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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Automated fractionation procedure for polycyclic aromatic compounds in sediment extracts on three coupled normal-phase high-performance liquid chromatography columns
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Automated fractionation procedure for polycyclic aromatic compounds in sediment extracts on three coupled normal-phase high-performance liquid chromatography columns

机译:在三个耦合的正相高效液相色谱柱上对沉淀物中的多环芳族化合物进行自动分馏的程序

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摘要

Polychlorinated biphenyls, naphthalenes, dibenzo-p-dioxins and furans, as well as polyaromatic hydrocarbons (PAHs), hydroxy-, keto- and nitro-PAHs and sulphur, oxygen and nitrogen heterocycles represent major groups of toxicants in contaminated sediments. The identification of toxic substances in effect-directed analysis is often based on a group-specific fractionation of these polycyclic aromatic compounds (PACs). Several fractionation steps using different methods, solvent exchange and concentration steps are generally necessary to achieve this aim increasing the risk of losses and artefact formation. In order to avoid these disadvantages and to enhance the throughput, an automated on-line fractionation method was developed using coupled and automatically connected columns, including cyanopropyl- and nitrophenylpropyl-bonded silica and porous graphitised carbon stationary phases. Exploiting the potential of each column, compounds are separated mainly according to their polarity, number of aromatic carbons and planarity. Excellent group-specific resolution, high reproducibility and good recoveries suggest that this method is suitable for the fractionation of a multitude of major sediment contaminants in one HPLC-run. (C) 2008 Elsevier B.V. All rights reserved.
机译:多氯联苯,萘,二苯并-对-二恶英和呋喃,以及多环芳烃(PAH),羟基,酮和硝基PAHs和硫,氧和氮杂环代表了受污染沉积物中的主要毒物。在效果导向分析中对有毒物质的鉴定通常基于这些多环芳族化合物(PAC)的特定组分馏。为了达到该目的,通常需要使用不同方法,溶剂交换和浓缩步骤的几个分馏步骤,以增加损失和形成伪影的风险。为了避免这些缺点并提高通量,开发了一种使用偶联和自动连接的色谱柱的自动在线分馏方法,包括氰基丙基和硝基苯基丙基键合的硅胶以及多孔石墨化碳固定相。利用每根色谱柱的潜力,主要根据化合物的极性,芳族碳原子数和平面度对其进行分离。出色的组特异性分离度,高重现性和良好的回收率表明,该方法适用于在一次HPLC运行中分离多种主要沉积物污染物。 (C)2008 Elsevier B.V.保留所有权利。

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