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沉水植物轮叶黑藻和穗花狐尾藻对Cu2+的等温吸附特征
摘要点击 2166  全文点击 1162  投稿时间:2005-07-17  修订日期:2005-07-17
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中文关键词  沉水植物  生物吸附  Cu2+  吸附等温
英文关键词  submerged aquatic plants  biosorption  Cu2+  sorption isotherm
作者单位
颜昌宙 中国环境科学研究院湖泊生态环境创新基地 北京100012 
曾阿妍 吉林大学环境与资源学院 长春130023 
金相灿 中国环境科学研究院湖泊生态环境创新基地 北京100012 
王圣瑞 中国环境科学研究院湖泊生态环境创新基地 北京100012 
许秋瑾 中国环境科学研究院湖泊生态环境创新基地 北京100012 
赵景柱 中国科学院生态环境研究中心系统生态重点实验室 北京100085 
中文摘要
      研究了沉水植物轮叶黑藻和穗花狐尾藻对Cu2+的吸附等温线,分别采用了线性和非线性2种方法拟合吸附等温线,并比较分析2种方法的拟合效果和适用性.结果表明:①在采用等温吸附模型比较和评价不同生物吸附剂的性能时,不能仅仅根据R2χ2的大小进行拟合方程的适用性比较.为了获得更为真实可靠的拟合结果,在实践中可以利用线性和非线性方法分别进行拟合,而每一种拟合方法也要同时采用多种模型,在对多个拟合结果比较的基础上选择更符合实验数据的吸附模型;②在本实验中,沉水植物轮叶黑藻和穗花狐尾藻吸附Cu2+的行为更符合Langmuir模型,而Freundlich模型特别是其线性表达式的计算值与实验数据的误差较大;③沉水植物中粗纤维素占干物质的比重是影响其吸附容量的重要因素之一,其细胞壁上多糖的—OH和—CONH2可能是吸附的活性中心;④根据Langmuir模型线性拟合参数qm,轮叶黑藻、穗花狐尾藻对Cu2+的最大吸附量分别为21.55 mg/g和10.80mg/g,其吸附Cu2+的最大活性比表面积分别为3.23m2/g和1.62m2/g.
英文摘要
      Equilibrium sorption isotherms for Cu2+ onto Hydrilla verticillata Royle and Myriophyllum spicatum were studied.Both methods of linear and non-linear fitting were applied to describe the sorption isotherms,and their applicability were analyzed and compared.The results were: ①The applicability of simulated equation can't be compared only by R2 and χ2 when equilibrium sorption model was used to quantify and contrast the performance of different biosorbents.Both methods of linear and non-linear fitting can be applied in different fitting equations to describe the equilibrium sorption isotherms respectively in order to obtain the actual and credible fitting results,and the fitting equation best accorded with experimental data can be selected;②In this experiment,the Langmuir model is more suitable to describe the sorption isotherm of Cu2+ biosorption by H.verticillata and M.spicatum,and there is greater difference between the experimental data and the calculated value of Freundlich model,especially for the linear form of Freundlich model;③The content of crude cellulose in dry matter is one of the main factor affecting the biosorption capacity of a submerged aquatic plant,and —OH and —CONH2 groups of polysaccharides on cell wall maybe are active center of biosorption;④According to the coefficients qm of the linear form of Langmuir model,the maximum sorption capacity of Cu2+ was found to be 21.55 mg/g and 10.80mg/g for H.verticillata and M.spicatum,respectively.The maximum specific surface area for H.verticillata for binding Cu2+ was 3.23m2/g,and it was 1.62m2/g for M.spicatum.

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