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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Atomic emission spectroscopy for the on-line monitoring of incineration processes
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Atomic emission spectroscopy for the on-line monitoring of incineration processes

机译:原子发射光谱法在线监测焚烧过程

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A diagnostic measurement system based on atomic emission spectroscopy has been developed for the purpose of on-line monitoring of hazardous elements in industrial combustion gases. The aim was to construct a setup with a high durability for rough and variable experimental conditions, e.g. a strongly fluctuating gas composition, a high gas temperature and the presence of fly ash and corrosive effluents. Since the setup is primarily intended for the analysis of combustion gases with extremely high concentrations of pollutants, not much effort has been made to achieve low detection limits. It was found that an inductively coupled argon plasma was too sensitive to molecular gas introduction. Therefore, a microwave induced plasma torch, compromising both the demands of a high durability and an effective evaporation and excitation of the analyte was used as excitation source. The analysis system has been installed at an industrial hazardous waste incinerator and successfully tested on combustion gases present above the incineration process. Abundant elements as zinc, lead and sodium could be easily monitored.
机译:为了在线监测工业燃烧气体中的有害元素,已经开发了基于原子发射光谱的诊断测量系统。目的是针对恶劣和可变的实验条件(例如,实验条件)构建具有高耐久性的装置。气体成分剧烈波动,气体温度高以及粉煤灰和腐蚀性废水的存在。由于该装置主要用于分析污染物浓度极高的燃烧气体,因此未作太多努力来实现低检测限。发现感应耦合的氩等离子体对分子气体的引入过于敏感。因此,兼顾了高耐久性和分析物有效蒸发和激发的要求的微波感应等离子体炬被用作激发源。该分析系统已安装在工业危险废物焚化炉上,并成功地对焚烧过程上方存在的燃烧气体进行了测试。锌,铅和钠等丰富元素可以轻松监控。

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