期刊文献+

硒、钼、钒污染环境的生态地球化学修复物种筛选与展望 被引量:24

Selection of Plant Species for Ecologically Geochemical Phytoremediation of the Environments Polluted by Selenium, Molybdenum and Vanadium and Its Perspectives
下载PDF
导出
摘要 在对以往硒、钼、钒富集植物及其生态环境地球化学研究成果综述基础上,提出了植物生态地球化学富集类型和金属矿化植物划分的新方案,探讨了硒、钼、钒在植物中传输规律,初步筛选出硒、钼、钒污染环境的生态地球化学修复物种,提出了固体矿山污染环境的生态地球化学修复治理的研究和发展方向的建议,以期促进该研究方向的深入发展。 Perspectives on the ecologically geochemical phytoremediation of the polluted environments in the mineral mines proposed in this paper. Based on the comprehensive review of the previous studies on selenium, molybdenum and vanadium accumulating plant species and their ecologically environmental geochemistry, a new classification has been proposed for classifying the ecologically geochemical types of selenium, molybdenum and vanadium enriched or metal mineralized plant species. Translocation rules of selenium, molybdenum and vanadium in various plant species have been studied and discussed. Some plant species for the ecologically geochemical phytoremediation of the environments polluted by selenium, molybdenum and vanadium were initially identified and selected.
出处 《矿物岩石地球化学通报》 CAS CSCD 2005年第3期222-231,共10页 Bulletin of Mineralogy, Petrology and Geochemistry
基金 中国有色金属工业总公司重点科技攻关资助项目(93E01 C95-D-25 C95-D27)中国科学院矿床地球化学重点实验室基金资助 项目国家重大基础研究发展规划资助项目(2001CB409805)
关键词 硒、钼、钒污染 硒、钼、钒植物富集类型 传输规律 修复物种 Se-Mo-V pollution Se-Mo-V accumulative types of plant transloeation rules in plant phytoremediation species
  • 相关文献

参考文献53

  • 1Schuiling R D. Geochemical engineering; taking stock [J]. J.Geochemical Exploration, 1998, 62 (Nosl-3): 1-28.
  • 2Schoonen M A A, Xu Y, Strongin D R. An introduction to geocatalysis [J]. J. Geochemical Exploration, 1998, 62 ( Nos1 -3):201-215.
  • 3Van Gaans P F M. The role of modeling in geochemical engineering- A(re) view [ J]. J. Geochemical Exploration, 1998,62 ( Nos1-3): 41-56.
  • 4Schnoor J L. Phytoremediation. Technology evaluation report (TE-98-01) [R]. Ground- water remediation technologies analysis center. 1997. http:∥www. gwrtac. org.
  • 5Adams N,Carroll D,Madalinski K, Rock S, Wilson T. Intro duction to phytoremediation (EPA/600/R 99/107) [R]. National Risk Management Research Laboratory, U. S. A.,2000, EPA. 1-70.
  • 6Lasat M M. Phytoextraction of toxic metals: A review of biological mechanisms [J]. J. Environmental Quality, 2002, 31:109- 120.
  • 7Banuelos G S ,Meek D W. Selenium accumulation in selected vegetables [J]. J. Plant Nutrition, 1989, 12, 1255-1272.
  • 8Banuelos G S, Zambrzuski S, Mackey B. Phytoextraction of selenium from soil irrigated with selenium laden effluent [J].Plant and Soil, 2000, 224: 251-258.
  • 9Banuelos G S, Lin Z Q, Wu L, Terry N. Phytoremediation of selenium-contaminated soils and waters: fundamentals and future prospects [J]. Rev. Environ. Health, 2002, 17(4): 291-306.
  • 10Anderson C W N, Brooks R R, Chiarucci A, LaCost C J,Leblance M, Robinson B H, Simack R, Stewart R B. Phytomining for nickel, thallium and gold [J]. J. Geochemical Exploration, 1999, 67: 407-415.

二级参考文献163

共引文献332

同被引文献491

引证文献24

二级引证文献182

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