Chem. J. Chinese Universities ›› 2014, Vol. 35 ›› Issue (7): 1403.doi: 10.7503/cjcu20140139

• Analytical Chemistry • Previous Articles     Next Articles

Rapid Measurement of Synthetic Pigments by Thermal Desorption-High Field Asymmetric Waveform Ion Mobility Spectrometry(FAIMS) Technology

LI Juan1, ZHAO Weijun1, LI Lingfeng2, LI Xin1, LI Peng3, WANG Xiaozhi2,*()   

  1. 1. Suzhou Weimu Intelligent System Ltd., Suzhou 215000, China
    2. Department of Information Science & Electronic Engineering, Zhejiang University, Hangzhou 310027, China
    3. Suzhou Industiral Technology Research Institute of Zhejiang University, Suzhou 215163, China
  • Received:2014-02-24 Online:2014-07-10 Published:2014-06-09
  • Contact: WANG Xiaozhi E-mail:xw224@zju.edu.cn

Abstract:

Field asymmetric ion mobility spectrometry(FAIMS) technique was introduced into the sensitive and rapid analysis of four synthetic pigments for the first time. The chrysoidin, malachite green, rhodamine B and methyl red were detected by a co-developed thermal desorption-FAIMS(TD-FAIMS) system. The ion characteristic signals of synthetic pigments were acquired under the optimized conditions with the injection temperature of 160 ℃ and the carrier gas flow rate of 1.6 L/min. Compensation voltage(CV) values with different modes were adopted for qualitative measurement. FAIMS detection signals in positive mode appeared at CV=0.41 and 0.89 V for chrysoidine and rhodamine B, respectively, while negative mode detection signals of methyl red and malachite green appeared at CV=0.67 and 0.02 V, respectively. Using external stan-dard method for quantitative measurement, the linear relationship(R2) was above 0.9967. The limits of detection(LOD) were 2.5—10 μg/L, and limits of quantification(LOQ) were 5—20 μg/L, respectively. The average recoveries were higher than 78.2% and the relative standard deviation(RSD) was less than 8.0%. This study laid a foundation for the application of FAIMS technique to rapid detection of synthetic pigments. The FAIMS instrument, which are highly sensitive, simple and fast responsive, demonstrated huge potential in the rapid analysis of synthetic pigments.

Key words: High-field asymmetric waveform ion mobility spectrometry(FAIMS), Synthetic pigment, Chrysoidin, Malachite green, Rhodamine B, Methyl red

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