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Flow injection system for hydrolysable tannin determination

机译:用于可水解单宁测定的流动注射系统

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摘要

A flow injection system was, proposed to evaluate the transient product of a colorimetric reaction between hydrolysable tannin and potassium iodate (KIO3) solution. The system optimization was accomplished by using statistical methods based on experimental design. Flow rate of KIO3 solution, sample volume, carrier flow rate, and reaction coil were the selected factors for evaluation. On screening step, complete factorial 2 4 was used and two levels for each selected factor were studied. For the optimization phase, a centered face composite design 2(2)+ star was employed to evaluate sample volume and flow rate of KIO3 Solution, which were the factors identified in the screening phase as having more influence on the absorbance signal. After optimization, the proposed system was compared with batch determination. Some characteristics, such as analytical frequency, reagent consumption and chemical residues generation presented better results by the use of the proposed system if compared with batch method. The system presented good repeatability with standard deviation lower than 3%, for n = 10, linearity (R-2 = 0.9974) for tannic acid standard, analytical frequency of 15 injections h(-1) and limit of quantification of 24 mg L-1 of tannic acid. Good results were obtained when the proposed system was applied to hydrolysable tannin determination in Stryphnodendron barbatimao, Eucalyptus citriodora and Phyllanthus niruri, samples of plants commonly used in popular medicine. (c) 2006 Elsevier B.V. All rights reserved.
机译:提出了一种流动注射系统,以评估可水解单宁和碘酸钾(KIO3)溶液之间比色反应的瞬时产物。通过使用基于实验设计的统计方法来完成系统优化。选择KIO3溶液的流速,样品量,载流子流速和反应盘管进行评估。在筛选步骤中,使用完整的阶乘2 4,并对每个所选因子的两个水平进行了研究。对于优化阶段,采用中心面复合设计2(2)+星来评估KIO3溶液的样品体积和流速,这是在筛选阶段确定的对吸光度信号影响更大的因素。优化后,将拟议的系统与批次确定进行比较。如果与批处理方法相比,则使用所提出的系统时,诸如分析频率,试剂消耗量和化学残留物生成等一些特性显示出更好的结果。该系统具有良好的重复性,标准偏差小于3%(n = 10),鞣酸标准品的线性(R-2 = 0.9974),15次进样的分析频率h(-1)和24 mg L-的定量限1鞣酸。将拟议的系统应用于流行医学常用植物样品中的巴氏斯特氏菌,柠檬桉和柠檬楠中的可水解单宁含量测定时,获得了良好的结果。 (c)2006 Elsevier B.V.保留所有权利。

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