Article

High extraction efficiency for polar aromatic compounds in natural water samples using multiwalled carbon nanotubes/Nafion solid-phase microextraction coating

DOI:http://hdl.handle.net/2288/27140
Source: OAI

ABSTRACT A novel solid-phase microextraction (SPME) fiber coated with multiwalled carbon nanotubes (MWCNTs)/Nafion was developed and applied for the extraction of polar aromatic compounds (PACs) in natural water samples. The characteristics and the application of this fiber were investigated. Electron microscope photographs indicated that the MWCNTs/Nafion coating with average thickness of 12.5 mu m was homogeneous and porous. The MWCNTs/Nafion coated fiber exhibited higher extraction efficiency towards polar aromatic Compounds compared to an 85 mu m commercial PA fiber. SPME experimental conditions, such as fiber coating, extraction time, stirring rate, desorption temperature and desorption time, were optimized in order to improve the extraction efficiency. The calibration curves were linear from 0.01 to 10 mu g mL(-1) for five PACs studied except p-nitroaniline (from 0.005 to 10 mu g mL(-1)) and m-cresol (from 0.001 to 10 mu g mL(-1)), and detection limits were within the range of 0.03-0.57 ng mL(-1). Single fiber and fiber-to-fiber reproducibility were less than 7.5 (n = 7) and 10.0% (n = 5), respectively. The recovery of the PACs spiked in natural water samples at 1 mu g mL(-1) ranged from 83.3 to 106.0%. (C) 2009 Elsevier B.V. All rights reserved. National Basic Research Program of China [2010CB732402]; Science and Technology Projects of Fujian Province [2007Y0032]; National Natural Science Foundation of China [20775064]; NFFTBS [J0630429]

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Keywords

calibration curves
 
detection limits
 
extraction
 
extraction efficiency
 
extraction time
 
fiber coating
 
fiber exhibited higher extraction efficiency
 
multiwalled carbon nanotubes
 
MWCNTs/Nafion coating
 
National Basic Research Program
 
National Natural Science Foundation
 
natural water samples
 
novel solid-phase microextraction
 
p-nitroaniline
 
PACs
 
PACs spiked
 
polar aromatic Compounds
 
SPME
 
SPME experimental conditions
 
Technology Projects