Zhang Wang-Bing, Wei Min, Song Wei, Gong Yi-Xuan, Yang Xin-An
Department of Applied Chemistry, Anhui University of Technology , Maanshan, Anhui 243002, P. R. China.
Anhui Entry Exit Inspection and Quarantine Bureau , Hefei, Anhui 230022, P. R. China.
J Agric Food Chem. 2017 Nov 8;65(44):9799-9806. doi: 10.1021/acs.jafc.7b03357. Epub 2017 Oct 25.
In this paper, we first report the development of a highly sensitive and economical method for accurate analysis of pyridaben residues on fruits based on dual-frequency ultrasonic treatment (DFUT) and flow injection chemiluminescence (CL) detection. The DFUT device is made by integrating an ultrasonic bath with an ultrasonic probe. Two quartz glass coils (QGC) with different structures have been designed and applied to evaluate the function of DFUT in the detection process. Recorded data showed that DFUT is an effective method for improving the pyridaben CL signal. The signal of pyridaben in response to DFUT is 2.0-3.3 times stronger than the response to only the ultrasonic probe at 20 kHz or the ultrasonic bath at 40 kHz. In addition, the response obtained from the concentric circle QGC is 2.1 times stronger than the response to the spiral tube QGC. Under the optimized condition, the proposed method has advantages, such as a wide linear range (0.8-100.0 μg L), a high sensitivity (limit of detection of 0.085 μg L), and good stability (RSDs ≤ 4.7% in the linear range) for pyridaben determination. We apply this method to monitor the residue pyridaben on some fruits. The data show that the maximum amounts of the residue on fruit surfaces after soaking in water (50 mg L, 5 min) are 0.583 mg kg (apple), 0.794 mg kg (orange), and 0.351 mg kg (pear). However, the concentration of pyridaben in the presence of sunlight decreases rapidly, showing its poor light stability.
在本文中,我们首次报道了一种基于双频超声处理(DFUT)和流动注射化学发光(CL)检测的高灵敏度、经济的方法,用于准确分析水果中的哒螨灵残留。DFUT装置是通过将超声浴与超声探头集成而成。设计并应用了两种不同结构的石英玻璃线圈(QGC)来评估DFUT在检测过程中的作用。记录的数据表明,DFUT是提高哒螨灵CL信号的有效方法。在20kHz时,哒螨灵对DFUT的响应信号比仅对超声探头或40kHz超声浴的响应信号强2.0 - 3.3倍。此外,同心圆QGC获得的响应比螺旋管QGC的响应强2.1倍。在优化条件下,该方法具有线性范围宽(0.8 - 100.0μg/L)、灵敏度高(检测限为0.085μg/L)以及哒螨灵测定稳定性好(线性范围内相对标准偏差≤4.7%)等优点。我们将该方法应用于监测一些水果上的哒螨灵残留。数据表明,水果在水中浸泡(50mg/L,5分钟)后表面残留哒螨灵的最大量分别为:苹果0.583mg/kg、橙子0.794mg/kg、梨0.351mg/kg。然而,在阳光下哒螨灵的浓度会迅速降低,表明其光稳定性较差。