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氡和镭同位素在沿岸海底地下水研究中的应用 被引量:4

Application of Radon and Radium Isotopes in Estimating Submarine Groundwater Discharge in Coastal Areas
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摘要 海底地下水排泄(SGD)是海岸带陆海相互作用的一个重要的过程,其重要意义体现在它对海岸带水循环和地球化学循环的影响,以及它对沿岸海域生态环境的影响。国际上自从20世纪90年代中期开始系统研究海底地下水排泄以来,已经研究和开发出一整套较为完善的理论和方法,但SGD的研究在我国才刚刚起步,相关报道极少见且缺乏不同方法的对比研究。目前,评价SGD常用的方法有:渗流仪法、数值模拟法和地球化学示踪法。其中以氡和镭为代表的地球化学示踪法成为最具影响力的评价方法。该文详细介绍用氡和镭同位素评价SGD的理论和方法及其适用条件。 Submarine groundwater discharge (SGD) is recognized as an important land-sea interaction in the coastal zone, for it is volumetrically and chemically significant to coastal water and chemical budgets, and it may have an influence on coastal ecological environment. Since the mid 90' s, a set of relatively complete theories and methods has been developed and established due to the systematic researches on SGD internationally. How- ever the study on SGD has just begun in China, its relevant report is rarely available and short of comparison experiments of different methods. The current methods for SGD estimation mainly include: seepage meter mea- surement, numerical simulation, geochemical tracing method. Among those methods, geochemical tracing meth- od has become one of the most powerful methods, and radium and radon as the representative of geochemical tracers has been extensively used. The methods and applicable conditions of SGD estimation using radon and radium isotopes are introduced in detail.
出处 《勘察科学技术》 2011年第5期30-36,共7页 Site Investigation Science and Technology
基金 近岸海域的海底地下水排泄及其海洋生态环境效应研究(编号40672166) 多种方法研究胶州湾的海底地下水排泄(编号41072174)
关键词 地下水 海底地下水排泄 海岸带 groundwater submarine groundwater discharge coast radon radium
作者简介 李开培(1984一),男,硕士研究生,研究方向为海底地下水排泄
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参考文献24

  • 1Bumett W C, Bokuniewicz H, Huettel M, et al. Groundwater and pore water inputs to the coastal zone. Biogeochemistry, 2003,66(1 - 2):3 - 33.
  • 2Charette M A, Buesseler K O, Andrews J E. Utility of radiumisotopes for evaluating the input and transport of groundwater-de- rived nitrogen to a Cape Cod estuary. Limnology and Oceanogra- phy, 2001,46: 465 - 470.
  • 3Lee Y W, Kim G. Linking groundwater-borne nutrients and di- nofagellate red-tide outbreaks in the southern sea of Korea using a Ra tracer. Estuarine, Coastal and Shelf Science, 2007,7 : 309 -317.
  • 4Burnett W C. Offshore springs and seeps are focus of working group. EOS, 1999,80:13 - 15.
  • 5Burnett W C, Aggarwal P K, Aureli A, et al. Qualifying sub- marine groundwater discharge in the coastal zone via multiple methods. Science of the Total Environment, 2006,367 : 498 - 543.
  • 6Moore W S. Large groundwater inputs to coastal waters revealed by 226 Ra enrichments. Nature, 1996,380: 612 - 614.
  • 7Cable J E, Burnett W C, Chanton J P, et al. Estimating groundwater discharge into the northeastern Gulf of Mexico using radon-222. Earth and Planetary Science Letters, 1996, 144: 591 - 604.
  • 8Burnett W C, Dulaiova H. Estimating the dynamics of groundw- ater input into the coastal zone via continuous radon-222 mea- surements. Journal of Environmental Radioactivity, 2003,69: 21 - 35.
  • 9Gonneea M E, Morris P J, Dulaiova H, et al. New perspectives on radium behavior within a subterranean estuary. Marine Chem- istry, 2008,109:250 - 267.
  • 10Moore W S. Determining coastal mixing rates using radium iso- topes. Continental Shelf Research, 2000, 20:1993 - 2007.

二级参考文献27

  • 1李福林,陈学群,张奇,PETTIFER Geoff,宋福山,王潘平,刘学忠,姜克华,刘竹梅.莱州湾东岸海底地下水的水文地球化学特征及其地球化学演化模式[J].海洋科学进展,2005,23(2):190-196. 被引量:8
  • 2廖小青,刘贯群,袁瑞强,叶玉玲,李玉瑛.黄河农场地区地下水入海量FEFLOW软件数值模拟[J].海洋科学进展,2005,23(4):446-451. 被引量:9
  • 3BURNETT W C, BOKUNIEWICZ H, HUETTEL M, MOORE W S, TANIGUCHI M. 2003. Groundwater and pore water inputs to the coastal zone [ J ]. Biogeochemistry, 66 : 3 - 33.
  • 4BOKUNIEWICZ H J. 1980. Groundwater seepage into Great South Bay, New York. Estuar[J]. Coast. Mar. Sci,10:437-444.
  • 5BOKUNIEWICZ H J, PAVLIK B. 1990. Groundwater seepage along a barrier island [ J ]. Biogeochemistry, 10 : 257 - 276.
  • 6BOEHM A B, PAYTAN A, SHELLENGARGER G G, DAVIS K A. 2006. Composition and flux of groundwater from a California beach aquifer: Implications for nutrient supply to the surf zone[ J]. Continental Shelf Research 26:269 - 282.
  • 7BECK A J, RAPAGLIA J P, COCHRAN J K, BOKUNIEWICZ H J. 2007. Radium mass-balance in Jamaica Bay, NY: Evidence for a substantial flux of submarine groundwater[J]. Marine Chemistry, online at www. sciencedirect, com.
  • 8CAPONE D. G, SLATER J. M. 1990. Interannual patterns of water table height and groundwater derived nitrate in nearshore sediments[ J]. Biogeochemistry, 10 : 277 - 288.
  • 9CHARETTE M A, BUESSELER K O, ANDREWS J E. 2001. Utility of radium isotopes for evaluating the input and transport of groundwater-derived nitrogen to a Cape Cod estuary [ J ]. Limnol. Oceanogr. , 46:465-470.
  • 10CHARETTE M A, SPLIVALLO R, HERBOLD C, BOLLINGER M, MOORE W S. 2003. Salt marsh submarine groundwater discharge as traced by radium isotopes[J]. Mar. Chem. , 84:113 -121.

共引文献28

同被引文献54

  • 1贾国东,黄国伦.海底地下水排放:重要的海岸带陆海相互作用过程[J].地学前缘,2005,12(U04):29-35. 被引量:8
  • 2Folger P F, Poeter E, Wantye R B, et al. e22Rn transport in fractured crystalline rock aquifer: result from numerical simulation[J]. Journal of Hydrolo- gy, 1997, 195: 45-77.
  • 3Cable J E, Burnett W C, Chanton J P, et al. Esti- mating groundwater discharge into the northeastern Gulf of Mexico using radon-222 [J]. Earth Planet Sci Lett, 1996, (144): 591-604.
  • 4Dulaiova H, Burnett W C, Chanton J P, et al. As- sessment of groundwater discharges into West Neck Bay, New York, via natural tracers[J]. Continental Shelf Research, 2006, 26 1971-1983.
  • 5Lambert M J, Burnett W C. Submarine groundwa- ter discharge estimates at a Florida coastal site based on continuous radon measurements [J]. Biogeo- chem, 2003, 66: 55-73.
  • 6Burnett W C, Dulaiova H. Estimating the dynamics of groundwater input into the coastal zone via con- tinuous radon-222 measurements[J]. J Environ Ra-dioact, 2003, (69): 21-35.
  • 7Swarzenski P. U/Th series radionuclides as coastal groundwater tracers[R]. US: American Chemical Society, 2007, (107): 663-674.
  • 8Peterson R N, Santos I R, Burnett W C. Evalua ting groundwater discharge to tidal rivers based on a Rn-222 time-series approach[J]. Estuarine, Coastal and Shelf Science. 2010. 86, 165-178.
  • 9中国海湾志编委会.中国海湾志(第四分册):山东半岛南部和江苏省海湾[M].北京:海洋出版社,1993.
  • 10Zhuo W H, Iida T, Yang X T. Occurrence o{ Z22Rn, 226Ra, 228Ra and U in groundwater in Fujian province, China[J]. J Environ Radioact, 2001, 53 (1): 111 120.

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