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采用盐酸和硝酸混合酸溶样,选择Cu 324.754 nm、M n 257.610 nm、Zn 213.856 nm、Fe 259.940 nm、Al 396.152 nm、Pb 220.353 nm、Sn 189.989 nm作为分析线,考察基体和共存元素对待测元素的干扰,并计算干扰系数以校正光谱干扰对测量结果产生的影响,从而建立了电感耦合等离子体原子发射光谱法(ICP-AES)测定锰黄铜中Cu、Mn、Zn、Al、Fe、Pb、Sn的方法.结果表明:溶液中Cu质量浓度在1000μg/mL以内,对M n、Zn、Al、Fe、Sn的测定无明显影响,但对Pb影响较大.来自Cu 221.810 nm对Pb 220.353 nm分析线产生的谱线重叠型光谱干扰,可以采用干扰系数校正法很好地进行校正.样品中高含量元素Zn、M n、Fe之间以及对其他元素的测定基本无影响.各元素校准曲线线性相关系数均不小于0.9997;各元素检出限为0.0001%~0.0042%(质量分数).按照实验方法测定锰黄铜标准样品中C u、M n、Zn、Al、Fe、Pb、Sn,结果的相对标准偏差(RSD,n=6)为0.49%~5.1%,测定值与认定值一致.

The manganese brass sample was dissolved with hydrochloric acid and nitric acid .Cu 324 .754 nm ,M n 257 .610 nm ,Zn 213 .856 nm ,Fe 259 .940 nm ,Al 396 .152 nm ,Sn 189 .989 nm and Pb 220 .353 nm were selected as the analytical lines .The interference from matrix and coexisting elements were inves-tigated .T he interference coefficient w as estimated to correct the influence of spectral interference on the measuring results .T he determination method of Cu ,M n ,Zn ,Al ,Fe ,Pb and Sn in manganese brass by inductively coupled plasma atomic emission spectrometry (ICP-AES) was established .The results showed that the Cu with mass concentration less than 1000 μg/mL had no significant influence on the determina-tion of Mn ,Zn ,Al ,Fe and Sn ,but had a great impact on Pb .The spectral interference caused by overlap-ping of Cu 221 .810 nm to Pb 220 .353 nm could be well corrected by interference coefficient method .The high-content elements including Zn ,M n and Fe in sample had no mutual interference and had no significant influence on the determination of other elements .The linear correlation coefficients of calibration curves were all higher than 0 .9997 .The detection limits of elements were between 0 .0001% and 0 .0042%(mass fraction) .The content of Cu ,Mn ,Zn ,Al ,Fe ,Pb and Sn in certified reference material of manga-nese brass was determined according to the experimental method .The found results were consistent with the certified values .T he relative standard deviations (RSD ,n=6) w ere betw een 0 .49% and 5 .1% .

参考文献

[1] 汤家华;程乐华;吴学敏.邻苯二酚紫-CPB分光光度法测定铜合金中的锡[J].光谱实验室,2013(4):1925-1928.
[2] 王志远;叶晓英;王强;王荣.ICP-AES 法测量铍钴铜合金中主量元素铍、钴的含量[J].化学分析计量,2014(6):78-80.
[3] 王霞;刘静;李剑;王兴民;赵明;徐清忠;李赛钰.铜合金中磷含量测定方法[J].分析试验室,2009(z1):309-310.
[4] 许方.ICP-AES测定铝青铜中锰的研究[J].有色金属科学与工程,2011(03):80-82.
[5] 董海成;金英;田小亭;白福全;田甜.电感耦合等离子体原子发射光谱法测定镍铜合金中锰和铁[J].冶金分析,2014(5):68-71.
[6] 葛菲;张丽君;顾海东;张旭健;张占恩;王霞.ICP-AES法测定土壤中铅的干扰试验研究[J].安全与环境工程,2013(6):102-106.
[7] 葛建华.全谱直读发射光谱仪分析中铜对铅谱线干扰机理的探讨[J].沉积与特提斯地质,2009(04):96-99.
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