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Flow-Injection Simultaneous Determination of Iodate and Periodate by Spectrophotometric and Spectrofluorometric Detection

机译:分光光度法和荧光分光光度法流动注射同时测定碘酸根和高碘酸根

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摘要

A simple and accurate procedure for simultaneous spectrophotometric and spectrofluorometric determinations of iodate and periodate in aqueous media has been developed. The determination of periodate is based on the selective oxidation of Alizarin Navy Blue to produce a fluorescent compound, that can be found by flow-through spectrofluorometric detection (λex=370 nm, λem=516 nm). On the other hand, periodate and iodate react with iodide to produce iodine, which is determined by spectrophotometric detection at 349 nm. The injected sample was split into two streams, one of which was directly treated with Alizarin Navy Blue and passed to the flow cell of the spectrofluorometer. A fluorescence signal at 516 nm was due to periodate. The other stream was treated with iodide and sulfuric acid and then passed through the flow cell of the spectrophotometer. The increase in absorbance at 349 nm was due to periodate and iodate. The influences of the acid concentration, reagent concentration and manifold variables were studied. The effect of diverse ions on the determination of periodate and iodate by the proposed method was also investigated. Periodate and iodate can be determined in the range of 1.0×10-5 - 2.2×10-4 M and 1.0×10-5 - 2.0×10-4 M, respectively. Within the 3σ detection limit was 3.5×10-6 M for periodate and 1.0×10-6 M for iodate, respectively. Applying this method to the analysis of iodate and periodate in artificial fresh-water samples was successfully carried out.
机译:开发了一种简单而准确的程序,用于同时分光光度法和荧光分光光度法测定水性介质中的碘酸根和高碘酸根。高碘酸盐的测定基于茜素藏青色的选择性氧化,以产生荧光化合物,可以通过流通式荧光分光光度法检测(λex= 370 nm,λem= 516 nm)发现。另一方面,高碘酸盐和碘酸盐与碘化物反应生成碘,其通过在349 nm处的分光光度检测确定。将注入的样品分成两股流,其中一股直接用茜素海军蓝处理,然后传递到荧光分光光度计的流通池中。 516 nm处的荧光信号归因于高碘酸盐。另一股物流用碘化物和硫酸处理,然后通过分光光度计的流通池。 349 nm处吸光度的增加归因于高碘酸盐和碘酸盐。研究了酸浓度,试剂浓度和歧管变量的影响。还研究了所提出的方法中各种离子对高碘酸根和碘酸根测定的影响。高碘酸盐和碘酸盐的测定范围分别为1.0×10-5-2.2×10-4 M和1.0×10-5-2.0×10-4M。在3σ范围内,高碘酸盐的检出限为3.5×10-6 M,碘酸盐的检出限为1.0×10-6M。成功地将该方法应用于人造淡水样品中的碘酸根和高碘酸根的分析。

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