Iqbal Mohammad Asif, Kim Ki-Hyun, Ahn Jeong Hyeon
Atmospheric Environment Laboratory, Department of Civil and Environmental Engineering, Hanyang University, 222 Wangsimni-ro, Seoul 133-791, Korea.
Sensors (Basel). 2014 Sep 29;14(10):18286-301. doi: 10.3390/s141018286.
To quantify the emission rate of monoterpenes (MTs) from diverse natural sources, the sorbent tube (ST)-thermal desorption (TD) method was employed to conduct the collection and subsequent detection of MTs by gas chromatography. The calibration of MTs, when made by both mass spectrometric (MS) and flame ionization detector (FID), consistently exhibited high coefficient of determination values (R2 > 0.99). This approach was employed to measure their emission rate from different fruit/plant/vegetable (F/P/V) samples with the aid of an impinger-based dynamic headspace sampling system. The results obtained from 10 samples (consisting of carrot, pine needle (P. sylvestris), tangerine, tangerine peel, strawberry, sepals of strawberry, plum, apple, apple peel, and orange juice) marked α-pinene, β-pinene, myrcene, α-terpinene, R-limonene, γ-terpinene, and p-cymene as the most common MTs. R-limonene was the major species emitted from citrus fruits and beverages with its abundance exceeding 90%. In contrast, α-pinene was the most abundant MT (37%) for carrot, while it was myrcene (31%) for pine needle. The overall results for F/P/V samples confirmed α-pinene, β-pinene, myrcene, α-terpinene, and γ-terpinene as common MTs. Nonetheless, the types and magnitude of MTs released from fruits were distinguished from those of vegetables and plants.
为了量化来自不同自然源的单萜烯(MTs)的排放速率,采用吸附管(ST)-热脱附(TD)方法通过气相色谱对MTs进行收集和后续检测。当通过质谱(MS)和火焰离子化检测器(FID)对MTs进行校准时,测定系数值(R2 > 0.99)始终很高。借助基于冲击器的动态顶空采样系统,采用这种方法测量了不同水果/植物/蔬菜(F/P/V)样品的排放速率。从10个样品(包括胡萝卜、松针(欧洲赤松)、橘子、橘子皮、草莓、草莓萼片、李子、苹果、苹果皮和橙汁)中获得的结果表明,α-蒎烯、β-蒎烯、月桂烯、α-萜品烯、R-柠檬烯、γ-萜品烯和对伞花烃是最常见的MTs。R-柠檬烯是柑橘类水果和饮料排放的主要成分,其含量超过90%。相比之下,α-蒎烯是胡萝卜中含量最高的MT(37%),而松针中含量最高的是月桂烯(31%)。F/P/V样品的总体结果证实,α-蒎烯、β-蒎烯、月桂烯、α-萜品烯和γ-萜品烯是常见的MTs。尽管如此,水果释放的MTs的类型和数量与蔬菜和植物有所不同。