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Design and optimization of a single-use optical sensor based on a polymer inclusion membrane for zinc determination in drinks, food supplement and foot health care products

机译:基于聚合物包裹膜的一次性光学传感器的设计和优化,可用于饮料,食品补充剂和足部保健产品中的锌测定

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摘要

A single-use optical sensor was designed for Zn(II) determination based on the immobilisation of the colorimetric reagent 2-acetylpyridine benzoylhydrazone (2-APBH) in a polymer inclusion membrane (PIM) adhered on the surface of an inert rectangular strip of polyester (Mylar). Different components for the membrane preparation were tested and those resulting in membrane with good appearance, proper physical and optical properties and ease of preparation were selected. Factorial design 23 with three replicates of the central point was applied for the optimisation of the membrane composition. The optimal composition consisted of 2.5 g of poly(vinyl chloride) (PVC), 4 mL of tributyl phosphate (TBP) and 0.04 g of 2-APBH. The optode showed a linear dynamic range from 0.03 (detection limit) to 1 mg L-1 of Zn(II) ions with a response time of 30 min in aqueous solution at pH 6 and a relative standard deviation of 3.90% for 0.4 mg L-1 of Zn(II). The sensor exhibited good selectivity to Zn(II) over other commonly ions. It was successfully applied to the determination of Zn(II) in a water certified reference material, spiked tap water, vitamin-mineral drink, food supplement and foot health care products, as contribution to the concern about this heavy metal due to its significant role in many biological and physiological processes although toxicant at high doses.
机译:基于比色试剂2-乙酰基吡啶苯甲酰hydr(2-APBH)在固定在聚酯惰性矩形条表面上的聚合物包含膜(PIM)中的固定化,设计了一种用于锌(II)测定的一次性光学传感器(聚酯薄膜)。测试了用于膜制备的不同组分,并选择了那些导致膜具有良好外观,适当的物理和光学性质以及易于制备的组分。具有中心点的三个重复的因子设计23用于优化膜组成。最佳组成包括2.5克聚氯乙烯(PVC),4毫升磷酸三丁酯(TBP)和0.04克2-APBH。该光电二极管显示从0.03(检测极限)到1 mg L-1的Zn(II)离子的线性动态范围,在pH 6的水溶液中响应时间为30分钟,0.4 mg L的相对标准偏差为3.90% -1的Zn(II)。该传感器对其他常见离子显示出对Zn(II)的良好选择性。它已成功用于水认证参考物质,加标自来水,维生素矿物质饮料,食品补充剂和足部保健产品中的Zn(II)的测定,这是由于该重金属的重要作用引起了人们对这种重金属的关注尽管在高剂量下有毒,但在许多生物和生理过程中仍会起作用。

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