期刊文献+

冀东表层土壤中镉的环境地球化学基线 被引量:1

Geogenic Distribution and Baseline Concentrations of Cadmium in Surficial Soil from Eastern Hebei Province,China
下载PDF
导出
摘要 以土壤环境地球化学研究为主线,以冀东地区13 472 km2为研究区域,将土壤重金属污染元素镉的空间分布规律与环境地球化学机理研究相结合,建立区域土壤环境地球化学基线,选用合适的判别指标判识自然作用过程与人类活动过程对土壤环境的影响。通过对3 287个样品的镉含量的统计分析,结果表明,冀东地区表层土壤中镉的基线值为0.073 mg/kg,镉元素含量大于0.230 mg/kg的样品可能遭受人为污染的影响。地质累积指数分析结果显示,冀东地区49.0%的表层土壤未受镉污染,47.6%的表层土壤在无污染与中度污染之间,2.1%受中度污染,1.2%的表层土壤介于中度污染到强污染之间,只有1%受强污染。污染程度指数分析则显示,冀东地区94.5%的表层土壤未受到镉污染,98.8%的表层土壤污染程度小于2,总污染程度小于0,即总体未受到污染。 The characteristics of environmental geochemistry of heavy metal pollutant cadmium (Cd) in the sur- ficial soil from Eastern Hebei Province about 13,472 km2 were studied. The baseline concentration of Cd in soil and the geochemistry norms have been established to distinguish the nature or artificial influence on the environ- ment. The statistical analysis indicated that the baseline of Cd from Eastern Hebei Province was 0. 073 mg/kg. Geoaccumulation index analysis indicated that the unpolluted surface soil accounts for 49.0%, and 47.6% be- tween nonpoltution and mid-pollution, 2. 1% for mid-pollution, 1.2% between mid-pollution and severe pollu- tion, only 1% for severe pollution. The maximum of Cd contamination degree (CD) is 8.9. CD analysis indi- cated that the unpolluted surface soil accounts for 94. 5%. The total CD below zero in surficial soil of Eastern Hebei Province does not suffer from cadmium pollution.
出处 《现代地质》 CAS CSCD 北大核心 2008年第6期1049-1054,共6页 Geoscience
基金 中国地质调查局地质大调查项目(200040007-2)
关键词 土壤 污染 环境地球化学基线 冀东 soil cadmium pollution environmental geochemical baseline Eastern Hebei
  • 相关文献

参考文献17

  • 1Sahninen R, Tarvainen T. The problem of defining geo-chemical baseline : A case study of selected elements and geological materials in Finland [ J ]. Journal of Geochemical Exploration, 1997, 60(1): 91-98.
  • 2Salminen R, Gregorauskiene V. Considerations regarding the definition of a geochemical baseline of elements in the surficial materials in areas differing in basic geology [ J ]. Applied Geochemistry, 2000, 15: 647-653.
  • 3Chaffee M A, Hoffman J D, Tidball R R, et al. Discriminating between natural and anthropogenic anomalies in the surficial environment in Yellowstone National Park, Idaho, Montana, and Wyoming [ J ]. US Geological Survey Open-File Report, 1997, 16: 106-110.
  • 4Chaffee M A, Carlson R R. Environmental geochemistry in Yellowstone National Park: Distinguishing natural and anthropogenic anomalies [J]. Yellowstones Science, 1995, (6):29-37.
  • 5滕彦国,倪师军,张成江,马玉孝.攀枝花地区土壤环境地球化学基线的影响因素研究[J].矿物岩石,2002,22(2):38-42. 被引量:16
  • 6王济,王世杰,欧阳自远.贵阳表层土壤中铬的环境地球化学基线研究[J].环境科学学报,2007,27(7):1189-1196. 被引量:7
  • 7中国地质调查局.多目标区域地球化学调查规范(1:25万)[R].北京:中国地质调查局,2005.
  • 8夏汉平.土壤-植物系统中的镉研究进展[J].应用与环境生物学报,1997,3(3):289-298. 被引量:97
  • 9Bauer I, Bor J. Vertikale Bilanzierung von Schwermetallen in Boden-Kennzeichnung der Empfindlichkeit der boden gegenuber Schwermetallen unter Berucksichtigung yon lithogenem Grundge-halt, pedogener Anand Abreicherung some antheopogener Zusat- zbelastung, Teil 2 [M]. Berlin: Umweltbundesamt, 1993.
  • 10Bauer I, Bor J. Lithogene, geonene und anthropogene Schwer-metallgehahe yon Lobboden an den Beispielen von Cu, Zn, Ni, Pb, Hg und Cd [J]. Mainzer Geowiss Mitt, 1995, 24:47 -70.

二级参考文献69

共引文献168

同被引文献13

引证文献1

二级引证文献16

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部