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High resolution gas chromatography-selective odorant measurement by multisensor array-a useful technique to develop tailor-made chemosensor arrays for food flavor analysis

机译:通过多传感器阵列进行高分辨率气相色谱-选择性增香剂测量-开发用于食品风味分析的量身定制的化学传感器阵列的有用技术

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A technique combining a chemosensor array with high resolution gas chromatography (HRGC/SOMMSA) was used to systematically study the responses of several experimental and commercial chemosensors (metal oxides, surface acoustic wave devices, phthalocyanine sensors) to a number of selected food volatiles or aroma compounds. It was shown tht the temperatures and the dopants used significantly influence the sensitivity and/or selectivity of the chemosensors. For example, a ZnO/Pt sensor, when operated at 300 deg C, was able to selectively detect the key bread crust odorant 2-acetyl-1-pyrroline. A copper phthalocyanine sensor selectively detected (E)-2-nonenal and (E,E)-2,4-decadienal in mixtures with several pyrazines. Based on such model studies, a portable sensor array was constructed which was able to detect degree of roasting, e.g., of toasted bread slices. A combination of Headspace-HRGC with the SOMMSA technique is proposed as useful approach to develop chemosensor arrays adapted to special targets in flavor control, based on quantitative correlations of key odorants with indicator volatiles.
机译:化学传感器阵列与高分辨率气相色谱仪(HRGC / SOMMSA)结合使用的技术用于系统地研究几种实验和商业化学传感器(金属氧化物,表面声波装置,酞菁传感器)对多种选定食品挥发物或香气的响应化合物。结果表明温度和所使用的掺杂剂显着影响化学传感器的灵敏度和/或选择性。例如,ZnO / Pt传感器在300摄氏度下运行时,能够选择性地检测出关键的面包皮气味剂2-乙酰基-1-吡咯啉。铜酞菁传感器可选择性检测几种吡嗪混合物中的(E)-2-壬烯醛和(E,E)-2,4-癸二烯醛。基于这样的模型研究,构造了便携式传感器阵列,其能够检测例如烤面包切片的烘烤程度。提出了将顶空-HRGC与SOMMSA技术相结合的一种有用方法,该方法可根据关键气味剂与指示剂挥发物的定量相关性,开发出适合于风味控制中特殊目标的化学传感器阵列。

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