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首页> 外文期刊>Analytica chimica acta >Bead injection spectroscopic flow-through renewable surface sensors with commercial flow cells as an alternative to reusable flow-through sensors
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Bead injection spectroscopic flow-through renewable surface sensors with commercial flow cells as an alternative to reusable flow-through sensors

机译:珠粒光谱流通式可再生表面传感器,带有商用流通池,可重复使用的流通式传感器的替代品

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For the first time, a bead injection spectroscopy-flow injection analysis (BIS-FIA) system with spectrophotometric detection in a commercially available flow cell (Hellma 138-OS) is developed. The flow cell is filled by injecting in the flow system a homogeneous bead suspension of an appropriate solid support previously loaded with the chromogenic reagent. The solid beads work as a flow-through chemical sensing microzone integrating on-line separation/reaction/detection, developing the analytical signal when the injected sample containing the analyte reaches the beads. At the end of the analysis, the beads are discarded by reversing the flow and instantaneously transported out of the system. These systems can be specially recommended in those flow-through optosensors in which the species of interest is so strongly retained on the solid sensing microzone that the regeneration of the solid beads becomes extraordinarily difficult. They can be considered as belonging to the third generation of FI microanalytical techniques which use renewable sensing solid surface, so avoiding the need for a revrsible sensing mechanism. To demonstrate the utility of ths technique, a single BIS-FIA system is developed to determne: (a) directly Fe(II); (b) Fe(III) or total iron (Fe(II) + Fe(III), using a previous reduction; and (c) indirectly ascorbic acid. Ferrozine (Fz) is the bead loaded chromogenic reagent, the analytical signal corresponding to the absorbance of the complex [Fe(II)Fz_3]~(4-). Sampling frequencies of 16 and 13 h~(-1), and R.S.D. (s) (n = 10) of 4.02 and 4.19% were obtained with 100 and 1000 mul of Fe(II) solution, respectively. The system was applied to the determination of (a) iron in wine; water and pharmaceuticals; and (b) ascorbic acid in fruit juices, pharmaceuticals and conservative liquids, obtaining satisfactory results.
机译:首次开发了在市售流通池(Hellma 138-OS)中具有分光光度检测功能的珠子注入光谱-流动注射分析(BIS-FIA)系统。通过在流动系统中注入预先装有显色试剂的适当固体支持物的均匀珠状悬浮液,可以填充流动池。固体珠粒充当流通式化学感应微区,集成了在线分离/反应/检测功能,当包含分析物的进样样品到达珠粒时,产生分析信号。在分析结束时,通过逆向流动将珠粒丢弃并立即从系统中运出。这些系统可以特别推荐用于那些流通型光电传感器中,在这种传感器中,所关注的物质非常牢固地保留在固体传感微区上,以致固体珠粒的再生变得异常困难。它们可以被认为属于使用可再生传感固体表面的第三代FI微观分析技术,因此无需使用可逆的传感机制。为了证明该技术的实用性,开发了一个单一的BIS-FIA系统来确定:(a)直接使用Fe(II); (b)Fe(III)或总铁(Fe(II)+ Fe(III),使用先前的还原方法;以及(c)间接抗坏血酸。Ferrozine(Fz)是负载珠的生色试剂,分析信号对应于[Fe(II)Fz_3]〜(4-)的吸光度,100时的采样频率为16和13 h〜(-1),相对标准偏差(s)(n = 10)为4.02和4.19%该系统分别用于测定(a)酒中的铁,水和药品中的铁;以及(b)果汁,药品和传统液体中的抗坏血酸,获得满意的结果。

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