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Implementation of a Generalized Standard Addition Method in a Flow Injection System Using Merging-Zones and Gradient Exploitation

机译:合并区和梯度开采在流动注射系统中通用标准加法的实现

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A novel strategy for implementing a generalized standard addition method (GSAM) in a simple two-channel flow injection (FI) system and for correcting matrix effects and spectral interferences in multicomponent analysis is described. The FI-GSAM system exploits the concentration gradients of the sample and the standard solution, requires only one standard solution per analyte and provides several addition levels using a single simultaneous injection of the sample and of each standard solution. Because the matrix effects change at every addition level, a novel mathematical model for this FIGSAM has been derived. The method was critically evaluated for simultaneous K, Ca and Na determinations by flame photometry in synthetic samples with different ethanol or glycerol contents, added to the samples to promote matrix effects. The results show good agreement with the expected values, with the relative error and the overall relative standard deviation usually being 5% (n=5) for 2.5 - 5.0 Na, 20.0 K and 1000 mg l-1 Ca. The elapsed time for the simultaneous determination of three analytes was about 2 min, consuming 400 μl of the sample and 100 μl of each standard solution.
机译:描述了一种在简单的两通道流动进样(FI)系统中实现通用标准添加方法(GSAM)并校正多组分分析中的基质效应和光谱干扰的新颖策略。 FI-GSAM系统利用样品和标准溶液的浓度梯度,每个分析物仅需要一种标准溶液,并通过同时同时注入样品和每种标准溶液提供几种添加水平。由于矩阵效应在每个加法级别上都会发生变化,因此已经针对该FIGSAM推导了新颖的数学模型。通过火焰光度法对添加到样品中的不同乙醇或甘油含量的合成样品中的K,Ca和Na进行了同时测定,同时对样品进行了严格的评估,以促进基质效应。结果显示与预期值良好吻合,相对误差和总体相对标准偏差对于2.5-5.0 Na,20.0 K和1000 mg l-1 Ca通常小于5%(n = 5)。同时测定三种分析物的时间约为2分钟,消耗了400μl样品和100μl每种标准溶液。

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