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使用2,4-二硝基苯肼浸渍硅胶柱和高效液相色谱法测定空气中的邻苯二甲醛

Determination of orthophthalaldehyde in air using 2,4-dinitrophenylhydrazine-impregnated silica cartridge and high-performance liquid chromatography.

作者信息

Uchiyama Shigehisa, Matsushima Erika, Tokunaga Hiroshi, Otsubo Yasufumi, Ando Masanori

机构信息

Faculty of Engineering, Chiba University 1-33, Yayoi-Cho, Inage-Ku, Chiba City, Chiba 263-8522, Japan.

出版信息

J Chromatogr A. 2006 May 26;1116(1-2):165-71. doi: 10.1016/j.chroma.2006.03.059. Epub 2006 Apr 4.

Abstract

A new method is described for the determination of orthophthalaldehyde in air which is used for the disinfection of various instruments (e.g. endoscopes) in hospital. Orthophthalaldehyde in air was collected with a silica gel cartridge impregnated with acidified 2,4-dinitrophenylhydrazine (DNPH-cartridge) and derivatives were analyzed by high-performance liquid chromatography (HPLC). In this study, the derivatization was examined by comparing the process with three phthalaldehyde isomers (ortho-, iso- and tere-). In the case of iso- and tere-phthalaldehyde, derivatives synthesized with excess of aldehyde consisted mainly of mono-derivatives, and derivatives synthesized with excess of DNPH consisted mainly of bis-derivative. In the case of orthophthalaldehyde, derivative consisted of only bis-derivative and mono-derivative was never observed under any conditions. Orthophthalaldehyde was completely retained by the DNPH-cartridge during air sampling, however, the derivatization reaction was incomplete and unreacted orthophthalaldehyde was flushed from the cartridge during the subsequent solvent extraction process. Unreacted orthophthalaldehyde and DNPH reacted again in the extraction solvent solution. Immediately after the solvent extraction, both mono- and bis-DNPhydrazone derivatives of orthophthalaldehyde were present in the solution. However, over time, the mono-derivative decreased and bis-derivative increased until only the bis-derivative was left allowing accurate determination of the orthophthalaldehyde concentration. The transformation of mono-derivative to bis-derivative was faster in polar aprotic solvents such as acetonitrile, dimethyl sulfoxide and ethyl acetate. Transformation was found to occur most quickly in acetonitrile solvent and was completed in 4 h in this case. It was possible to measure orthophthalaldehyde in air as bis-derivative using a DNPH impregnated silica cartridge and HPLC analysis.

摘要

本文描述了一种测定空气中邻苯二甲醛的新方法,该物质用于医院各种器械(如内窥镜)的消毒。空气中的邻苯二甲醛用浸渍有酸化2,4 -二硝基苯肼的硅胶柱(DNPH柱)收集,其衍生物通过高效液相色谱法(HPLC)进行分析。在本研究中,通过将该过程与三种邻苯二甲醛异构体(邻位、间位和对位)进行比较来研究衍生化反应。对于间苯二甲醛和对苯二甲醛,用过量醛合成的衍生物主要由单衍生物组成,而用过量DNPH合成的衍生物主要由双衍生物组成。对于邻苯二甲醛,其衍生物仅由双衍生物组成,在任何条件下均未观察到单衍生物。在空气采样过程中,邻苯二甲醛被DNPH柱完全保留,但衍生化反应不完全,未反应的邻苯二甲醛在随后的溶剂萃取过程中从柱中被冲洗出来。未反应的邻苯二甲醛和DNPH在萃取溶剂溶液中再次反应。溶剂萃取后立即,溶液中同时存在邻苯二甲醛的单DNP腙衍生物和双DNP腙衍生物。然而,随着时间的推移,单衍生物减少,双衍生物增加,直到只剩下双衍生物,从而可以准确测定邻苯二甲醛的浓度。在极性非质子溶剂如乙腈、二甲基亚砜和乙酸乙酯中,单衍生物向双衍生物的转化更快。发现在乙腈溶剂中转化最快,在这种情况下4小时内完成。使用浸渍有DNPH的硅胶柱和HPLC分析,可以将空气中的邻苯二甲醛作为双衍生物进行测定。

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