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Determination of Iodate in Food Environmental and Biological Samples after Solid-Phase Extraction with Ni-Al-Zr Ternary Layered Double Hydroxide as a Nanosorbent

机译:Ni-Al-Zr三元层状双氢氧化物作为纳米吸附剂固相萃取后食品环境和生物样品中碘酸盐的测定

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摘要

Nanostructured nickel-aluminum-zirconium ternary layered double hydroxide was successfully applied as a solid-phase extraction sorbent for the separation and pre-concentration of trace levels of iodate in food, environmental and biological samples. An indirect method was used for monitoring of the extracted iodate ions. The method is based on the reaction of the iodate with iodide in acidic solution to produce iodine, which can be spectrophotometrically monitored at 352 nm. The absorbance is directly proportional to the concentration of iodate in the sample. The effect of several parameters such as pH, sample flow rate, amount of nanosorbent, elution conditions, sample volume, and coexisting ions on the recovery was investigated. In the optimum experimental conditions, the limit of detection (3s) and enrichment factor were 0.12 μg mL−1 and 20, respectively. The calibration graph using the preconcentration system was linear in the range of 0.2–2.8 μg mL−1 with a correlation coefficient of 0.998. In order to validate the presented method, a certified reference material, NIST SRM 1549, was also analyzed.
机译:纳米结构的镍-铝-锆-三元双层氢氧化物已成功用作固相萃取吸附剂,用于食品,环境和生物样品中痕量碘酸盐的分离和预富集。使用间接方法监测提取的碘酸根离子。该方法基于碘酸盐与碘化物在酸性溶液中反应生成碘,该碘可以在352nm处用分光光度法监控。吸光度与样品中碘酸盐的浓度成正比。研究了pH,样品流速,纳米吸附剂的量,洗脱条件,样品量和共存离子等几个参数对回收率的影响。在最佳实验条件下,检出限(3s)和富集因子分别为0.12μgmL -1 和20。使用预浓缩系统的校准图在0.2–2.8μg mL -1 范围内呈线性,相关系数为0.998。为了验证所提出的方法,还对认证的参考材料NIST SRM 1549进行了分析。

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