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Headspace solid-phase microextraction-gas chromatography-quadrupole mass spectrometric methodology for the establishment of the volatile composition of Passiflora fruit species

机译:顶空固相微萃取-气相色谱-四极杆质谱法建立西番莲果实挥发性成分的建立

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摘要

Dynamic headspace solid-phase microextraction (HS-SPME) followed by thermal desorption gas chromatography-quadrupole mass spectrometry analysis (GC-qMS), was used to investigate the aroma profile of different species of passion fruit samples. The performance of five commercially available SPME fibres: 65 μm polydimethylsiloxane/divinylbenzene, PDMS/DVB; 100 μm polydimethylsiloxane, PDMS; 85 μm polyacrylate, PA; 50/30 μm divinylbenzene/carboxen on polydimethylsiloxane, DVB/CAR/PDMS (StableFlex); and 75 μm carboxen/polydimethylsiloxane, CAR/PDMS; was evaluated and compared. Several extraction times and temperature conditions were also tested to achieve optimum recovery. The SPME fibre coated with 65 μm PDMS/DVB afforded the highest extraction efficiency, when the samples were extracted at 50 °C for 40 min with a constant stirring velocity of 750 rpm, after saturating the sample with NaCl (17%, w/v — 0.2 g). A comparison among different passion fruit species has been established in terms of qualitative and semi-quantitative differences in volatile composition. By using the optimal extraction conditions and GC-qMS it was possible to tentatively identify seventy one different compounds in Passiflora species: 51 volatiles in Passiflora edulis Sims (purple passion fruit), 24 in P. edulis Sims f. flavicarpa (yellow passion fruit) and 21 compounds in Passiflora mollissima (banana passion fruit). It was found that the ethyl esters comprise the largest class of the passion fruit volatiles, including 82.8% in P. edulis variety, 77.4% in P. edulis Sims f. flavicarpa variety and 39.9% in P. mollissima.The semi-quantitative results were then submitted to principal component analysis (PCA) in order to establish relationships between the compounds and the different passion fruit species under investigation.
机译:动态顶空固相微萃取(HS-SPME),然后进行热脱附气相色谱-四极杆质谱分析(GC-qMS),用于研究不同种类百香果样品的香气特征。五种市售SPME纤维的性能:65μm聚二甲基硅氧烷/二乙烯基苯,PDMS / DVB; 100μm聚二甲基硅氧烷PDMS; 85μm聚丙烯酸酯,PA;聚二甲基硅氧烷上的50/30μm二乙烯基苯/羧基,DVB / CAR / PDMS(StableFlex);和75μm的羧酸/聚二甲基硅氧烷,CAR / PDMS;被评估和比较。还测试了几种萃取时间和温度条件,以实现最佳回收率。当样品以NaCl(17%,w / v)饱和后,在50°C下以750 rpm的恒定搅拌速度提取样品40分钟时,涂有65μmPDMS / DVB的SPME纤维提供了最高的提取效率。 — 0.2克)。已根据挥发成分的定性和半定量差异对不同百香果种类进行了比较。通过使用最佳提取条件和GC-qMS,可以初步鉴定西番莲物种中的71种不同化合物:西番莲(西番莲)(紫色百香果)中的51种挥发物,西番莲(P. edulis Sims)中的24种挥发物。黄花百香果(黄色百香果)和西番莲(香蕉百香果)中的21种化合物。已发现乙酯是百香果挥发物的最大类别,包括在食用假单胞菌品种中的82.8%,在食用假单胞菌Sims f中的77.4%。黄果变种和毛果假单胞菌中的39.9%,然后将半定量结果提交至主成分分析(PCA),以建立化合物与所研究的百香果种类之间的关系。

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