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机构地区:[1]广西现代技术学院资源工程系,广西河池547000
出 处:《化工技术与开发》2013年第5期30-32,共3页Technology & Development of Chemical Industry
基 金:广西2012年特色专业及课程一体化建设项目(GXTSZY302)
摘 要:以乙酸-乙酸钠缓冲溶液(pH=5.6)为介质,过氧化氢在微量cu(Ⅱ)的催化作用下,氧化邻氨基酚显色,显色程度与Cu(Ⅱ)含量成正比。方法的最大吸收波长为463nrn,在冰水浴中反应10min,Cu(Ⅱ)含量在睢10ug·mL-1围内呈线性关系,回归方程为A=0.007c+0.0129。此方法用于污水中微量铜的测定,RSD为3.21%(n=6),加标回收率在90.6%。109.9%之间。Under the catalysis of trace Cu( II ), the o-aminophenol was oxided to color by hydrogen peroxide in the acetic acid- sodium acetate buffer solution medium(pH=5.6). The maximum absorption wavelength of this method was at 463nm and the reaction time was 10 min in the ice-water bath. A linear relationship of Cu( II ) was established in the range of 0-10 u g/mL. The regression equation of calibration curve was A=0.007c+0.0129. This method was used to determine the trace copper in the polluted water, the RSD was 3.21% (n=6) and the recovery of standard addition was between 90.6% ~109.9 %.
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