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偶氮氯膦PN(CPA-PN)光度法测定氧化铝废渣中的微量钪

Determination of Micro Scandium in Alumina Waste Residue by Using PN(CPA-PN) Spectrophotometric Method
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摘要 采用偶氮氯膦PN(CPA-PN)显色,在低酸度介质用强酸型树脂Dowex50W-X8吸附钪与干扰元素分离,用2 mol/L HCL洗提干扰元素,用5 mol/L HCL洗脱钪,再用0.01 mol/L PMBP-苯萃取,用1%甲酸洗有机相出去稀土元素,用1 mol HCL反萃取钪。实验结果表明,钪含量在0~12μg/mL范围内符合比尔定律,络合物的最大吸收波长680 nm,表观摩尔吸光系数为9.00×10~2,钪校准曲线的R^2=0.9979。对于铝废渣试样进行分析,相对标准偏差2.3%,加标回收率为99%。 The paper presented the experiment of adsorbing scandium and separating interfering elements with anion Dowex 50 Wx8 in low acidity medium. Interfering elements were extracted with 2 mol/L HCL firstly in the experiment, followed by scandium eluting with 5 mol/L HCL. Benzene extraction was performed using 0.01 mol/L PMBP afterwards. After rare earth elements removal through treating organic phase with 1% formic acid, scandium was back extracted with lmol HCL CPA-PN colorimetric method was carried out in the end of the experiment.The experiment result showed that scandium content is in the range of 0-12 g/mL, which is in accordance with the Bill's Law. The maximum absorption wavelength of complexes is 680 nm, coefficient of the apparent molar absorption is 9.00~102. The calibration curve of scandium (R2) is 0.9979. Analysis of the alumina waste residue samples showed a relative standard deviation of 2.3 %. And the recovery rate reached 99 %.
出处 《广东化工》 CAS 2017年第5期172-173,共2页 Guangdong Chemical Industry
基金 食品安全管理服务平台的研发及应用示范(贵州省院合作专项)
关键词 铝废渣 偶氮氯膦PN(CPA-PN)显色 分光光度法 scandium aluminum waste slag CPA-PN chromogenic agent spectrophotometric
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