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Volume 4 Issue 1
Mar.  2016
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YU Kai-ning, LIAO An-ran. 2016: Primary study on evaluation index system for groundwater exploitation potentiality based on the niche theories. Journal of Groundwater Science and Engineering, 4(1): 18-25.
Citation: YU Kai-ning, LIAO An-ran. 2016: Primary study on evaluation index system for groundwater exploitation potentiality based on the niche theories. Journal of Groundwater Science and Engineering, 4(1): 18-25.

Primary study on evaluation index system for groundwater exploitation potentiality based on the niche theories

  • Publish Date: 2016-03-28
  • This paper presents a method combining single-indicator comprehensive evaluation and influence factor identification to measure groundwater quality. This method not only reflects groundwater quality classification with clear physical significance, but also divides the possibilities of man-made pollution in regional groundwater. The paper selects 6 063 representative groundwater wells in the North China Plain to evaluate 49 groundwater inorganic and organic index and comes to a conclusion: Controlled by geological environment and hydrogeological conditions, the groundwater quality in the North China Plain deteriorates from the bottom of maintain to coastal area, with Class I to III groundwater decreasing from 49% to 3.9% while Class V groundwater increasing from 21% to 86.9%; the quality of deep groundwater is better than that of shallow groundwater; the contribution rate of manganese, total hardness, total dissolved solids and iodide in shallow groundwater to over-III type water exceeds 50%; the contribution rate of nitrite in pollution index reaches 20%; while heavy metal and organic indexes have limited impact on regional groundwater quality. The North China Plain is an important economic area in China. Over decades, it has witnessed intense human activities, and water resource quantity demanded has been far greater than quantity supplied. Due to scarce surface water resource, groundwater becomes the pillar supporting regional economic development. This has led to increasing groundwater exploitation and development. According to statistics, the exploitation degree of shallow groundwater reaches 105% in the North China Plain and 118% in the Hebei Plain; the exploitation degree of deep groundwater reaches 143% in the North China Plain and 163% in the Hebei Plain. The serious over-exploitation of groundwater brings various geological environmental problems, with the worsening of groundwater quality being a typical one. Besides impact brought by human activities, the poor quality of natural water in the North China Plain is also an important factor. Therefore, to understand the current regional groundwater quality situation and to master influence factors and influence degree can provide reliable scientific protection for regional economic development.
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  • LIN Xiao. 2003. An analysis of the enterprise competition strategy based on niche theory. Journal of Nanjing Forestry University (Humanities and Social Science Edition), 3(3): 58-61.
    Smith E P. 1982. Niche breadth, resource availability, and inference. Ecology, 63(6): 1675-1681.
    LI Jie, ZHU Jin-zhao, ZHU Qing-ke. 2003. A review on niche theory and niche metrics. Journal of Beijing Forestry University, 2(1): 100-107.
    XIANG Yan-ping, XIANG Chang-guo, CHEN You-lian. 2010. Application of the niche theory in evaluation of main tourism scenic areas in Zhangjiajie City. Chinese Journal of Applied Ecology, 21(5): 1315-1320.
    Hurlbert S H. 1978. The measurement of niche overlap and some relatives. Ecology, 59(1): 66-67 .
    XU Ai-ping. 2008. Research on the evaluation of tourist attractions' niche and demonstration study. Fuzhou: Fujian Normal University.
    LIU Hua-tai, GUO Zhan-rong, et al. 2000. Analysis of the permissible utilization volume of groundwater in northwestern area and exploitation potential. Hydrology, 6: 17-20.
    QIAO Xiao-ying, WANG Wen-ke, KONG Jin-ling. 2005. Groundwater resources evaluation and potential analysis supported by GIS on middle reaches of Heihe River Basin Hexi Corridor. Arid Land Geography, 28(02): 219-224.
    Hutchinson G E. 1957. Concluding remarks. In: Cold spring harbor symposia on quantitative biology, 22: 415-427. New York: Cold Spring Harbor Laboratory Press .
    Grinnell J. 1917. The niche-relationship of the California thrasher. Auk, 34: 427-433 .
    WANG Ru-song. 1988. The discussion on city ecological niche. Urban Environment and the Urban Ecology, 1(1): 20-24.
    YANG Xiao-wen, Ma Ji-sheng. 1992. A view on some terms related to niche and their measurements. Chinese Journal of Ecology, 11(2): 44-49.
    Elton C. 1927. Anima1 Ecology. London: Sidgwick and Jackson, 63-68 .
    DENG Ming-jiang. 2009. Current situation and its potential analysis of exploration and utilization of groundwater resources of Xinjiang. Arid Land Geography, 32(05): 647-654 .
    Pianka E R. 1982. Evolutionary ecology. New York: Harper and Row.
    Whittaker R H. 1978. Direct gradient analysis. In: Ordination of plant communities. Netherlands: Springer.
    Magesh N S, Chandrasekar N, Soundranayagam J P. 2012. Delineation of groundwater potential zones in Theni district, Tamil Nadu, using remote sensing, GIS and MIF techniques. Geoscience Frontiers, 3(2): 189-196.
    Levins R. 1968. Evolution in changing environments: Some theoretical explorations. New Jersey: Princeton University Press.
    YE Chao, LI Yu, TIAN Mao-yong. 2005. Discussion on potential of groundwater recharge based on GIS. Hydrogeology and Engineering Geology, (1): 67-69.
    LI Wei-fang, FENG Yue-ling. 1983. Exploitation situation and exploitation potentiality of groundwater in Beijing. Haihe Water Resources, (1): 58-60.
    Grubb P J. 1977. The maintenance of species- richness in plant communities: The importance of the regeneration niche. Biol. Rev, 52(1): 107-145 .
    ZHU Chun-quan. 1997. The niche ecostate-ecorale theory and expansion hypothesis. Acta Ecologica Sinica, 17(3): 324-332.
    Pielou E C. 1971. Niche width and overlap: A method for measuring them. Ecology, 53(4): 687-692.
    Colwell R K, Futuyma D J. 1971. On the measurement of niche breadth and overlap. Ecology, 52: 567-576 .
    Oikonomidis D, Dimogianni S, et al. 2015. A GIS remote sensing-based methodology for groundwater potentiality. Journal of Hydro?logy, 525: 197-208 .
    Grinnell J. 1924. Geography and evolution. Ecology, 5(3): 225-229 .
    WANG Gui-ling, LIU Zhi-ming, et al. 2003. Assessment method of groundwater exploitation potential. Hydrogeology and Engineering Geology, 1: 63-66, 72.
    Ouyang Zhi-yun, WANG Ru-song. 1996. Ecological niche suitability model and its application in land suitability assessment. Acta Ecologica Sinica, 16(2): 113-120.
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