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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Characterization of laser induced breakdown plasmas used for measurements of arsenic, antimony and selenium hydrides
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Characterization of laser induced breakdown plasmas used for measurements of arsenic, antimony and selenium hydrides

机译:激光诱导击穿等离子体的表征,用于测量砷,锑和氢化硒

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Studies have been performed to characterize laser induced breakdown spectroscopy (LIBS) plasmas formed in Ar/H2 gas mixtures that are used for hydride generation (HG) LIBS measurements of arsenic (As), antimony (Sb) and selenium (Se) hydrides. The plasma electron density and plasma excitation temperature have been determined through hydrogen, argon and arsenic emission measurements. The electron density ranges from 4.5 x10~(17) to 8.3x10~cm~(-3) over time delays of 0.2 to 15 μs. The plasma temperatures range from 8800 to 7700 K for Ar and from 8800 to 6500 K for As in the HG LIBS plasmas. Evaluation of the plasma properties leads to the conclusion that partial local thermodynamic equilibrium conditions are present in the HG LIBS plasmas. Comparison measurements in LIBS plasmas formed in Ar gas only indicate that the temperatures are similar in both plasmas. However it is also observed that the electron density is higher in the Ar only plasmas and that the emission intensities of Ar are higher and decay more slowly in the Ar only plasmas. These differences are attributed to the presence of H2 which has a higher thermal conductivity and provides additional dissociation, excitation and ionization processes in the HG LIBS plasma environment. Based on the observed results, it is anticipated that changes to the HG conditions that change the amount of H2 in the plasma will have a significant effect on analyte emission in the HG LIBS plasmas that is independent of changes in the HG efficiency. The HG LIBS plasmas have been evaluated for measurements of elements hydrides using a constant set of HG LIBS plasma conditions. Linear responses are observed and limits of detection of 0.7,0.2 and 0.6 mg/L are reported for As, Sb and Se, respectively.
机译:已经进行了研究,以表征在Ar / H2气体混合物中形成的激光诱导击穿光谱(LIBS)等离子体的特性,这些等离子体用于氢化物生成(HG)砷(As),锑(Sb)和硒(Se)氢化物的LIBS测量。等离子体电子密度和等离子体激发温度已通过氢,氩和砷发射测量确定。在0.2至15μs的时间延迟下,电子密度范围从4.5 x10〜(17)到8.3x10〜cm〜(-3)。在HG LIBS等离子体中,Ar的等离子体温度范围为8800至7700 K,As的等离子体温度范围为8800至6500K。等离子体性能的评估得出的结论是,HG LIBS等离子体中存在局部局部热力学平衡条件。在Ar气中形成的LIBS等离子体中的比较测量仅表明两个等离子体中的温度相似。然而,还观察到在纯Ar的等离子体中电子密度较高,而在纯Ar的等离子体中Ar的发射强度较高且衰减更慢。这些差异归因于H2的存在,H2具有较高的热导率,并在HG LIBS等离子体环境中提供了更多的离解,激发和电离过程。基于观察到的结果,可以预料,改变血浆中H2量的HG条件的变化将对HG LIBS血浆中的分析物发射产生重大影响,而与HG效率的变化无关。已使用一组恒定的HG LIBS等离子体条件对HG LIBS等离子体的氢化物测量进行了评估。观察到线性响应,并且报道了As,Sb和Se的检出限分别为0.7、0.2和0.6 mg / L。

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