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首页> 外文期刊>Electroanalysis >Monitoring the rate of osmium(VIII) catalyzed arsenic(III)vanadium(V) reaction by potentiostatic stat method using an automatic measuring system: An approach to the determination of osmium
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Monitoring the rate of osmium(VIII) catalyzed arsenic(III)vanadium(V) reaction by potentiostatic stat method using an automatic measuring system: An approach to the determination of osmium

机译:使用自动测量系统通过恒电位法监测(VIII)催化的砷(III)钒(V)反应的速率:一种测定determination的方法

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The rate of reaction between arsenite and vanadate, catalyzed by osmium(VIII) was monitored using an automatic potentiostatic stat method. This was carried out by maintaining the preset potential of a platinum indicator electrode by addition of a 2 x 10(-3) M vanadate solution (titrant). The rate of addition of titrant was considered as a criterion for the reaction rate and for this purpose the plots of Vi, (volume of titrant added) versus time (duration of titrant addition) were recorded, by an automatic measuring and control system. The slopes of linear part of these plots were used for the evaluation of the reaction rate. The experimental variables influencing the reaction rate were investigated by two methods, the one-at-a-time method and the Simplex method. As the rate of the osmium(VIII) catalyzed arsenite-vanadate reaction is linearly dependent on the osmium(VIII) concentration, a kinetic catalytic method was developed for the determination of trace-osmium. Under the optimized conditions, the calibration plot was linear over the concentration range 7 x 10(-8)-2.5 x 10(-6) M of osmium(VIII). The limit of detection of osmium was 3 x 10(-8) M. The interference of 28 cations and anions on the osmium determination was studied. The method was applied to the determination of osmium in synthetic osmiiridium samples with trace amount of osmium as typical example of application. [References: 21]
机译:使用自动恒电位统计方法监测by(VIII)催化的亚砷酸盐和钒酸盐之间的反应速率。通过添加2 x 10(-3)M钒酸盐溶液(滴定剂)来维持铂指示电极的预设电势来执行此操作。滴定剂的添加速率被认为是反应速率的标准,为此,通过自动测量和控制系统,记录了Vi(滴定剂的添加量)对时间(滴定剂的添加持续时间)的图。这些图的线性部分的斜率用于评估反应速率。通过两种方法研究了影响反应速率的实验变量:一次法和单纯形法。由于the(VIII)催化的亚砷酸盐-钒酸盐反应的速率与((VIII)浓度线性相关,因此开发了一种动力学催化方法来测定痕量os。在优化的条件下,校准曲线在7(VIII)的浓度范围7 x 10(-8)-2.5 x 10(-6)M上呈线性。的检出限为3 x 10(-8)M。研究了28种阳离子和阴离子对determination的测定的干扰。该方法以典型的痕量为基础,用于痕量synthetic的测定。 [参考:21]

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