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 >Enhancement of the spectral selectivity of complex samples by measuring them in a frozen state at low temperatures in order to improve accuracy for quantitative analysis. Part I. Raman spectroscopic compositional analysis of synthetic hydrocarbon mixtures
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Enhancement of the spectral selectivity of complex samples by measuring them in a frozen state at low temperatures in order to improve accuracy for quantitative analysis. Part I. Raman spectroscopic compositional analysis of synthetic hydrocarbon mixtures

机译:通过在低温下以冷冻状态测量复杂样品,可以提高复杂样品的光谱选择性,从而提高定量分析的准确性。第一部分合成烃混合物的拉曼光谱组成分析

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摘要

A simple strategy for enhancing the Raman spectral selectivity of complex mixture samples by measuring them in a frozen state at low temperatures has been demonstrated and proven to improve the accuracy for compositional analysis. For evaluation, the Raman spectra of synthetic hydrocarbon mixtures that were composed of eleven hydrocarbons (n-hexane, n-heptane, n-octane, n-nonane, isooctane, cyclohexane, methylcyclohexane, benzene, toluene, xylene, and indan) were continuously collected during the elevation of their temperature from cryogenic to near room temperature. The accuracy of determination of n-paraffin concentrations improved significantly when the samples were measured at the temperature range between approximately -175 and -155 °C in comparison to the measurements at room temperature. However, the improvement of accuracy was relatively marginal for the concentration determination of naphthenic and aromatic components. Since n-paraffins are easily compressible and deformable in frozen conditions, the subsequent spectral variations could be diverse depending on their molecular structures. Due to this fact, the spectral discrimination among the paraffin components, as well as in comparison to other components, was enhanced and the improved spectral selectivity eventually led to more accurate determination of concentrations. Overall, the proposed strategy is simple and effective, so it is applicable for analysis of real complex mixture samples.
机译:通过在低温下以冷冻状态进行测量来增强复杂混合物样品的拉曼光谱选择性的简单策略已得到证明,并证明可提高成分分析的准确性。为了评估,由11种烃(正己烷,正庚烷,正辛烷,正壬烷,异辛烷,环己烷,甲基环己烷,苯,甲苯,二甲苯和茚满)组成的合成烃混合物的拉曼光谱是连续的从低温到接近室温的温度升高过程中收集。与在室温下进行测量相比,在大约-175至-155°C的温度范围内测量样品时,确定正链烷烃浓度的准确性显着提高。但是,对于环烷烃和芳烃组分的浓度测定,准确性的提高相对较弱。由于正链烷烃在冷冻条件下易于压缩和变形,因此后续的光谱变化可能取决于其分子结构。由于这个事实,石蜡成分之间以及与其他成分相比的光谱鉴别能力得到了增强,改善的光谱选择性最终导致浓度的更准确测定。总体而言,所提出的策略简单有效,因此适用于分析实际的复杂混合物样品。

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