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The pyrolysis efficiencies of oxidized mercury using different thermal conversion materials in on-line total gaseous mercury monitor

机译:在线总气体汞监测仪中使用不同热转化材料的氧化汞的热解效率

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The pyrolysis of oxidized mercury is one of key techniques for the conversion of species mercury from ionic form to elemental form. At present, thermal pyrolysis technique has been more and more used in on-line total gaseous mercury monitor for its high conversion efficiency and less time consuming maintenance. We investigate the pyrolysis efficiencies of oxidized mercury using SiC, nickel (Ni) and nichrome as thermal conversion materials in converter. The results reveal that compared with SiC material, the nickel (Ni) and nichrome can provide high pyrolysis efficiency. Particularly, the nichrome that contains 15% chromium (Cr), 75% Ni and 8% Fe can achieve 8.7% higher conversion efficiency than SiC at 800°C. The results demonstrate that the nichrome that contains 15% chromium (Cr), 75% Ni and 8% Fe is an appropriate thermal converting material for the on-line total gaseous mercury monitor.
机译:氧化汞的热解是将物种汞从离子形式转化为元素形式的关键技术之一。目前,热热解技术越来越多地用于在线总气体汞监测仪,其高转换效率和较少的耗时维护。我们研究了使用SiC,镍(Ni)和镍铬物作为转化器中热转换材料的热解汞的热解效率。结果表明,与SiC材料相比,镍(Ni)和镍铬物可以提供高热解效率。特别是,含有15%铬(Cr),75%Ni和8%Fe的镍铬物可以在800℃下比SiC达到8.7%的转化效率。结果表明,含有15%铬(Cr),75%Ni和8%Fe的尼科姆是用于在线总气体汞监测器的适当热转换材料。

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