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基于钯/镁混合物的不同化学改性剂用于高分辨率连续光源石墨炉分子吸收光谱法测定页岩油中硫的研究。

Investigation of different chemical modifiers based on the Pd/Mg mixture for the determination of sulfur in shale oil by high-resolution continuum source graphite furnace molecular absorption spectrometry.

作者信息

Passos A S Dos, Dessuy M B, Nakadi F V, de Andrade J B, Vale M G R

机构信息

Instituto de Química, Universidade Federal do Rio Grande do Sul, 91501-970, Porto Alegre, RS, Brazil; Instituto Federal de Educação, Ciência e Tecnologia da Bahia, 45030-220, Vitória da Conquista, BA, Brazil.

Instituto de Química, Universidade Federal do Rio Grande do Sul, 91501-970, Porto Alegre, RS, Brazil.

出版信息

Talanta. 2019 Nov 1;204:206-212. doi: 10.1016/j.talanta.2019.05.114. Epub 2019 Jun 1.

Abstract

This study investigated different combinations of Pd/Mg, as chemical modifier, for sulfur determination, via CS molecule, in shale oil samples by high-resolution continuum source graphite furnace molecular absorption spectrometry (HR-CS GF MAS). It was evaluated the mixture Pd/Mg in aqueous solution, Pd/Mg in propan-1-ol and the Pd/Mg in propan-1-ol plus Ru as a permanent modifier. The best sensitivity was achieved with Pd/Mg mixture in propan-1-ol. The high solubility of the samples in propan-1-ol promotes a better interaction with the modifier and, consequently, a more efficient thermal stability of the CS molecules. Due to the high sulfur content in the samples, the analytical line at 258.288 nm was used. Only a minimum sample preparation was required, i.e., a dilution in propan-1-ol by a factor of 1:10 (w/w). Temperatures of 800 °C and 2200 °C were the optimized conditions for pyrolysis and vaporization, respectively. The calibration curve was constructed with l-cysteine aqueous standard solutions. The characteristic mass was 27 ng; detection and quantification limits were 0.012% (w/w) and 0.039% (w/w), respectively. The accuracy of the proposed method was confirmed by the statistical agreement (Student's and Welch's t-test at 95% confidence level) using the certified reference material CRM NIST 1084a and an OTE oil sample whose sulfur content was previously determined by the standard method ASTM D4294. The method was successfully applied in three shale oil samples. The sulfur content in the investigated samples ranged from 1.0% (w/w) to 1.3% (w/w).

摘要

本研究通过高分辨率连续光源石墨炉分子吸收光谱法(HR-CS GF MAS),研究了作为化学改性剂的钯/镁(Pd/Mg)的不同组合,用于测定页岩油样品中通过CS分子存在的硫。评估了水溶液中的Pd/Mg混合物、1-丙醇中的Pd/Mg以及1-丙醇中添加钌(Ru)作为永久改性剂的Pd/Mg。1-丙醇中的Pd/Mg混合物实现了最佳灵敏度。样品在1-丙醇中的高溶解度促进了与改性剂的更好相互作用,从而使CS分子具有更高的热稳定性。由于样品中硫含量较高,使用了258.288 nm的分析线。仅需进行最少的样品制备,即按1:10(w/w)的比例在1-丙醇中稀释。800 °C和2200 °C的温度分别是热解和汽化的优化条件。用L-半胱氨酸水溶液标准溶液构建校准曲线。特征质量为27 ng;检测限和定量限分别为0.012%(w/w)和0.039%(w/w)。通过使用有证标准物质CRM NIST 1084a和一个硫含量先前已通过标准方法ASTM D4294测定的OTE油样进行统计一致性验证(95%置信水平下的学生t检验和韦尔奇t检验),证实了所提方法的准确性。该方法成功应用于三个页岩油样品。所研究样品中的硫含量范围为1.0%(w/w)至1.3%(w/w)。

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