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五里湖和贡湖不同粒径沉积物吸附磷实验研究
引用本文:金相灿,王圣瑞,赵海超,周小宁,楚建周.五里湖和贡湖不同粒径沉积物吸附磷实验研究[J].环境科学研究,2004,17(Z1):6-10.
作者姓名:金相灿  王圣瑞  赵海超  周小宁  楚建周
作者单位:1. 中国环境科学研究院,湖泊生态环境创新基地,北京,100012
2. 内蒙古农业大学,农学院,内蒙古,呼和浩特,010018
3. 河北农业大学,资源与环境学院,河北,保定,071001
基金项目:国家重点基础研究发展计划项目(2002CB412300)
摘    要:通过研究五里湖和贡湖不同粒径沉积物对磷的吸附动力学曲线和吸附等温曲线,分析了不同粒径沉积物氮、磷和有机质含量以及化学组成等理化特征对其吸附磷的影响,初步得出如下结论五里湖和贡湖不同粒径沉积物对磷的吸附动力学曲线和吸附等温曲线具有相似的变化趋势;贡湖沉积物每一粒级的吸附量、吸附速率和吸附效率均高于五里湖沉积物;各粒级的变化趋势均为粘粒级>细砂粒级>粗砂粒级>粉砂粒级;各粒级中粉砂粒级SiO2含量最高,可能是造成其对磷的吸附量、吸附速率和吸附效率在各粒级中最低的原因.

关 键 词:五里湖  贡湖  沉积物  吸附  粒径  磷酸盐
文章编号:1001-6929(2004)0-0006-05
修稿时间:2004年8月20日

Study on the Phosphate Sorption of the Different Particle Size Fractions in the Sediments from Wuli Lake and Gonghu Lake
JIN Xiang-can,WANG Sheng-rui,ZHAO Hai-chao,ZHOU Xiao-ning,CHU Jian-zhou.Study on the Phosphate Sorption of the Different Particle Size Fractions in the Sediments from Wuli Lake and Gonghu Lake[J].Research of Environmental Sciences,2004,17(Z1):6-10.
Authors:JIN Xiang-can  WANG Sheng-rui  ZHAO Hai-chao  ZHOU Xiao-ning  CHU Jian-zhou
Affiliation:JIN Xiang-can~1,WANG Sheng-rui~1,ZHAO Hai-chao~2,ZHOU Xiao-ning~1,CHU Jian-zhou~3
Abstract:Sorption kinetics and isotherm curves of phosphate on the different particle sizes fractions from the Wuli Lake and Gonghu Lake sediments were determined, and the influence of the total N, total P, organic matter and chemical compositions on phosphate sorption were also analyzed. The primary conclusions were as follows. Sorption kinetics and isotherm curves of phosphate on different particle size fractions from the Wuli Lake and Gonghu Lake sediments have similar trend; the amount, rate and efficiency of sorption of phosphate on each particle size fraction from the Gonghu Lake sediment were bigger than those from the Wuli Lake sediment, and the trend of different particle sizes fractions is: clay > fine sand > coarse sand > silt; and the concentrations of SiO_2 of silt from the lake sediment were the highest among various particle sizes fractions, which may be the reason that its amount, rate and efficiency of sorption of phosphate was the lowest.
Keywords:Wuli Lake  Gonghu Lake  sediment  sorption  particle size fraction  phosphate
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