum contaminants of groundwater, Journal of Groundwater Science and Engineering, 2, 41-47.
    [17] YUE Chen, CUI Ya-li, SHAO Jing-li, DONG Xiang, RAO Rong, 2014: Research Progress of the Geological Environment in Ecological Planning, Journal of Groundwater Science and Engineering, 2, 47-53.
    [18] Song Bo, Liu Changli, Zhang Yun, Hou Hongbing, Pei Lixin, Yang Liu, 2013: Urban Waste Disposal and Its Impact on Groundwater Pollution in China, Journal of Groundwater Science and Engineering, 1, 88-95.
    [19] Jingli Shao, Yali Cui, Yunzhang Zhao, 2013: A Study on Infiltration and Groundwater Development in the Influent Zone of the Perched Lower Yellow River, Journal of Groundwater Science and Engineering, 1, 46-53.
    [20] Jiansheng Shi, Hongtao Liu, Zhiyuan Liu, Tieliu Chen, 2013: Application of the “Accurate Control Groundwater Resources” Theory in Containment of Groundwater Resource Exhaustion Trend, Journal of Groundwater Science and Engineering, 1, 1-10.
  • 加载中

Catalog

    Article Metrics

    Article views (562) PDF downloads(1039) Cited by()
    Proportional views
    Related

    Welcome to Journal of Groundwater Science and  Engineering!

    Quick Submit

    Online Submission   E-mail Submission

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return