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首页> 外文期刊>Central European Journal of Chemistry >Determination of p-nitrobenzene-azo-naphthol by an oscillating chemical reaction using the analyte pulse perturbation technique
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Determination of p-nitrobenzene-azo-naphthol by an oscillating chemical reaction using the analyte pulse perturbation technique

机译:使用分析物脉冲微扰技术的振荡化学反应测定对硝基苯偶氮萘酚

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摘要

A simple analytical method for the determination of p-nitrobenzene-azo-naphthol was proposed by a sequential perturbation with different amounts of p-nitrobenzene-azo-naphthol on an oscillating chemical system. The method involves a Cu(II)-catalysed oscillating reaction between hydrogen peroxide and sodium thiocyanate in alkaline medium with the aid of continuous-flow stirred tank reactor (CSTR). A good linear relationship between the changes, oscillation amplitude or/and period, and the concentration of p-nitrobenzene-azo-naphthol was obtained. The use of analyte pulse perturbation technique provides a possibility of sequential determination in a same oscillating system, due to a new steady state that reappeared rapidly after each perturbation. The calibration curve fits a linear equation very well when the concentration of p-nitrobenzene-azo-naphthol ranging from 5.2×10-7 to 3.3×10-3M. Influence of temperature, injection point, flow rate and reactants variables on this system were investigated in detail.
机译:通过在振荡化学系统上用不同量的对硝基苯-偶氮-萘进行连续扰动,提出了一种测定对硝基苯-偶氮-萘酚的简单分析方法。该方法包括在连续介质搅拌釜反应器(CSTR)的作用下,在碱性介质中过氧化氢和硫氰酸钠之间的Cu(II)催化的振荡反应。在变化,振荡幅度或/和周期与对硝基苯-偶氮-萘酚的浓度之间获得良好的线性关系。由于每次扰动后都会迅速出现新的稳定状态,因此使用分析物脉冲扰动技术可在同一振荡系统中进行顺序确定。当对硝基苯-偶氮-萘酚的浓度范围为5.2×10 -7 至3.3×10 -3 M时,校准曲线很好地拟合线性方程。详细研究了温度,注入点,流速和反应物变量对该系统的影响。

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