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机构地区:[1]厦门紫金矿冶技术有限公司,福建厦门361101 [2]厦门出入境检验检疫局,福建厦门361026
出 处:《黄金科学技术》2013年第5期165-168,共4页Gold Science and Technology
摘 要:本次工作建立了氨氰体系溶液中铜氨络离子态铜量的BCO测定方法,解决了多价态铜离子络合物体系溶液中铜氨离子的选择性测定问题。在pH值为9.0的氨水~氯化铵缓冲溶液中,用柠檬酸铵溶液掩蔽其他的金属离子,采用分光光度法测定氨氰体系溶液中铜氨络离子态铜(Ⅱ)的含量。铜氨络离子态铜(Ⅱ)与BCO形成蓝色络合物,其最大吸收波长位于600nm,线性相关系数达0.9999.检出限为0.010mg/L。对氨氰体系溶液进行加标回收,加标回收率为97%-102%,相对标准偏差(n=6)在0.09%-0.46%之间。该方法不经过复杂的处理步骤,操作便捷、测定迅速且准确可靠。BCO determination method of copper ammonia complex ion in ammonia cyanide solution was established to solve the problem of determine copper ammonia complex ion content in muhi-valence copper ion complex solution.Ammonium citrate solution was used to mask other metal ions in the ammonia-ammonium chloride buffer solution (pH=9.0) and the Cu ( Ⅱ ) content was determined by BCO photometric method in the ammonia solution cyanide system as copper ammonia complex ion.Cu( Ⅱ ) in copper ammonia complex ion reacted with BCO to form blue complex,which has a maximum absorption wavelength of 600 nm,with a linear correlation coefficient of 0.9999 and a detection limit of 0.010 mg/L.The recovery rate of adding standard was 97% to 102%, and the relative standard deviation (n=6)was 0.09% to 0.46%.The method does not require complex processing steps and has the advantages of simple, rapid, accurate, reliable and easy operation.
分 类 号:TF831[冶金工程—有色金属冶金] O657.3[理学—分析化学]
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