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内陆盆地区高碘地下水的成因分析:以内蒙古河套平原杭锦后旗为例 被引量:9

The formation of inland-high-iodine groundwater:A case study in Hangjinhouqi,Hetao Plain
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摘要 针对内陆盆地区高碘地下水的成因问题,在典型地区——内蒙古河套平原杭锦后旗系统采集了25个地下水样和3个地表水样,分析了地下水中的I、Na+、Ca2+、Mg2+、Cl-、SO2-4、HCO-3、As、Fe、Br、pH、Eh等指标。应用因子分析和多元线性回归分析方法,对内陆盆地区高碘地下水的成因进行了分析。结果表明:地下水中碘含量为31.84~1 289.57μg/L,高碘地下水主要分布于研究区北部地下水流相对滞缓的排泄带附近、地下35m的范围内,水化学类型以碱金属非重碳酸型为主;地下水中碘可能来源于狼山中元古代狼山群沉积物或平原区第四纪浅层沉积物;沉积物中的Fe2O3和有机质在低Eh条件下(Eh〈-30mV)分别发生还原性溶解和分解,吸附在其上的碘随之被释放到地下水中。另外,沉积物中的碘在高Ca2+和弱碱性条件下吸附作用较弱,这也间接促进了碘在地下水中的富集。相对而言,有机质分解更为普遍,但Fe2O3的还原性溶解对碘富集影响更为强烈。该成果进一步深化了对内陆盆地区高碘地下水形成机制的认识,并为当地饮水安全和生态安全提供科学依据。 The survey of Hangjinhouqi,one of the high-arsenic and iodine groundwater regions in Hetao Plain,has been conducted,aiming at the formation of inland-high-iodine groundwater.The results based on 25groundwater samples and 3surface water samples showed that the concentration of iodine in groundwater samples ranges from 31.84μg/L to 1289.57μg/L.High-iodine groundwater mainly distributes in the north discharge area of groundwater in the study area with slow flow and strong evaporation within 35m underground.Furthermore,most of the high-iodine groundwater belongs to the alkali metal but nonbicarbonate type of water.Factor and regression analyses identified that the main factor,the desorption of iodine,plays an important role in the enrichment of iodine in groundwater.Iodine may come from the sediments in Langshan or the plain.Under reduction condition,Fe2O3is dissolved and organic matter is decomposed;Iodine in Fe2O3is desorbed into the groundwater;adsorption of iodine in sediments weakens in the condition of high-Ca2+and low-Eh(Eh〈-30mV).Iodine desorbed gets together in the discharge area of groundwater,forming the high-iodine groundwater.The decomposition of organic matter occurs widely in Hangjinhouqi,while the reducing dissolution of Fe2O3is more important for the aggregation of iodine in groundwater.The results not only make a better understanding of the genesis of high-iodine groundwater,but also provide a scientific basis for the safety of local drinking water.
出处 《地学前缘》 EI CAS CSCD 北大核心 2014年第4期66-73,共8页 Earth Science Frontiers
基金 国家自然科学基金项目(40872157 40830748) 国家重点基础研究发展计划'973'项目(2010CB428802) 高等学校博士学科点专项科研基金项目(20110145110003) 国家高技术研究发展计划'863'项目(2012AA062602) 教育部新世纪优秀人才支持计划项目(NCET-07-0773) 中央高校基本科研业务费专项资金项目(CUGL100501) 国家水体污染控制与治理科技重大专项(2012ZX07204-003-04)
关键词 内陆盆地区 高碘地下水 杭锦后旗 成因 inland high-iodine groundwater Hangjinhouqil formation
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参考文献20

  • 1中华人民共和国国家质量监督检验检疫总局.GB/T19380-2003水源性高碘地区和地方性高碘甲状腺肿病区的划定[S].北京:中国标准出版社,2004.
  • 2Andersen S, Petersen S B, Laurberg P. Iodine in drinking water in Denmark is bound in humie substances[J]. European Journal of Endocrinology, 2002, 147(5): 663-670.
  • 3Andersen S, Guan H X, Teng W P, et al. Speciation of io- dine in high iodine groundwater in China associated with goi- tre and hypothyroidism [J ]. Biological Trace Element Re search, 2009, 128(2): 95 103.
  • 4Muramatsu Y, Hans Wedepohl K. The distribution of iodine in the Earth's crust[J]. Chemical Geology, 1998, 147(3/4): 201-216.
  • 5Zhang E Y, Wang Y Y, Qian Y, et al. Iodine in groundwater of the North China Plain: Spatial patterns and hydrogeochem ical processes of enrichment[J]. Journal of Geochemical Exploration, 2013, 35:40 53.
  • 6张慧敏,何玲玲,宁志雄,等.内蒙古地方性高碘甲状腺肿流行状况分析[J].中国地方病学杂志,2007,26:342-343.
  • 7Deng Y M, Wang Y X, Ma T. Isotope and minor element ge ochemistry of high arsenic groundwater from Hangjinhouqi the Hetao Plain, Inner Mongolia[J]. Applied Geochemistry 2009, 24: 587-599.
  • 8杨素珍,郭华明,唐小惠,沈照理.内蒙古河套平原地下水砷异常分布规律研究[J].地学前缘,2008,15(1):242-249. 被引量:33
  • 9彭润民,翟裕生.内蒙古狼山—渣尔泰山中元古代被动陆缘热水喷流成矿特征[J].地学前缘,2004,11(1):257-268. 被引量:66
  • 10中华人民共和国卫生部.GB5749-2006生活饮用水卫生标准[S].北京:中国标准出版社,2006.

二级参考文献52

  • 1李兆龙,许文斗,庞文忠.内蒙古中部层控多金属矿床硫、铅、碳和氧同位素组成及矿床成因[J].地球化学,1986,15(1):13-22. 被引量:33
  • 2马保起,李德文,郭文生.晚更新世晚期呼包盆地环境演化与地貌响应[J].第四纪研究,2004,24(6):630-637. 被引量:39
  • 3郭晓尉,秦启亮,边建朝,刘传蛟,王欣,刘源,黄居梅,翟丽屏,蒋雯,陈祖培.山东省水源性高碘地区分布现状与特征[J].中国公共卫生,2005,21(4):403-405. 被引量:30
  • 4李建彪,冉勇康,郭文生.河套盆地托克托台地湖相层研究[J].第四纪研究,2005,25(5):630-639. 被引量:43
  • 5YANG Haiming,SU Shanggou.Characteristics and metallogenic significance of middle Proterozoic metavolcanites on the northern side of Langshan mountain,Inner Mongolia[J].Mineral Deposits,1992,11(2):143-153(in Chinese).[杨海明,苏尚国.内蒙古狼山北侧中元古代变
  • 6SHI Lindao,XIE Xianjun,GONG Zhengji.Nonferrous metal deposits in middle Proterozoic Langshan-Zhaertai rift zone[A].RUI Zongyao,SHI Lindao,FANG Ruheng.Geology of Ore Deposits of Nonferrous Metals on the Northern Margins of the North China Landmass and Its
  • 7WANG Kuiyuan,ZHAO Yanming,CAO Xiulan.Geology of Proterozoic Typical Pb-Zn Ore Deposits in the Northern Margins of the North China Platform[M].Beining:Geological Publishing House,1994.1-12,115-164 (in Chinese).[王魁元,赵彦明,曹秀兰.华北陆台北缘元古典型铅锌
  • 8PENG Runmin,ZHAI Yusheng.The conformation of the metamorphic double-peaking volcanic rocks in Langshan Group of the Dongshengmiao ore district,Inner Mongolia,and its significance[J].Earth Science-Journal of China University of Geosciences,1997,22(6):589-5
  • 9ZHAI Yusheng.Tectonic evolution and metallogenic systems in paleocontinental margins[A].Symposium on International Geological Sciences Congress Held in Peking University[C].Beijing:Seismological Publishing House,1998.769-778(in Chinese).[翟裕生.古大陆边缘
  • 10XIA Linqi,XIA Zuchun,REN Youxiang,et al.Marine Volcanic Rocks in Qinling and Qilian Mountains[M].Wuhan:Publishing House of China University of Geosciences,1991.59-106,183-198 (in Chinese).

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