Journal of Analytical Sciences, Methods and Instrumentation

Volume 7, Issue 1 (March 2017)

ISSN Print: 2164-2745   ISSN Online: 2164-2753

Google-based Impact Factor: 0.42  Citations  

Simple HPLC–UV Analysis of Phenol and Its Related Compounds in Tap Water after Pre-Column Derivatization with 4-Nitrobenzoyl Chloride

HTML  XML Download Download as PDF (Size: 1210KB)  PP. 18-28  
DOI: 10.4236/jasmi.2017.71002    2,068 Downloads   6,712 Views  Citations
Author(s)

ABSTRACT

The purpose of this study is to develop an HPLC-UV (280 nm) method for simultaneous determination of phenol, five chlorophenols (2-chlorophenol, 4-chlorophenol, 2,4-dichlorophenol, 2,6-dichlorophenol, and 2,4,6-trichlorophenol), and three phenylphenols (2-phenylphenol, 3-phenylphenol, and 4-phenylphenol) in tap water after pre-column derivatization with 4-nitrobenzoyl chloride. Standard curves were obtained after derivatization with 4-nitrobenzoyl chloride in borate buffer (pH 8.5) at 50°C for 1 min. The nine 4-nitrobenzoyl derivatives were well separated in less than 15 min on a Cholester column. Calibration plots were linear in the range of 0.02 ~ 0.12 to 0.9 mg/L, with r2 values ≥0.9928, for all compounds. The lower limits of detection were 0.006 to 0.05 mg/L. The coefficients of variation were less than 12.0%. The recovery values from tap water spiked with a standard mixture of test compounds were satisfactory. While the levels of phenol, five chlorophenols, and three phenylphenols in tap water were below the lower limit of determination, our method is expected to be useful for monitoring and/or identifying environmental water samples that are contaminated with these compounds, i.e., for assessing compliance with the official guidelines of the World Health Organization.

Share and Cite:

Higashi, Y. (2017) Simple HPLC–UV Analysis of Phenol and Its Related Compounds in Tap Water after Pre-Column Derivatization with 4-Nitrobenzoyl Chloride. Journal of Analytical Sciences, Methods and Instrumentation, 7, 18-28. doi: 10.4236/jasmi.2017.71002.

Cited by

[1] Voltametrické stanovení kyseliny 2, 4-dichlorfenoxyoctové a 2, 4-dichlorfenolu na sítotiskové uhlíkové elektrodě
2022
[2] РАЗРАБОТКА МЕТОДИКИ ОПРЕДЕЛЕНИЯ М-КРЕЗОЛА И ФЕНОЛА В ПРЕПАРАТЕ ИНЪЕКЦИОННОГО ИНСУЛИНА
Журнал химии товаров …, 2022
[3] ГАЗОХРОМАТОГРАФИЧЕСКОЕ ОПРЕДЕЛЕНИЕ ФЕНОЛОВ В СТОЧНЫХ ВОДАХ ПРОМЫШЛЕННЫХ ПРОИЗВОДСТВ
… молодых ученых БГТУ им. ВГ Шухова …, 2022
[4] ОПРЕДЕЛЕНИЕ ФЕНОЛОВ В ПОВЕРХНОСТНЫХ ВОДАХ БАССЕЙНА РЕКИ ВОЛГА
… окружающей среды в …, 2021
[5] Modification of Carbon Paste Electrode with Ag Nanoparticle for Voltammetric Determination of Phenol
2020
[6] RP–HPLC method for the determination of removal phenol as a pollutant in aqueous solution.
2020
[7] RP–HPLC method for the determination of removal phenol as a pollutant in aqueous solution
2020
[8] Газохроматографическое определение фенолов в поверхностных водах с использованием полиоксиэтилен бис арсената
2020
[9] The adsorptive properties of oxidized activated carbons and their applications as carbon paste electrode modifiers
2019
[10] Simple and rapid liquid chromatographic and electrophoretic methods for phenol quantification and its stability in tuberculin purified protein derivative preparations
2019
[11] Preconcentration and Fluorimetric Determination of 2-Phenylphenol using Magnetic Molecularly Imprinted Polymer

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.