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采用亚铁嗪法进行铁分析:适应流动注射分析以用于热液环境中的原位分析。

Fe analysis by the ferrozine method: Adaptation to FIA towards in situ analysis in hydrothermal environment.

作者信息

Sarradin Pierre-Marie, Le Bris Nadine, Le Gall Christian, Rodier Philippe

机构信息

Ifremer Centre de Brest, DRO/EP, BP70, F-29280 Plouzané, France.

出版信息

Talanta. 2005 Jun 15;66(5):1131-8. doi: 10.1016/j.talanta.2005.01.012.

Abstract

The target of this study is the adaptation of the ferrozine method to flow injection analysis (FIA) to perform iron analysis in situ using an in situ chemical analyser in hydrothermal environments. The adaptation of the method to FIA was followed by its optimisation using an experimental design screening method. The goals of the optimisation steps were to decrease the detection limit and to increase the measuring range to cope with the constraints of in situ analysis. The method allows the determination of iron in the mixing zone of hydrothermal fluid, enriched in iron, and seawater. A single manifold gives the possibility to analyse either Fe(II) or SigmaFe [Fe(II)+Fe(III)] in situ, or SigmaFe in the lab on hydrothermal seawater samples. The measuring range of the method was increased to up to 2000muM, which is coherent with the study of the chemical environment of communities associated with deep-sea hydrothermal activity. Finally, the method was applied in situ using the chemical analyser Alchimist during the ATOS cruise on hydrothermal vent fields on the Mid Atlantic Ridge.

摘要

本研究的目标是将亚铁嗪法应用于流动注射分析(FIA),以便使用原位化学分析仪在热液环境中进行铁的原位分析。在将该方法应用于FIA之后,使用实验设计筛选方法对其进行了优化。优化步骤的目标是降低检测限并扩大测量范围,以应对原位分析的限制。该方法可用于测定富含铁的热液流体与海水混合区域中的铁。单个流路能够原位分析Fe(II)或总铁[Fe(II)+Fe(III)],或者在实验室中对热液海水样品进行总铁分析。该方法的测量范围扩大到了高达2000μM,这与对与深海热液活动相关群落的化学环境研究相一致。最后,在中大西洋海岭热液喷口区域的ATOS航次中,使用化学分析仪Alchimist对该方法进行了原位应用。

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