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Simultaneous determination of Al, As, Cu, Fe, Mn, and Ni in fuel ethanol by GFAAS

机译:石墨炉原子吸收光谱法同时测定燃料乙醇中的铝,砷,铜,铁,锰和镍

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A method has been developed for the simultaneous determination of Al, As, Cu, Fe, Mn, and Ni in fuel ethanol by graphite furnace atomic absorption spectrometry (GFAAS) using a transversely heated graphite atomizer (THGA) with longitudinal Zeeman-effect background correction. The thermal behavior of analytes during the pyrolysis and atomization stages using the mixture Pd(NO3)(2) + Mg(NO3)(2) as the chemical modifier was investigated in 0.028 mol L-1 HNO3, 0.14 mol L-1 HNO3, and diluted ethanol (1 + 1, v/v) containing different nitric acid concentrations. With 5 rhog Pd + 3 mug Mg as the modifiers, pyrolysis and atomization temperatures of the heating program of the atomizer were fixed at 1200 C and 2200degreesC respectively. For 20 muL of diluted sample (10 muL ethanol + 10 muL of 0.28 mol L-1 HNO3) dispensed into the graphite tube, analytical curves in the 2.0 - 50 mug L-1 Al, As, Cu, Fe, Mn, Ni ranges were established. The calculated characteristic masses were - 37 pg Al, 73 pg As, 31 pg Cu, 16 pg Fe, 9 pg Mn, and 44 pg Ni, and the lifetime of the tube was around 2 50 firings. The limits of detection (LOD) based on integrated absorbance were 1.2 mug L-1 Al, 2.5 mug L-1 As. 0.22 mug L-1 Cu, 1.6 L-1 Fe 0.20 mug L-1 Mn 1.1 mug L-1 Ni. The relatively standard deviations (n = 12) were less than or equal to 3%, less than or equal to 6%, less than or equal to 2%, less than or equal to 3.4%, less than or equal to 1.3%, and less than or equal to 2% for Al, As, Cu, Fe, Mn, and Ni, respectively, The recoveries of Al, As, Cu, Fe, Mn and Ni added to fuel ethanol samples varied from 77% to 112%, 92% to 114%, 104% to 113%, 73% to 116%, 91% to 122% and 93% to 116%, respectively. Accuracy was checked for Al, As, Cu, Fe, Mn, and Ni determination in 20 samples purchased at local gas stations in Araraquara city, Brazil. A paired t-test showed that the results were in agreement at the 95% confidence level with those obtained by single-element GFAAS. [References: 19]
机译:已经开发出一种方法,该方法使用具有纵向塞曼效应背景校正的横向加热石墨雾化器(THGA),通过石墨炉原子吸收光谱法(GFAAS)同时测定燃料乙醇中的Al,As,Cu,Fe,Mn和Ni 。在0.028 mol L-1 HNO3、0.14 mol L-1 HNO3中,使用Pd(NO3)(2)+ Mg(NO3)(2)作为化学改性剂,研究了热解和雾化阶段分析物的热行为。以及含有不同浓度硝酸的稀乙醇(1 + 1,v / v)。以5铑钯+ 3杯镁为改性剂,雾化器加热程序的热解和雾化温度分别固定在1200℃和2200℃。对于分配到石墨管中的20μL稀释样品(10μL乙醇+ 10μL0.28 mol L-1 HNO3),分析曲线在2.0-50杯L-1 Al,As,Cu,Fe,Mn,Ni范围内成立。计算出的特征质量为-37 pg Al,73 pg As,31 pg Cu,16 pg Fe,9 pg Mn和44 pg Ni,该管的寿命约为2 50次烧成。基于积分吸光度的检测限(LOD)为1.2杯L-1 Al,2.5杯L-1 As。 0.22杯L-1铜,1.6杯L-1铁0.20杯L-1锰1.1杯L-1镍。相对标准偏差(n = 12)小于或等于3%,小于或等于6%,小于或等于2%,小于或等于3.4%,小于或等于1.3%,且分别小于或等于2%(对于Al,As,Cu,Fe,Mn和Ni),添加到燃料乙醇样品中的Al,As,Cu,Fe,Mn和Ni的回收率从77%到112%不等分别为92%至114%,104%至113%,73%至116%,91%至122%和93%至116%。在巴西Araraquara市当地加油站购买的20个样品中,对Al,As,Cu,Fe,Mn和Ni的测定方法进行了准确性检查。配对t检验表明,在95%置信水平下,结果与通过单元素GFAAS获得的结果一致。 [参考:19]

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