Trends in the Direct and Indirect Chromatographic Determination of Organosulfur Compounds in Various Matrices

S. Mgiba, V. Mhuka, N. Hintsho-Mbita, N. Mketo
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引用次数: 1

Abstract

ABSTRACT Organosulfur compounds (OSCs) are found in various matrices including fossil fuels, petrochemicals, food, environmental and biological samples. However, these OSCs can be beneficial or detrimental, depending on various factors. For example, OSCs found in vegetables have shown to be anti-inflammatory, antibiotic, lipid regulators and anti-cancer compounds. Additionally, OSCs found in alcoholic beverages enhance the aroma and taste. Alternatively, OSCs in fossil fuels can cause catalyst poisoning during fossil fuel processing which can result in H2S formation. The H2S can corrode processing machinery and liberate toxic sulfur emissions to the atmosphere, which then react with water to form harmful acid rain. Thus, monitoring concentration levels of OSCs in various samples is of interest. In this review, chromatographic analytical techniques that are mostly reported for both qualitative and quantitative determination of OSCs in various matrices are described based on direct (no sample preparation) and indirect (sample preparation needed) analyses. The merits and possible limitations associated with direct and indirect analyses are also discussed. Furthermore, the analytical performances of the various published sample preparation methods are evaluated in terms of accuracy, limit of detection and precision. Lastly, this review highlights current gaps in OSC chromatographic determination and possible future developments.
各种基质中有机硫化合物的直接色谱法和间接色谱法测定趋势
有机硫化合物(OSCs)存在于各种基质中,包括化石燃料、石化产品、食品、环境和生物样品。然而,这些osc可能是有益的,也可能是有害的,这取决于各种因素。例如,蔬菜中发现的OSCs已被证明是抗炎、抗生素、脂质调节剂和抗癌化合物。此外,在酒精饮料中发现的OSCs可以增强香气和味道。另外,化石燃料中的OSCs会在化石燃料加工过程中引起催化剂中毒,从而导致H2S的形成。硫化氢会腐蚀加工机械,并向大气中释放有毒的硫,然后与水反应形成有害的酸雨。因此,监测各种样品中OSCs的浓度水平是有意义的。在这篇综述中,色谱分析技术主要是基于直接(不需要样品制备)和间接(需要样品制备)分析来描述各种基质中OSCs的定性和定量测定。还讨论了直接分析和间接分析的优点和可能的局限性。此外,各种已发表的样品制备方法的分析性能在准确性,检出限和精密度方面进行了评估。最后,本文综述了盐盐色谱测定目前的差距和可能的未来发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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