生态与农村环境学报 ›› 2005, Vol. 21 ›› Issue (4): 74-76.doi:

• 论文 • 上一篇    下一篇

河套灌区地下水氮污染状况

 冯兆忠, 王效科,冯宗炜   

  1. 中国科学院生态环境研究中心
  • 收稿日期:2004-11-26 出版日期:2005-10-25 发布日期:2011-10-19
  • 作者简介:冯兆忠(1976-),男,山东蓬莱人,博士,助理研究员,主要从事农业生态学、污染生态学研究。
  • 基金资助:

    国家自然科学基金资助项目(30070149);国家基金委创新群体资助项目(40321101)

N pollution of groundwater in Hetao Irrigation District

 FENG  Zhao-Zhong, WANG  Xiao-Ke, FENG  Zong-Wei   

  1. Research Center for Eco-Environmental Sciences,Chinese Academy of Sciences
  • Received:2004-11-26 Online:2005-10-25 Published:2011-10-19

摘要: 河套灌区浅层地下水氮浓度和地下水埋深的季节变化规律调查结果表明:3月地下水NO-3-N和TN浓度显著高于5、7和9月,地下水埋深也比5月和7月深。不同类型的井水N浓度差异较大:农田与庭院的井水NO-3-N浓度显著高于村庄附近的井水,而NH+4-N和TN则表现为庭院井水浓度显著高于农田和村庄。地下水氮形态以NO-3-N为主,全年17.1%的水井地下水NO-3-N浓度高于10 mg·L-1,最高达184.4 mg·L-1。在灌溉量和其他生产条件相同的情况下,沙壕渠试验站农场内施肥区井水NO-3-N浓度[(17.55±15.02)mg·L-1]明显高于未施肥区[(7.67±4.48)mg·L-1],且65.5%的水样NO-3-N浓度超过WHO规定的生活饮用水NO-3-N浓度上限值(10 mg·L-1),而未施肥区仅有27.6%的水样超标。井水NO-3-N的来源主要为农田氮肥与动物粪肥,当地地下水NO-3-N污染已不容忽视。

关键词: 河套灌区, 硝态氮, 总氮, 淋溶

Abstract: Seasonal changes in nitrate concentration and table of groundwater in Hetao Irrigation District were investigated.Results show that in March the concentrations of NO-3-N and TN were significantly higher than those in May,July and September and the groundwater table was also lower than those in May and July.Sharp difference was found in N concentration between wells different in type.The NO-3-N concentration in the wells in farmlands and courtyards was significantly higher than those near villages,whilst the concentrations of NH+4-N and TN in the wells in courtyards were higher than those in farmlands and near villages.The major N component of the N pollution in the groundwater was(NO-3-N) and about 17.1% of the groundabuter samples investigated were above 10 mg·L-1 in NO-3-N concentration throughout the year with the highest reaching 184.4 mg·L-1.When similar in irrigation rate and farming practice,65.5% of the groundwater samples in the fertilized zone were over 10 mg·L-1 in NO-3-N concentration,whereas only 27.6% of the groundwater samples in the non-fertilized zone.In the former,the concentration of(NO-3-N) averaged(17.55±15.02) mg·L-1,which was much higher than that in the latter([(7.67±4.48)) mg·L-1].Higher NO-3-N concentration came from N fertilizer and animal manure applied in farming production and courtyard economy production.Therefore,the problem of NO-3-N contamination of groundwater that occurred with the current local N application rate can′t be ignored.

Key words: Hetao Irrigation District, nitrate-nitrogen, total nitrogen, leaching

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