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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Off-line high-performance liquid chromatography and solid-phase extraction clean-up for confirmation of pesticide residues in fresh produce by gas chromatography-mass spectrometry
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Off-line high-performance liquid chromatography and solid-phase extraction clean-up for confirmation of pesticide residues in fresh produce by gas chromatography-mass spectrometry

机译:离线高效液相色谱和固相萃取净化,通过气相色谱-质谱法确定新鲜农产品中的农药残留

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摘要

GC-MS or GC-IT in conjunction with the GC-ECD, GC-FPD and HPLC Post-Column Derivatization for multiresidue scan analyses is a great complementary instrument for identification or confirmation purposes. However, MS in El mode serves as a non-selectivedetector that is easily susceptible to interference by produce matrices in trace level residue analysis. The development of an effective clean-up method is essential. In this research, a combination of HPLC/C_(18) and SPE/Florisil clean-up methods were used to reduce matrices in 10 commodities. Using the PBM system, the reference spectra of the computerized Anaheim data base were fingerprint matched to the fortified residues at the 50 ppb level. For most commodities, the PBM quality value was above 90%with the exception of whole oranges. The study demonstrates that the produce matrix of individual commodities varies considerably. The method met difficulties in the analysis of citrus due to the citrus peels. Although the method is commodity dependent,the clean-up procedure has reduced matrix interference in most cases. Efficiency is approximately in a range of 10 to 10~6 times, thus the method is effective in confirming trace level pesticide residues in fresh produce.
机译:用于多残留扫描分析的GC-MS或GC-IT与GC-ECD,GC-FPD和HPLC后柱衍生化技术是用于鉴定或确认的绝佳补充工具。然而,处于El模式的MS用作非选择性检测器,在痕量残留分析中很容易受到生成矩阵的干扰。开发有效的清除方法至关重要。在这项研究中,使用HPLC / C_(18)和SPE / Florisil净化方法的组合来减少10种商品中的基质。使用PBM系统,将计算机化的阿纳海姆数据库的参考光谱与50 ppb水平的强化残留物进行指纹匹配。对于大多数商品,PBM质量值(整个橙子除外)均高于90%。研究表明,单个商品的生产矩阵差异很大。由于柑桔皮的存在,该方法在柑桔分析中遇到了困难。尽管该方法依赖于商品,但在大多数情况下,清理程序可减少基质干扰。效率约为10到10〜6倍,因此该方法可有效地确定新鲜农产品中的痕量农药残留。

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