增强仪器的可持续性:通过改良经典碘测定法,采用分光光度法量化营养盐中的碘酸盐

Vanessa Gomes Furtado da Cruz, Thiago Silva Dias, Rodolfo Santos Barboza
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摘要

本研究的主要目的是从传统的碘量法过渡到仪器分析法,以保持分析过程的精确性,本研究提出了一种分光光度法,用于定量测定营养盐中的碘酸根(碘当量)。因此,测定了 I3-(350.8 纳米)和 I3-淀粉(574.1 纳米)复合物的最大吸收波长。复合物表现出了稳定性,这体现在 KIO3 浓度从 7.81×10-6 摩尔/升到 1.25×10-4 摩尔/升时,在反应时间内(最长 1 小时,每隔 5 分钟测量一次,温度为 28°C)获得的各自摩尔消光系数值 (ε)。在规定的浓度范围内,浓度与吸光度之间呈线性相关,检测限和定量限分别为 0.09 和 0.29 mg/L (350.8 nm) 和 0.13 和 0.39 mg/L (574.1 nm),计算回收率为 102.9%。通过改变分析人员、设备和分析日,对该方法的重现性进行了评估。利用所开发的方法,可以定量测定三种市售食品用盐中的碘元素当量。与经典/传统碘量法相比,分光光度法定量盐类中的碘酸根,具有溶剂和试剂用量最少、废物产生量少、分析时间短、样品要求低等优点,符合环保型分析方法的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing instrumental sustainability: a spectrophotometric approach for quantifying iodate in nutritionally significant salts through the adaptation of the classical iodometry method
With the primary objective of transitioning from the classical iodometric method to an instrumental approach, preserving precision in the analytical process, this study presents the development of a spectrophotometric method for quantifying iodate (iodine equivalent) in nutritionally significant salts. Therefore, the wavelengths of maximum absorption of the I3- (350.8 nm) and I3-starch (574.1 nm) complexes were determined. The complexes demonstrated stability, as indicated by the respective molar extinction coefficient values (ε) obtained over the course of the reaction time (measured up to 1h, at 5-minute intervals, and at 28°C), for concentrations ranging from 7.81×10-6 to 1.25×10-4 mols/L of KIO3. A linear correlation between concentration and absorbance was established within the specified concentration range, with detection and quantification limits defined as 0.09 and 0.29 mg/L (350.8 nm) and 0.13 and 0.39 mg/L (574.1 nm), respectively, and calculated recovery of 102.9%. The reproducibility of the method was assessed by varying the analyst, the equipment, and the analysis day. Using the developed method, it became feasible to quantify the elemental iodine equivalent in three commercially available salts commonly employed for food purposes. When compared to the classical/traditional iodometric method, the spectrophotometric method for quantifying iodate in salts showcases sustainability with minimized solvent and reagent usage, reduced waste generation, shorter analysis time, and lower sample requirements, aligning with environmentally conscious analytical practices.
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