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利用经红外光谱分析的铁载体修饰薄膜测定大洋海水中亚纳摩尔级的铁浓度。

Determining subnanomolar iron concentrations in oceanic seawater using a siderophore-modified film analyzed by infrared spectroscopy.

作者信息

Roy Eric G, Jiang Cuihong, Wells Mark L, Tripp Carl

机构信息

School of Marine Sciences, University of Maine, Orono, Maine 04469, USA.

出版信息

Anal Chem. 2008 Jun 15;80(12):4689-95. doi: 10.1021/ac800356p.

Abstract

Iron is a bioactive trace element in seawater that regulates photosynthetic carbon dioxide drawdown and export from surface waters by phytoplankton in upward of 40% of the world's oceans. While autonomous sensor arrays are beginning to provide high-resolution data on temporal and spatial scales for some key oceanographic parameters, current analytical methods for iron are not amenable to autonomous platforms because of the need for user involvement and wet chemistry-based approaches. As a result, very large gaps remain in our understanding of iron distribution and chemistry in seawater. Here we present a straightforward nanostructure-based method to measure dissolved iron in natural seawater. The device comprises an iron-specific chelating biomolecule, desferrioxamine B (DFB), covalently immobilized on a mesoporous silica film. Changes in infrared spectral signatures of the immobilized DFB upon Fe(III) complexation provide an accurate and precise measure of iron on the surface of a chip exposed to seawater. The current system has a detection limit of approximately 50 pM for a 1-L sample at pH 1.7 and was used to measure dissolved iron in subarctic Pacific waters without interference from other elements in seawater. This technology provides a major step toward obtaining accurate iron measurements on autonomous research platforms.

摘要

铁是海水中一种具有生物活性的微量元素,在全球超过40%的海洋中,它能调节浮游植物对光合二氧化碳的吸收以及从表层水体中的输出。虽然自主传感器阵列开始为一些关键海洋学参数提供高分辨率的时空数据,但目前用于铁的分析方法由于需要用户参与且基于湿化学方法,不适合自主平台。因此,我们对海水中铁的分布和化学性质的理解仍存在很大差距。在此,我们提出一种基于纳米结构的简单方法来测量天然海水中的溶解铁。该装置包含一种铁特异性螯合生物分子——去铁胺B(DFB),它共价固定在介孔二氧化硅膜上。固定化的DFB与Fe(III)络合时红外光谱特征的变化,能准确精确地测量暴露于海水中芯片表面的铁含量。当前系统对1升pH值为1.7的样品的检测限约为50皮摩尔,并且用于测量亚北极太平洋水域的溶解铁,不受海水中其他元素的干扰。这项技术朝着在自主研究平台上获得准确的铁测量迈出了重要一步。

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