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使用电子单色仪-质谱法分析常规柴油和费托柴油燃料排放物中的硝基多环芳烃。

Analysis of nitro-polycyclic aromatic hydrocarbons in conventional diesel and Fischer-Tropsch diesel fuel emissions using electron monochromator-mass spectrometry.

作者信息

Havey Crystal D, McCormick Robert L, Hayes R Robert, Dane A John, Voorhees Kent J

机构信息

Department of Chemistry and Geochemistry, Colorado School of Mines, Golden, Colorado 80401, USA.

出版信息

Anal Chem. 2006 Jul 15;78(14):4894-900. doi: 10.1021/ac060400q.

Abstract

The presence of nitro-polycyclic aromatic hydrocarbons (NPAHs) in diesel fuel emissions has been studied for a number of years predominantly because of their contribution to the overall health and environmental risks associated with these emissions. Electron monochromator-mass spectrometry (EM-MS) is a highly selective and sensitive method for detection of NPAHs in complex matrixes, such as diesel emissions. Here, EM-MS was used to compare the levels of NPAHs in fuel emissions from conventional (petroleum) diesel, ultra-low sulfur/low-aromatic content diesel, Fischer-Tropsch synthetic diesel, and conventional diesel/synthetic diesel blend. The largest quantities of NPAHs were detected in the conventional diesel fuel emissions, while the ultra-low sulfur diesel and synthetic diesel fuel demonstrated a more than 50% reduction of NPAH quantities when compared to the conventional diesel fuel emissions. The emissions from the blend of conventional diesel with 30% synthetic diesel fuel also demonstrated a more than 30% reduction of the NPAH content when compared to the conventional diesel fuel emissions. In addition, a correlation was made between the aromatic content of the different fuel types and NPAH quantities and between the nitrogen oxides emissions from the different fuel types and NPAH quantities. The EM-MS system demonstrated high selectivity and sensitivity for detection of the NPAHs in the emissions with minimal sample cleanup required.

摘要

多年来,人们一直在研究柴油燃料排放物中硝基多环芳烃(NPAHs)的存在情况,主要是因为它们会增加这些排放物对整体健康和环境造成的风险。电子单色仪-质谱联用仪(EM-MS)是一种用于检测复杂基质(如柴油排放物)中NPAHs的高选择性和高灵敏度方法。在此,使用EM-MS比较了传统(石油)柴油、超低硫/低芳烃含量柴油、费托合成柴油以及传统柴油/合成柴油混合物的燃料排放物中NPAHs的含量水平。在传统柴油燃料排放物中检测到的NPAHs数量最多,而与传统柴油燃料排放物相比,超低硫柴油和合成柴油燃料中的NPAHs数量减少了50%以上。与传统柴油燃料排放物相比,含30%合成柴油燃料的传统柴油混合物排放物中的NPAH含量也减少了30%以上。此外,还对不同燃料类型的芳烃含量与NPAHs数量之间以及不同燃料类型的氮氧化物排放与NPAHs数量之间进行了相关性分析。EM-MS系统在检测排放物中的NPAHs时表现出高选择性和高灵敏度,且所需样品净化步骤极少。

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