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作 者:开小明[1,2] 方皓文 郝施玲[1] 李丽娟[1] 黄旭明[1] 王芳[1]
机构地区:[1]安庆师范学院化学化工学院,安徽安庆246011 [2]安徽省桐城市明生复合包装有限公司,安徽桐城231462 [3]安徽省桐城师范高等专科学校理工系,安徽桐城231400
出 处:《冶金分析》2013年第8期49-51,共3页Metallurgical Analysis
基 金:安徽省教育厅自然科学基金资助项目(2006kj120B)
摘 要:采用铬天青S光度法测定镀铝薄膜中铝的含量,然后由铝的密度和单位薄膜面积的镀铝量计算出膜镀铝的厚度。研究了铝与铬天青S(CAS)的显色反应,结果表明,在pH 5.5的缓冲溶液中,铝离子与铬天青S(CAS)生成络合物,最大吸收波长为610nm,表观摩尔吸光系数ε=3.89×104 L·mol-1·cm-1。在优化条件下,铝的质量浓度在0.004~0.20μg/mL与吸光度呈良好的线性关系,检测限为0.004μg/mL。对塑料薄膜镀铝样品进行加标回收试验,测得铝的加标回收率在97%~102%之间。方法测定了塑料薄膜镀铝样品的镀铝厚度,测定结果的相对标准偏差(n=6)小于3%。The content of aluminum in aluminizing plastic film was determined by chrome azurol S spectrophotometry. Then, the thickness of aluminizing layer was calculated according to the density of aluminum and the mass of aluminizing layer on unit area of plastic film. The coloring reaction be- tween aluminum and chrome azurol S (CAS) was studied, the results showed that aluminum could re- act with CAS to form a complex in buffer solution at pH 5.5. The maximum absorption wavelength of the complex was 610 nm. The apparent molar absorptivity was ε=3.89 ×104 L·mo1^-1·cm^-1. Un- der the optimal conditions, the mass concentration of aluminum in range of 0. 004-0.20 μg/mL was linear to the absorbance. The detection limit for aluminum was 0. 004μg/mL. The recovery test of a- luminizing plastic film sample was performed. The recovery rates of aluminum were between 97 % and 102 %. The proposed method was applied to the determination of aluminizing thickness on plastic film, with relative standard deviation (RSD, n=6) less than 3 %
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