首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >IMPROVED DETECTION LIMITS FOR TRANSIENT SIGNAL ANALYSIS OF FLUID INCLUSIONS BY INDUCTIVELY COUPLED PLASMA ATOMIC EMISSION SPECTROMETRY USING CORRELATED BACKGROUND CORRECTION
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IMPROVED DETECTION LIMITS FOR TRANSIENT SIGNAL ANALYSIS OF FLUID INCLUSIONS BY INDUCTIVELY COUPLED PLASMA ATOMIC EMISSION SPECTROMETRY USING CORRELATED BACKGROUND CORRECTION

机译:使用相关背景校正通过电感耦合等离子体原子发射光谱法对流体夹杂物进行瞬态信号分析的改进检测极限

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摘要

The detection limits for IGP-AES bulk analysis of fluid inclusions;by thermal decrepitation are limited by fluctuations in background emissions from the plasma, The transient nature of the analyte signal prevents sequential off-peak estimation of background levels, The established technique of time-interpolation of background signals measured between the analyses of samples gives somewhat unrealistic estimates because the background is not measured during the decrepitation event, A new procedure, correlated background correction (CBC), uses the high degree of correlation between the relative fluctuations in the spectral background at different wavelengths to effectively predict the background emission under transient analyte peaks, An estimate of the spectral background is made at a wavelength with no analyte signal or spectral interference, in this case 371.030 nm which is otherwise used to measure yttrium, The relative fluctuation in this intensity is used to predict the background emission intensity at all analyte wavelengths during the decrepitation event, The detection limits achieved using CBC are improved typically by a factor of five over those estimated without any correction of background fluctuation, thus increasing the range of sample material amenable to analysis. [References: 8]
机译:对IGP-AES流体夹杂物进行大量分析的检测限;通过热爆破受到血浆背景发射波动的限制;分析物信号的瞬态性质阻止了对背景水平的连续非高峰估计;在样本分析之间对背景信号进行插值得出的估计值有些不切实际,因为在爆裂事件中未测量背景,一种新的程序,相关背景校正(CBC),使用了光谱背景中相对波动之间的高度相关性在不同的波长下有效地预测瞬态分析物峰下的背景发射。在没有分析物信号或光谱干扰的波长下对光谱背景进行估算,在这种情况下为371.030 nm,否则将用于测量钇。该强度用于预测背景e在爆破过程中,所有分析物波长下的检测强度都提高了。使用CBC达到的检出限通常比估计值提高了五倍,而没有对背景波动进行任何校正,从而增加了适合分析的样品材料范围。 [参考:8]

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