首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A multisyringe flow injection Winkler-based spectrophotometric analyzer for in-line monitoring of dissolved oxygen in seawater
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A multisyringe flow injection Winkler-based spectrophotometric analyzer for in-line monitoring of dissolved oxygen in seawater

机译:基于Winkler的多注射器流动注射分光光度分析仪,用于在线监测海水中的溶解氧

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摘要

An integrated analyzer based on the multisyringe flow injection analysis approach is proposed for the automated determination of dissolved oxygen in seawater. The entire Winkler method including precipitation of manganese(II) hydroxide, fixation of dissolved oxygen, dissolution of the oxidized manganese hydroxide precipitate, and generation of iodine and tri-iodide ion are in-line effected within the flow network. Spectrophotometric quantification of iodine and tri-iodide at the isosbestic wavelength of 466 nm renders enhanced method reliability. The calibration function is linear up to 19 mg L-1 dissolved oxygen and an injection frequency of 17 per hour is achieved. The multisyringe system features a highly satisfying signal stability with repeatabilities of 2.2% RSD that make it suitable for continuous determination of dissolved oxygen in seawater. Compared to the manual starch-end-point titrimetric Winkler method and early reported automated systems, concentrations and consumption of reagents and sample are reduced up to hundredfold. The versatility of the multisyringe assembly was exploited in the implementation of an ancillary automatic batch-wise Winkler titrator using a single syringe of the module for accurate titration of the released iodine/tri-iodide with thiosulfate.
机译:提出了一种基于多注射器流动注射分析方法的综合分析仪,用于自动测定海水中的溶解氧。整个Winkler方法包括在流动网络内在线进行,包括氢氧化锰(II)的沉淀,溶解氧的固定,氧化的氢氧化锰沉淀的溶解以及碘和三碘离子的产生。分光光度法在等吸收波长466 nm处对碘和三碘化物进行分光光度定量分析,增强了方法的可靠性。校准功能是线性的,最高溶解氧19 mg L-1,每小时注入频率为17。多注射器系统具有令人满意的信号稳定性,RSD的重复性为2.2%,适用于连续测定海水中的溶解氧。与手动淀粉终点滴定Winkler方法和早期报道的自动化系统相比,试剂和样品的浓度和消耗降低了数百倍。在使用单个模块注射器以辅助滴定硫代硫酸盐精确滴定释放的碘/三碘化物的辅助自动分批温克勒滴定仪的实现中,利用了多注射器组件的多功能性。

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