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首页> 外文期刊>ACS Omega >Rapid and Nondestructive Detection of Pesticide Residues by Depth-Profiling Fourier Transform Infrared Photoacoustic Spectroscopy
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Rapid and Nondestructive Detection of Pesticide Residues by Depth-Profiling Fourier Transform Infrared Photoacoustic Spectroscopy

机译:深度分布傅里叶变换红外光声光谱技术快速无损检测农药残留

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摘要

Detection of pesticide residues is important for ensuring food safety, and it has assumed increased significance. Traditional analytical methods are known for being destructive and cost- and time-intensive. In this study, depth-profiling Fourier transform infrared photoacoustic spectroscopy (FTIR-PAS) was successfully used as an in situ, nondestructive, and rapid method for detecting tricyclazole residues on three metal surfaces (copper, aluminum, and iron) and subsequently, on the surfaces of fresh rice leaves and ripe husks. Four moving mirror velocities, that is, 0.32, 0.63, 0.95, and 1.90 cm s~(–1) were used for recording the spectra. The results indicated that the moving mirror velocity of 0.95 cm s~(–1) was optimal for depth profiling, and the obtained spectra showed a strong absorption band at around 1200 cm~(–1), corresponding to the C–N bond in tricyclazole. This band could be used for monitoring tricyclazole residues on plant surfaces. Principal component analysis confirmed the detection of tricyclazole on the basis of its spectral information. Considering the scanning depth and the thickness of the plant cuticle, FTIR-PAS can be an effective means for detecting and monitoring similar organonitrogen pesticide residues.
机译:农药残留的检测对于确保食品安全非常重要,并且其重要性日益增加。传统的分析方法具有破坏性,成本和时间密集的特点。在这项研究中,深度分析傅里叶变换红外光声光谱(FTIR-PAS)成功地用作一种原位,无损,快速的方法,用于检测三个金属表面(铜,铝和铁)上的三环唑残留物,随后用于新鲜稻叶和成熟果壳的表面。使用四个运动镜速度,即0.32、0.63、0.95和1.90 cm s〜(-1)记录光谱。结果表明,0.95 cm s〜(–1)的移动镜速度最适合深度剖析,并且所获得的光谱在1200 cm〜(–1)左右具有很强的吸收带,对应于C–N键。三环唑。该谱带可用于监测植物表面的三环唑残留。主成分分析证实了三环唑基于其光谱信息的检测。考虑到植物表皮的扫描深度和厚度,FTIR-PAS可以成为检测和监测类似有机氮农药残留的有效手段。

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