节点文献

锗(Ⅳ)-没食子酸示波极谱电流增敏机理研究Ⅰ.高温合金中锗的测定及有关研究

Study on the Enhancement Mechanism of the Oscillopolarographic Current of Germanium(Ⅳ)—Gallic Acid System Ⅰ.Determination of Germanium in Superalloys and Investigation

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 张月霞吴永明

【Author】 Zhang Yuexia Wu Yongming (Central Iron & Steel Research Institute,Beijing 100081)

【机构】 冶金部钢铁研究总院北京科技大学 北京1000811993级硕士研究生该校测试中心

【摘要】 研究表明,锗(Ⅳ)-没食子酸在稀硫酸介质中的络合吸附电流,由于钒(Ⅳ)及 EDTA 的加入生产高灵敏络合吸附平行催化电流,共增敏1200余倍。计算得化学反应速率常数 k1=14.4×106L/mol·s-1。锗(Ⅳ)浓度0.04~20ng/ml 与其电流峰高呈线性关系。线性回归方程式:(μA·s-2=0.78+85(μg/25ml),相关系数r=0.9996。检出限为5×10-11mol/LGe(Ⅳ).为迄今同类测定锗的最灵敏方法之一,用于高温合金中痕量锗的测定,结果准确,与光度法及 ICP-MS 测得结果一致。

【Abstract】 The experimental results demonstrated that the complex adsorptive current of germanium(Ⅳ)-gallic acid in the medium of dilute sulfuric acid could produce a sensitive complex adsorptive parallel catalytic current after adding vanadium(Ⅳ) and EDTA.The peak height was about 1200 times higher than that of the original current.The rate constant(k1)of chemical reaction was calculated to be 14.4×106L/mol·s-1.Under the optimum conditions the linear range and the detection limit were 0.04-20ng/ml and 5×10-11mol/L for Ge(Ⅳ),respectively.The linear regression equation was Y(μA·s-2)=0.78+85X(μg/25ml) and the correlation coefficient(r)was 0.9996.The method is one of the most sensitive methods among that of the same kinds and has been applied to determine the micro amounts of germanium in superalloys with satisfactory results which were in good agreement with that of spectrophotometry and ICP-MS.

【基金】 国家自然科学基金会及中科院长春应用化学研究所电分析化学开放研究实验室资助课题
  • 【文献出处】 冶金分析 ,Metallurgical Analysis , 编辑部邮箱 ,1997年03期
  • 【分类号】TG115.33
  • 【被引频次】7
  • 【下载频次】20
节点文献中: 

本文链接的文献网络图示:

本文的引文网络