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首页> 外文期刊>International Journal of Chemical Kinetics >Studies on Oscillating Chemical Reaction in Cu(II)-Catalyzed Thiocyanate-Hydrogen Peroxide-NaOH System Using Pulsating Sensor
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Studies on Oscillating Chemical Reaction in Cu(II)-Catalyzed Thiocyanate-Hydrogen Peroxide-NaOH System Using Pulsating Sensor

机译:脉动传感器在Cu(II)催化的硫氰酸盐-过氧化氢-NaOH体系中振荡化学反应的研究

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摘要

We present a novel measurement technique to study an oscillating chemical reaction using a new class of sensor, viz. a pulsating sensor developed in-house. A halogen-free oscillating chemical reaction in the Cu(II)-catalyzed H2O2-KSCN-NaOH system reported by Orban was chosen to examine the performance of this technique. Shift in potential during the oscillating reaction was captured online with high precision and excellent resolution using this simple but high-performance pulsating potentiometric measurement technique. In this work, the influence of bath temperature and flow rate of reagents on the Cu(II)-catalyzed H2O2-KSCN-NaOH oscillating chemical reaction is investigated to optimize the conditions for rapid oscillations. This, in turn, helps to evolve analyte pulse perturbation techniques for rapid assay of hydrazine, uranium(VI), and sodium thiosulfate in aqueous solutions using the above oscillating reaction.
机译:我们提出了一种新颖的测量技术,以研究使用新型传感器的振动化学反应。内部开发的脉动传感器。选择Orban报告的在Cu(II)催化的H2O2-KSCN-NaOH系统中的无卤振荡化学反应来检查该技术的性能。使用这种简单但高性能的脉冲电位测量技术,可以高精度,出色的分辨率在线捕获振荡反应过程中的电位变化。在这项工作中,研究了浴温和试剂流速对Cu(II)催化的H2O2-KSCN-NaOH振荡化学反应的影响,以优化快速振荡的条件。反过来,这有助于发展分析物脉冲微扰技术,以便使用上述振荡反应快速分析水溶液中的肼,铀(VI)和硫代硫酸钠。

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