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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Rapid and sensitive solid phase extraction-large volume injection-gas chromatography for the analysis of mineral oil saturated and aromatic hydrocarbons in cardboard and dried foods
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Rapid and sensitive solid phase extraction-large volume injection-gas chromatography for the analysis of mineral oil saturated and aromatic hydrocarbons in cardboard and dried foods

机译:快速灵敏的固相萃取-大体积进样气相色谱法分析纸板和干食品中的矿物油饱和烃和芳烃

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摘要

A rapid off-line solid phase extraction-large volume injection-gas chromatography-flame ionisation detection (SPE-LVI-GC-FID) method, based on the use of silver silica gel and low solvent consumption, was developed for mineral oil saturated hydrocarbon (MOSH) and mineral oil aromatic hydrocarbon (MOAH) determination in cardboard and dried foods packaged in cardboard. The SPE method was validated using LVI with a conventional on-column injector and the retention gap technique (which allowed to inject up to 50 μL of the sample). Detector response was linear over all the concentration range tested (0.5-250 μg/mL), recoveries were practically quantitative, repeatability was good (coefficients of variation lower than 7%) and limit of quantification adequate to quantify the envisioned limit of 0.15. mg/kg proposed in Germany for MOAH analysis in food samples packaged in recycled cardboard. Rapid heating of the GC oven allowed to increase sample throughput (3-4 samples per hour) and to enhance sensitivity. The proposed method was used for MOSH and MOAH determination in selected food samples usually commercialised in cardboard packaging. The most contaminated was a tea sample (102.2 and 7.9. mg/kg of MOSH and MOAH below n-C25, respectively), followed by a rice and a sugar powder sample, all packaged in recycled cardboard.
机译:基于银硅胶和低溶剂消耗的快速离线固相萃取-大体积进样-气相色谱-火焰电离检测(SPE-LVI-GC-FID)方法被开发用于矿物油饱和烃纸板和纸板包装的干食品中的(MOSH)和矿物油芳烃(MOAH)测定。使用LVI和常规的柱上进样器以及保留间隙技术(允许进样多达50μL样品)验证了SPE方法。在所有测试浓度范围(0.5-250μg/ mL)内,检测器响应均为线性,回收率实际上是定量的,重复性良好(变异系数低于7%),并且定量限足以量化预期的0.15。在德国建议用于回收纸板包装食品样品中的MOAH分析的mg / kg。快速加热GC柱箱可以提高样品通量(每小时3-4个样品)并提高灵敏度。拟议的方法用于通常在纸板包装中商业化的某些食品样品中的MOSH和MOAH测定。污染最严重的是茶样品(低于n-C25的MOSH和MOAH分别为102.2和7.9。mg / kg),其次是大米和糖粉样品,均包装在再生纸板中。

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