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首页> 外文期刊>Environmental Science & Technology >On-Line Monitoring of Gas-Phase Molecular Iodine Using Raman and Fluorescence Spectroscopy Paired with Chemometric Analysis
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On-Line Monitoring of Gas-Phase Molecular Iodine Using Raman and Fluorescence Spectroscopy Paired with Chemometric Analysis

机译:使用拉曼和荧光光谱对化学计量分析配对气相分子碘的在线监测

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摘要

Molten salt reactors (MSRs) have the potential to safely support green energy goals while meeting baseload energy needs with diverse energy portfolios. While reactor designers have made tremendous strides with these systems, licensing and deployment of these reactors will be aided through the development of new technology such as on-line and remote monitoring tools. Of particular interest is quantifying reactor off-gas species, such as iodine, within off-gas streams to support the design and operational control of off-gas treatment systems. Here, the development of advanced Raman spectroscopy systems for the on-line analysis of gas composition is discussed, focusing on the key control species I_(2(g)). Signal response was explored with two Raman instruments, utilizing 532 and 671 nm excitation sources, as a function of I_(2(g)) pressure and temperature. Also explored is the integration of advanced data analysis methods to enable real-time and highly accurate analysis of complex optical data. Specifically, the application of chemometric modeling is discussed. Raman spectroscopy paired with chemometric analysis is demonstrated to provide a powerful route to analyzing I_(2(g)) composition within the gas phase, which lays the foundation for applications within molten salt reactor off-gas analysis and other significant chemical processes producing iodine species.
机译:熔盐反应器(MSRS)有可能在满足BaseLoad Energy需求的同时安全地支持绿色能量目标,以不同的能量组合。虽然反应堆设计师与这些系统进行了巨大的进步,但这些反应堆的许可和部署将通过开发新技术,如在线和远程监控工具。特别感兴趣的是量化反应堆废气物种,例如碘,在废气流内,以支持对废气处理系统的设计和操作控制。这里,讨论了用于在线分析气体组合物的先进拉曼光谱系统的开发,重点关注关键控制物种I_(2(g))。用两个拉曼仪器探索信号响应,利用532和671nm激励源,作为I_(2(g))压力和温度的函数。还探索是高级数据分析方法的集成,使得对复杂光学数据的实时和高度准确的分析。具体地,讨论了化学型建模的应用。用化学计量分析配对的拉曼光谱法提供了对气相中的I_(2(G))组合物分析的强大途径,这为熔融盐反应器废气分析和产生碘类的其他显着的化学方法为应用奠定了基础。

著录项

  • 来源
    《Environmental Science & Technology 》 |2021年第6期| 3898-3908| 共11页
  • 作者单位

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 United States;

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 United States;

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 United States;

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 United States;

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 United States;

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 United States;

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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