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电感耦合等离子体原子发射光谱法测定铝基复合造渣剂中金属铝
引用本文:卢艳蓉,战丽君,王永刚,史建强. 电感耦合等离子体原子发射光谱法测定铝基复合造渣剂中金属铝[J]. 冶金分析, 2015, 35(11): 69-73. DOI: 10.13228/j.boyuan.issn1000-7571.140018
作者姓名:卢艳蓉  战丽君  王永刚  史建强
作者单位:1.内蒙古包钢集团公司技术中心,内蒙古包头 014010;2.内蒙古包钢集团公司选矿厂,内蒙古包头 014010
摘    要:利用三氧化二铝不溶于三氯化铁溶液的特性,用50 mL 50 g/L 三氯化铁溶液浸取铝基复合造渣剂样品中金属铝,使用磁力搅拌器搅拌溶解60 min,经过滤并使用盐酸(2+98)洗涤沉淀,基体匹配法配制校准曲线消除基体效应的影响,采用Al 308.215 nm和Al 396.152 nm作为分析谱线,用电感耦合等离子体原子发射光谱法(ICP-AES)测定铝基复合造渣剂中金属铝。试验考察了样品中共存元素的影响,结果表明,样品中w(CaO、SiO2)≤40%、w(MgO)≤30%、w(MnO)≤15%、w(P2O5、BaO)≤10%、w(V、Mo)≤5%、w(Ti)≤3%、w(Ni、Nb)≤1%、w(Cr、Cu)≤0.2%时,不干扰金属铝的测定。当铝基复合造渣剂样品中金属铝质量分数小于2%时,采用Al 396.152 nm作为分析线,校准曲线线性回归方程为y=275 00 x+669.1,相关系数r=0.999 4;当金属铝质量分数不小于2%时,使用Al 308.215 nm作为分析谱线,校准曲线线性回归方程为y=4 502 x+56.1,相关系数r=0.999 9。方法中金属铝的检出限为0.001%(质量分数)。按照实验方法测定铝基复合造渣剂样品中金属铝,结果的相对标准偏差(RSD,n=8)小于2%,测定值与三氯化铁浸取-氟盐取代EDTA滴定法的测定结果相吻合。

关 键 词:铝基复合造渣剂  电感耦合等离子体原子发射光谱法  金属铝  三氯化铁浸取  
收稿时间:2014-04-17

Determination of metallic aluminum in aluminum matrix composite slagging agent by inductively coupled plasma atomic emission spectrometry
LU Yan-rong,ZHAN Li-jun,WANG Yong-gang,SHI Jian-qiang. Determination of metallic aluminum in aluminum matrix composite slagging agent by inductively coupled plasma atomic emission spectrometry[J]. Metallurgical Analysis, 2015, 35(11): 69-73. DOI: 10.13228/j.boyuan.issn1000-7571.140018
Authors:LU Yan-rong  ZHAN Li-jun  WANG Yong-gang  SHI Jian-qiang
Affiliation:1.Technical Center of Baotou Steel Gorup ,Baotou 014010,China; 2.Concentration Plant of Baotou Steel Gorup ,Baotou 014010,China
Abstract:The aluminum oxide could not be dissolved in iron trichloride solution. According to this character, the metallic aluminum in aluminum matrix composite slagging agent sample was leached with 50 mL of 50 g/L iron trichloride solution. The sample was dissolved for 60 min under the stirring by magnetic stirrer. After filtration, the precipitate was washed with hydrochloric acid (2+98). The calibration curve was prepared by matrix matching method to eliminate the influence of matrix effect. The Al 308.215 nm and Al 396.152 nm were selected as the analytical lines. The metallic aluminum in aluminum matrix composite slagging agent was determined by the inductively coupled plasma atomic emission spectrometry (ICP-AES). The influence of coexisting elements in sample was investigated by experiments. The results showed that the determination of metallic aluminum was not interfered under the follow conditions: w(CaO,SiO2)≤40%,w(MgO)≤30%,w(MnO)≤15%,w(P2O5,BaO)≤10%,w(V,Mo)≤5%,w(Ti)≤3%,w(Ni,Nb)≤1% and w(Cr,Cu)≤0.2%. When the mass fraction of metallic aluminum in aluminum matrix composite slagging agent sample was less than 2%, Al 396.152 nm was selected as the analytical line, and the linear regression equation of calibration curve was y=27 500 x+669.1 with correlation coefficient of r=0.999 4. When the mass fraction of metallic aluminum in aluminum matrix composite slagging agent sample was not less than 2%, Al 308.215 nm was selected as the analytical line, and the linear regression equation of calibration curve was y=4 502 x+56.1 with correlation coefficient of r=0.999 9. The detection limit of metallic aluminum in this method was 0.001% (mass fraction). The content of metallic aluminum in aluminum matrix composite slagging agent sample was determined according to the experimental method. The relative standard deviations (RSD, n=8) were less than 2%. The found results were consistent with those obtained by iron trichloride leaching-fluoride replacement EDTA titration method.
Keywords:aluminum matrix composite slagging agent  inductively coupled plasma atomic emission spectrometry  metallic aluminum  iron trichloride leaching  
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