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Volume 3 Issue 1
Mar.  2015
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Article Contents
CUI Xiang-xiang, FEI Yu-hong, ZHANG Zhao-ji, et al. 2015: Distribution and migration of lead in soil of Xiao River, Shijiazhuang, Hebei Province. Journal of Groundwater Science and Engineering, 3(1): 98-104.
Citation: CUI Xiang-xiang, FEI Yu-hong, ZHANG Zhao-ji, et al. 2015: Distribution and migration of lead in soil of Xiao River, Shijiazhuang, Hebei Province. Journal of Groundwater Science and Engineering, 3(1): 98-104.

Distribution and migration of lead in soil of Xiao River, Shijiazhuang, Hebei Province

  • Publish Date: 2015-03-28
  • The Xiao River sewage irrigation area in Luancheng where wastewater from Shijiazhuang flows through was taken as the research area. Five groundwater monitoring wells were set perpendicular to Xiao River, the research reveals the migration law and distribution characteristics of poisonous metal lead, through collecting and analyzing soil samples at different depths, investigating lithologic structure and pollution. The result shows that soil type has great impact on vertical lead distribution in aeration zone, which means that lead concentrates more in clay than in sand. Lead migrates fast in silty soil and silty clay, but slow in sand. The content of lead soil adsorbed decreases with grain size increasing. The most important factor influencing the distribution of lead is the soil type.
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    ZHAO Xiao-qing, LI Li-jiao, YANG Hong-hui, et al. 2012. The geochemical characteristics of heavy metals in agri?cultural soils of the Bijiang watershed in Yunnan Province. Acta Geoscientica Sinica, 33(3): 331-340.
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    SHAO Zhi-peng, MIAO Xiang-wen, CUI Shao- rong. 2002. Research advances of using wastewater to irrigate trees. World Forestry Research, 15(5): 26-31.
    MU Zhong-yi, MA Da-ming, ZHENG Lian- sheng, 1986. Sewage irrigation and en?vironmental problems-taking Shijiazhuang sewage irri-gation area for example. Geography and Geo- Information Science, 2(4):46-50,15.
    ZHANG Qing-hui, WANG Gui, ZHAO Jie, ZHU Jin. 2012. Investigation of lead and its potential ecological risk evaluation in waste-water irrigation area in Suburbs. Chinese Agricultural Science Bulletin, 28(23):237- 241.
    JING Li-jie, WANG Min. 2008. Adsorption properties of heavy metals in different types of soil. Ecology and Environment, 17(1): 245-248.
    YUAN Bao-hui, LV Zhi-yuan, XU Bing, et al. 2004. The development of sewage irrigation and utilization. Inner Mongolia Water Resources, 4:40-41, 61.
    SONG Ze-feng, LUAN Wen-lou, LV Ke-jian, et al. 2011. Distribution characteristics of As in Shijiazhuang sewage irrigation area, Hebei Province. Geology in China, 38(1): 204-211.
    ZHANG Min, CAI Wu-tian, LIU Xue-song, et al. 2012. Distribution characteristics of con-taminants in waster-soil-groundwater in waste?water irrigation area. Earth and Envi-ronment, 40(1):30-36.
    ZHOU Zhen-min. 2010. Distribution of heavy metal pollution in farmland soil under wastewater irrigaiton. Journal of Irrigation and Drainage, 29 (6): 76-78, 90.
    XU Qing, LIU Xiao-duan, TANG Qi-feng, et al. 2011. A multi element survey of surface soil and pollution estimate in Baotou City. Arid land Geo?graphy, 34(1):91-99.
    WANG Gui-ling, LIN Wen-jing. 2003. Contami-nation of soil sewage irrigation and its remediation. Journal of Agro-Environment Science, 22(2):163-166.
    WANG Chong-chen, WANG Peng. 2009. Effect of pH on release amount of Pb and Cd in Soil. Journal of Anhuiagricultural Science, 37(5): 2170-2171.
    ZHANG Shu-li. 2009. Progress of study on environmental pollution caused by the sewage irrigation. Science and Technology Infor-mation Development and Economy, 19(27): 128-129, 150.
    CHU Bin-bin, LUO Li-qiang, WANG Xiao-fang, et al. 2012. Lead isotopes as tracers in the Qixiashang lead-zinc mining area, Nanjing. Acta Geoscientica Sinica, 33(2):209-215.
    WU Wen-yong, YIN Shi-yang, LIU Hong-lu, et al. 2013. Spatial structure and distribution characteristics of soil heavy metals in waste-water irrigation district. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 29(4):165-173.
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