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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Real-time release of Na, K and Ca during thermal conversion of biomass using quantitative microwave-assisted laser-induced breakdown spectroscopy
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Real-time release of Na, K and Ca during thermal conversion of biomass using quantitative microwave-assisted laser-induced breakdown spectroscopy

机译:使用定量微波辅助激光诱导的击穿光谱法实时释放生物量的热转换期间Na,K和Ca

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Power production with thermal conversion has met new challenges due the global pressure to use CO2 neutral and renewable fuels, e.g. recycled fuel and biomass. Many of these fuels contain high concentrations of elements, such as alkali metals and chlorine, that together are harmful for boiler structures and may cause operational problems. Therefore, detailed quantitative information on release behaviour of the problematic elements, potassium and sodium, is required. For this, a new burner, which allows linear calibration of laser induced breakdown spectroscopy (LIBS) measurement towards higher concentrations relevant for the release studies during thermal conversion of biomass, was designed. The analytical performance of conventional LIBS measurement is significantly improved by introducing microwave radiation to the laser-induced plasma. An enhancement of linearity and up to 60-fold improvement of limit of detection (LOD) was observed with microwave-assisted LIBS (MW-LIBS) in comparison to conventional LIBS. The LOD of Na, K and Ca were 10 ppb, 19 ppb and 16 ppb, respectively. In-flame MW-LIBS measurement was applied to record time-traces of K, Na and Ca during thermal conversion of a poplar pellet. This is the first demonstration of Microwave near-field applicator injected MW-LIBS for gas phase measurement. With broad dynamic measurement range, the proposed method can be applied to extensive research of elemental release behaviour of different fuels. In addition to combustion studies, the MW-LIBS method can be extended to study trace-elements in gas phase in different fields of industry and science.
机译:随着全球压力使用CO2中性和可再生燃料,电力转换的电力生产达到了新的挑战,例如,使用CO2中性和可再生燃料。再生燃料和生物量。其中许多燃料含有高浓度的元素,例如碱金属和氯,在一起的锅炉结构有害,并且可能导致操作问题。因此,需要有关有问题元素,钾和钠的释放行为的详细定量信息。为此,设计了一种新的燃烧器,它允许激光诱导的击穿光谱(Libs)测量对生物质热转化期间对释放研究相关的更高浓度的测量。通过向激光诱导的等离子体引入微波辐射来显着改善常规Libs测量的分析性能。与常规Libs相比,用微波辅助Libs(MW-Libs)观察到线性度和高达60倍的改善的线性程度和高达60倍的改善。 Na,K和Ca的床位分别为10 ppb,19ppb和16ppb。在杨树颗粒的热转化期间,施加火焰MW-LIBS测量以在热转化期间记录K,Na和Ca的时间迹线。这是微波近场涂抹器注入气相测量的MW-LIB的第一次演示。具有广泛的动态测量范围,所提出的方法可以应用于不同燃料的元素释放行为的广泛研究。除燃烧研究外,MW-LIBS方法还可以扩展到研究不同领域的气相中的微量元素。

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