期刊文献+

兰州某钢厂附近土壤磁化率特征及其环境意义 被引量:13

Measurement of magnetic susceptibility of soil adjacent a steel factory in Lanzhou and its environmental implications
下载PDF
导出
摘要 对兰州某钢厂周围土壤进行了磁化率与化学元素分析,采用污染指数评价方法和多元统计发现,表层2cm以内土壤的磁化率显著增高,达到背景值的3.5倍,且频率磁化率相对于深部土壤较低,对比不同位置样点磁化率值,显示钢厂周边土壤受到了钢厂生产排放物的污染.污染主要发生在下风向,且在2km以内最强,污染深度在2cm以内.磁化率与重金属元素含量相关性显著表明磁性矿物与重金属有相同的来源,本研究应用磁化率浓集因子S判别污染程度,结果与内梅罗综合污染指数评价大致相同,因此S可以作为判断这类土壤污染程度的指标. Measurement and analysis of magnetic susceptibility and heavy metal concentrations of soil from a steel factory near Lanzhou City was developed.Results showed that the magnetic susceptibility in uppermost soil horizon(0~2cm) increased significantly relative to the deep soil.The value of susceptibility was 3.5 times of the background,but the frequency magnetic susceptibility was lower relative to the deep soil.The variation of magnetic susceptibility value in the different sampling positions showed that the soil around the steel factory was polluted by the anthropogenic dust input from steel factory.Pollution was mainly found in the downwind direction area,of which the strongest part was in a range of 2 km and a depth of 2 cm.Chemical element analysis showed a strong correlation between the magnetic susceptibility and metals,suggesting they have the same source.Magnetic susceptibility concentration factor(S) was adopted to determine the degree of soil pollution,and the results were basically the same with the Nemerow index.Therefore,S could be used as an indicator to determine the soil pollution.
出处 《中国环境科学》 EI CAS CSCD 北大核心 2011年第10期1732-1737,共6页 China Environmental Science
基金 国家自然科学基金资助项目(40972025 41021091 40872114) 教育部新世纪人才计划项目(NCET-07) 中央高校基本科研业务费(lzujbky-2010-k04)
关键词 磁化率 土壤 污染 磁化率浓集因子 magnetic susceptibility soil pollution concentration factor
  • 相关文献

参考文献27

  • 1张坤民,孙荣庆.中国环境污染治理投资现状与发展趋势分析[J].中国环境科学,1999,19(2):97-101. 被引量:47
  • 2曾凡刚,王玮,吴燕红,曾鸣,李威.化石燃料燃烧产物对大气环境质量的影响及研究现状[J].中央民族大学学报(自然科学版),2001,10(2):113-120. 被引量:16
  • 3张书贵.土壤重金属污染评价与研究[J].安徽技术师范学院学报,2001,15(4):23-24. 被引量:31
  • 4Thompson R, Oldfield F. Environmental Magnetism [M]. London: Allen and Unwin, 1986:227.
  • 5Mayer T, Morris W A , Versteeg K J. Feasibility of using magnetic properties for assessment of particle-associated contaminant transport [J]. Water Quality Research Journal, 1996, 31 (4) :741-752.
  • 6Petrovsky E, Ellwood B B. Magnetic monitoring of air-,and water-pollution [C]// Maher B A, Thompson R. Quaternary elimates, environments and magnetism. Cambridge: Cambridge University Press, 1999:279-322.
  • 7Chester R, Sharples E J, Sanders G, et al. The distribution of nature and non-crustal ferromagnetic minerals in soil-size particulates from the Mediterranean atmosphere [J]. Water Air Soil Pollution, 1984,23:25-35.
  • 8Hunt A, Jones J, Oldfield F. Magnetic measurements and heavy metals in atmospheric particulateres of anthmpogenic origin [J].Science of the Total Environment, 1984,33:129-139.
  • 9Hoffmann V, Knab M, Apple E. Magnetic susceptibility napping of roadside pollution [J]. Journal of GeochemiealExploration, 1999,99:313-326.
  • 10Evans M E, Heller F. Environmental Magnetism: Principles and Applications of Enviromagnetises [J]. Oxford (UK): Academic press, 2003.

二级参考文献220

共引文献436

同被引文献181

引证文献13

二级引证文献65

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