Faculty of Science, Department of Chemistry, Chiang Mai University, Chiang Mai50200, Thailand.
Talanta. 2002 Dec 6;58(6):1327-34. doi: 10.1016/s0039-9140(02)00446-0.
Three flow injection (FI) systems were investigated for the determination of trace iron in beer: an FI-in-valve column-flame atomic absorption spectrophotometry (FI-FAAS) system, a spectrophotometric FI system with a column placed at the detection point, and an FI-spectrophotometric system with bead injection (FI-BI). Cationic exchange resin Dowex 50W X8 and iminodiacetate chelating resin, Chelex-100, were employed for the FI-spectrophotometric and FI-FAAS systems, respectively. The FI-in-valve column, packed with the resin, enhances the FAAS performance. The spectrophotometric FI system with a column (packed with Chelex-100) placed at the detection point (in a cell holder of a spectrophotometer) is based on the formation of iron (II)-1,10-phenanthroline complex sorbed onto the resin. No eluent has been found to be suitable. The FI-BI for renewable microcolumn has been proven to be an alternative. The FI-FAAS and FI-BI procedures provide online sample preseparation and preconcentration for the determination of iron in beer. Both are simple, rapid, and economical. The procedures also involve sample preparation (decarbonation and suppression of tannin interference by adding ascorbic acid) and standard addition. The results obtained by FI-FAAS and FI-BI agree with those of AOAC spectrophotometric method.
三种流动注射(FI)系统被用于测定啤酒中的痕量铁:FI-阀内柱-火焰原子吸收分光光度法(FI-FAAS)系统、在检测点处放置柱的分光光度 FI 系统以及采用珠注入(FI-BI)的 FI-分光光度系统。阳离子交换树脂 Dowex 50W X8 和亚氨二乙酸螯合树脂 Chelex-100 分别用于 FI-分光光度和 FI-FAAS 系统。FI 阀内柱(填充树脂)增强了 FAAS 的性能。在检测点处(在分光光度计的池架中)放置柱的分光光度 FI 系统(填充 Chelex-100)基于铁(II)-1,10-菲啰啉络合物在树脂上的吸附形成。尚未发现合适的洗脱液。可证明用于可再生微柱的 FI-BI 是一种替代方法。FI-FAAS 和 FI-BI 程序为啤酒中铁的测定提供了在线样品预分离和预浓缩。这两种方法都简单、快速且经济。该方法还包括样品制备(脱碳和通过添加抗坏血酸抑制丹宁干扰)和标准添加。FI-FAAS 和 FI-BI 得到的结果与 AOAC 分光光度法的结果一致。