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首页> 外文期刊>Journal of nuclear science and technology >Determination of Hydrogen Peroxide in Water by Chemiluminescence Detection, (II) Theoretical Analysis of Luminol Chemiluminescence Processes
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Determination of Hydrogen Peroxide in Water by Chemiluminescence Detection, (II) Theoretical Analysis of Luminol Chemiluminescence Processes

机译:化学发光检测测定水中的过氧化氢,(II)鲁米诺化学发光过程的理论分析

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摘要

The authors previously developed a flow injection type hydrogen peroxide detection system based on chemical photoluminescence spectroscopy. This system has the lowest detectable limit of 0.3 ppb. The relationships between the hydrogen peroxide concentration and luminous intensity were expressed as a linear function and a quadratic function of the H{sub}2O{sub}2 concentration. In the present study, the Chemiluminescence processes were theoretically evaluated by analyzing the chain radical reactions to confirm the effect of major parameters on the chemiluminescent intensity and to understand the complex relationship between H{sub}2O{sub}2 concentration and luminous intensity. Then delay in luminescence was empirically analyzed by calculating diffusion of chemical species in the sample water and mixed reagent solution. The calculated results showed dependencies of the chemiluminescent intensity on luminol concentration and pH of the mixed reagent were mainly determined by a balance between OH radical concentration and luminol concentration. Furthermore the presence of (O{sub}2){sup}- radicals in the mixed reagent might explain the linear relation between chemiluminescent intensity and H{sub}2O{sub}2 concentration at low values.
机译:作者先前开发了基于化学光致发光光谱学的流动注射型过氧化氢检测系统。该系统的最低可检测极限为0.3 ppb。过氧化氢浓度和发光强度之间的关系表示为H {sub} 2O {sub} 2浓度的线性函数和二次函数。在本研究中,通过分析链自由基反应从理论上评估了化学发光过程,以确认主要参数对化学发光强度的影响,并了解H {sub} 2O {sub} 2浓度与发光强度之间的复杂关系。然后,通过计算样品水和混合试剂溶液中化学物质的扩散,凭经验分析发光延迟。计算结果表明化学发光强度对鲁米诺浓度的依赖性,混合试剂的pH主要取决于OH自由基浓度和鲁米诺浓度之间的平衡。此外,混合试剂中(O {sub} 2){sup}-的存在可能解释了化学发光强度与低值时H {sub} 2O {sub} 2浓度之间的线性关系。

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