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Coupling of ionic liquid-based headspace single-drop microextraction with GC for sensitive detection of phenols.
J Sep Sci. 2008 Sep; 31(16-17):3045-9.JS

Abstract

A headspace single-drop microextraction (SDME) based on ionic liquid (IL) has been developed for the gas chromatographic determination of phenols. The volume of IL microdrop used was 1 microL. After extraction, the analytes were desorbed from the drop in the injection port and the involatile IL was withdrawn into the microsyringe. To facilitate the withdrawal of IL the upper diameter of the split inlet liner was enlarged to some extent. Some parameters were optimized for the determination of phenols. Under the selected conditions, i.e., desorption for 100 s at 210 degrees C after extraction for 25 min at 50 degrees C in solutions (pH 3) containing 0.36 g/mL sodium chloride, the LODs, RSDs, and the average enrichment factors of phenols were 0.1-0.4 ng/mL, 3.6-9.5% (n=5), and 35-794, respectively. The proposed procedure was applied to the determination of phenols in lake water and wastewater samples, and the spiked recoveries were in the range of 81-111% at a spiked level of 0.4 microg/mL. This method is a promising alternative for the sensitive determination of phenolic compounds.

Authors+Show Affiliations

Department of Chemistry, Wuhan University, Wuhan, P. R. China. fqzhao@whu.edu.cnNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article

Language

eng

PubMed ID

18704999

Citation

Zhao, Fa-Qiong, et al. "Coupling of Ionic Liquid-based Headspace Single-drop Microextraction With GC for Sensitive Detection of Phenols." Journal of Separation Science, vol. 31, no. 16-17, 2008, pp. 3045-9.
Zhao FQ, Li J, Zeng BZ. Coupling of ionic liquid-based headspace single-drop microextraction with GC for sensitive detection of phenols. J Sep Sci. 2008;31(16-17):3045-9.
Zhao, F. Q., Li, J., & Zeng, B. Z. (2008). Coupling of ionic liquid-based headspace single-drop microextraction with GC for sensitive detection of phenols. Journal of Separation Science, 31(16-17), 3045-9. https://doi.org/10.1002/jssc.200800308
Zhao FQ, Li J, Zeng BZ. Coupling of Ionic Liquid-based Headspace Single-drop Microextraction With GC for Sensitive Detection of Phenols. J Sep Sci. 2008;31(16-17):3045-9. PubMed PMID: 18704999.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Coupling of ionic liquid-based headspace single-drop microextraction with GC for sensitive detection of phenols. AU - Zhao,Fa-Qiong, AU - Li,Jing, AU - Zeng,Bai-Zhao, PY - 2008/8/16/pubmed PY - 2008/12/20/medline PY - 2008/8/16/entrez SP - 3045 EP - 9 JF - Journal of separation science JO - J Sep Sci VL - 31 IS - 16-17 N2 - A headspace single-drop microextraction (SDME) based on ionic liquid (IL) has been developed for the gas chromatographic determination of phenols. The volume of IL microdrop used was 1 microL. After extraction, the analytes were desorbed from the drop in the injection port and the involatile IL was withdrawn into the microsyringe. To facilitate the withdrawal of IL the upper diameter of the split inlet liner was enlarged to some extent. Some parameters were optimized for the determination of phenols. Under the selected conditions, i.e., desorption for 100 s at 210 degrees C after extraction for 25 min at 50 degrees C in solutions (pH 3) containing 0.36 g/mL sodium chloride, the LODs, RSDs, and the average enrichment factors of phenols were 0.1-0.4 ng/mL, 3.6-9.5% (n=5), and 35-794, respectively. The proposed procedure was applied to the determination of phenols in lake water and wastewater samples, and the spiked recoveries were in the range of 81-111% at a spiked level of 0.4 microg/mL. This method is a promising alternative for the sensitive determination of phenolic compounds. SN - 1615-9314 UR - https://www.unboundmedicine.com/medline/citation/18704999/Coupling_of_ionic_liquid_based_headspace_single_drop_microextraction_with_GC_for_sensitive_detection_of_phenols_ L2 - https://doi.org/10.1002/jssc.200800308 DB - PRIME DP - Unbound Medicine ER -