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Determination of linear aliphatic aldehydes in heavy metal containing waters by high-performance liquid chromatography using 2,4-dinitrophenylhydrazine derivatization
Journal article   Peer reviewed

Determination of linear aliphatic aldehydes in heavy metal containing waters by high-performance liquid chromatography using 2,4-dinitrophenylhydrazine derivatization

Yi-Liang Lin, Po-Yen Wang, Ling-Ling Hsieh, Kuan-Hsuan Ku, Yun-Tai Yeh and Chien-Hou Wu
Journal of Chromatography A, Vol.1216(36), pp.6377-6381
04/09/2009

Abstract

2,4-Dinitrophenylhydrazine Aldehyde Cupric ion Derivatization Heavy metal HPLC
A simple and sensitive method is described for the determination of picomolar amounts of C 1 -C 9 linear aliphatic aldehydes in waters containing heavy metal ions. In this method, aldehydes were first derivatized with 2,4-dinitrophenylhydrazine (DNPH) at optimized pH 1.8 for 30 min and analyzed by HPLC with UV detector at 365 nm. Factors affecting the derivatization reaction of aldehydes and DNPH were investigated. Cupric ion, an example of heavy metals, is a common oxidative reagent, which may oxidize DNPH and greatly interfere with the determination of aldehydes. EDTA was used to effectively mask the interferences by heavy metal ions. The method detection limits for direct injection of derivatized most aldehydes except formaldehyde were of the order of 7-28 nM. The detection limit can be further lowered by using off-line C 18 adsorption cartridge enrichment. The recoveries of C 1 -C 9 aldehydes were 93-115% with a relative standard deviation of 3.6-8.1% at the 0.1 μM level for aldehydes. The HPLC-DNPH method has been applied for determining aldehyde photoproducts from Cu(II)-amino acid complex systems. © 2009 Elsevier B.V. All rights reserved.

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