期刊文献+

珠江河口及近海水体中铜的水平和形态分布 被引量:1

Copper Speciation in the Pearl River Estuary and Its Bioavailability to Algae
在线阅读 下载PDF
导出
摘要 对夏季 ( 2002-07)和冬季(2003-01) 航次中珠江河口及近海水域样品中金属铜的总含量以及总溶解态、颗粒态、游离态铜含量进行对比分析。结果发现,夏季铜的总浓度水平分布并非完全体现陆源性规律,而是随河口向外海递增。而在冬季,总铜浓度的空间变化呈现和夏季完全相反的趋势,即随河口向外海逐渐降低。说明研究水域中金属铜可能具有其他来源,同时在很大程度上受到夏季沿岸上升流的影响。但是,游离态铜的分布在冬季和夏季却呈现相同的趋势,即自河口向外海逐渐降低。说明铜的形态分布在更大程度上取决于水体的理化性质。 The contents of total copper, particulate copper, and free copper ion in the samples obtained during the cruise in July 2002 and January 2003 in the Pearl River estuary are measured. It is found that, in summer, even though the total copper contents increase with salinity, the concentrations of free copper ion decrease with the salinity of water. On the contrary, the concentrations of total copper and free copper ion both decrease with salinity in winter. It can be concluded that, except the runoff from the river, there must be other sources of copper to the Pearl River estuary; and that the upwelling affects the copper contents and its speciation distribution heavily.
出处 《海洋通报》 CAS CSCD 北大核心 2004年第3期35-40,共6页 Marine Science Bulletin
基金 国家自然科学基金(40206016) 广东省自然科学基金(021560)资助
关键词 存在形态 分布 沿岸上升流 珠江河口 copper speciation bioavailability Pearl River estuary
  • 相关文献

参考文献22

  • 1HanBin Xue, Laura Sigg. Free cupric ion concentration and Cu (11) speciation in a eutrophic lake[J]. Limnol. Ocanogr., 1993,38(6): 1 200-1 213.
  • 2Flower S W. Critical review of selected heavy metal and chlorinated hydrocarbon concentrations in the marine environment[J]. Mar. Environ. Res. 1990, 29:1-64.
  • 3Champ P M, Wang F Y, Adam W J M. Appropriate application of sediment quality values for metals and metalloids[J]. Envir on. Sci. Technol., 1999, 33:3937-3941.
  • 4Luoma S N, Alexander Van Gee, Byeong Gweon Lee et al. Metal uptake by phytoplankton during a bloom in South San Francisco Bay: implication for metal cycling in estuary[J]. Limnol. Oceanorg., 1998, 43(5):1 007-1 016.
  • 5Campell P G C. Interaction between trace metals and aquatic organisms: a critique of the free-ion activity model. In: Tessier A, D R. (Eds.), Metal speciation and bioavailability in Aquatic systems[C]. 1995, Wiley, New York.
  • 6Gerringa L J A, Poortvliet T C W, Hummel H. Comparison of chemical speciation of copper in the Ossters Chelde and Westerschelde estuaries, the Netherlands[J]. Estuarine, Coastal and Shelf Science, 1996, 42:629-643.
  • 7Wang Wenxiong, Robert C H Dei, Yan Xu. Response of Zn assimilation by coastal plankton to macronutrients[J]. Liminol.Oceanogr., 2001, 46(6):1 524-1 534.
  • 8Guillard R R L, Ryther J H. Studies on marine planktonic diatoms. I. Cycothlla nana hustedt andDetonula confervaca (cleve) Gran[J]. Can J. Microbiot, 1962, 8:229-239.
  • 9Stauber J L, Benning R J, Hales L T et al. Copper bioavailability and amelioration of toxicity in Macqurie Harbour,Tasmania[J]. Mar. Freshwater Res., 2000, 51:1-10.
  • 10Sunda W G, Huntsman S A. Feedback interaction between zinc and phytoplankton in seawater[J]. Limnol. Oceanogr.,1992, 37(1):25-40.

同被引文献35

引证文献1

二级引证文献3

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