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Optimization of headspace solid-phase microextraction conditions to determine fruity-aroma compounds produced by Neurospora sitophila

机译:优化顶空固相微萃取条件以确定果蝇神经孢菌产生的果香化合物

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摘要

The biotechnological production of aromatic compounds is an important alternative to the chemical synthesis of flavor ingredients in food industry. Therefore, the development of an accurate and precise analytical technique for the measurement of the biotechnological production of aromatic compounds is of significant importance. In this paper, we optimize the extraction conditions for headspace solid-phase microextraction coupled to GC-FID and GC-MS for the determination of ethyl hexanoate produced by Neurospora sitophila in a malt-extract medium. Following three SPME fibers were tested potydimethylsiloxane (PDMS), carboxen-polydimethylsiloxane (CAR/PDMS) and polydimethylsiloxane-divinylbenzene (PDMS/DVB). The PDMS/DVB was the most efficient fiber for trapping the volatile-aromatic compound. The optimized SPME extraction temperature and time were 30 °C and 10 min respectively. This method showed good linearity and the limits of detection (LOD) and limits of quantification (LOQ) of the targeted aromatic compound were 0.6 and 1.9 mg L~(-1), respectively. The HS-SPME methodology proved to be a simple and rapid approach to quantify ethyl hexanoate accurately and precisely for the biotechnological production process.
机译:芳香族化合物的生物技术生产是食品工业中香料成分化学合成的重要替代方法。因此,开发用于测量芳族化合物的生物技术生产的准确和精确的分析技术具有重要意义。在本文中,我们优化了与GC-FID和GC-MS联用的顶空固相微萃取的提取条件,用于测定麦芽提取液中嗜水神经孢菌产生的己酸乙酯。在测试了三支SPME纤维之后,测试了二甲基硅氧烷(PDMS),羧基-聚二甲基硅氧烷(CAR / PDMS)和聚二甲基硅氧烷-二乙烯基苯(PDMS / DVB)。 PDMS / DVB是捕获挥发性芳族化合物的最有效纤维。优化的SPME提取温度和时间分别为30°C和10分钟。该方法具有良好的线性,目标芳香族化合物的检出限(LOD)和定量限(LOQ)分别为0.6和1.9 mg L〜(-1)。 HS-SPME方法论被证明是一种简单而快速的方法,可以为生物技术生产过程准确而精确地定量己酸乙酯。

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