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葡萄冷藏时间对贮后货架期芳香物质的影响 被引量:15
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作者 张鹏 邵丹 +2 位作者 李江阔 颜廷才 陈绍慧 《食品科学》 EI CAS CSCD 北大核心 2016年第2期218-224,共7页
为明确冷藏时间对葡萄贮后货架期芳香物质的影响,以‘无核寒香蜜’葡萄为试材,运用顶空固相微萃取-气相色谱-质谱(head space solid-phase microextraction and gas chromatography mass spectrometry,HS-SPME-GCMS)联用技术检测冷藏15... 为明确冷藏时间对葡萄贮后货架期芳香物质的影响,以‘无核寒香蜜’葡萄为试材,运用顶空固相微萃取-气相色谱-质谱(head space solid-phase microextraction and gas chromatography mass spectrometry,HS-SPME-GCMS)联用技术检测冷藏15、45 d出库后常温货架期间(0、3、6 d)挥发性成分的变化,并采用电子鼻对不同冷藏期(15、30、45、60 d)出库后常温货架的果实进行判别分析。结果表明,葡萄的挥发性成分主要由酯类、醛类和醇类组成,主要挥发性成分为乙酸乙酯、青叶醛、正己醇、叶醇、香茅醇。冷藏45 d后常温货架期间酯类和醇类物质的相对含量均低于冷藏15 d同期果实,醛类物质则较高。电子鼻结果表明,通过线性判别分析可以有效区分不同冷藏期的葡萄,贮后货架期间,除冷藏15 d出库后0、3 d货架重叠外,其余冷藏期货架期间均互不重叠,即随着贮后常温货架的延长,葡萄中挥发性成分变化较大,电子鼻区分效果越加明显;负荷加载分析分析得出,W1W(硫化氢、萜烯类)、W1S(芳香成分)、W2S(乙醇)传感器对挥发性气味的贡献较大,与HS-SPME-GC-MS分析相佐证。因此,HS-SPME-GC-MS结合电子鼻对葡萄冷藏时间及贮后货架期的芳香物质判别具有可行性。 展开更多
关键词 葡萄 芳香物质 冷藏时间 货架时间 顶空固相微萃取-气相色谱-质谱联用技术 电子鼻
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Particulate organic carbon export fluxes on Chukchi Shelf,western Arctic Ocean,derived from ^(210)Po/^(210)Pb disequilibrium 被引量:1
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作者 何建华 余雯 +2 位作者 林武辉 门武 陈立奇 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2015年第3期741-747,共7页
Fluxes of particulate organic carbon (POC) were derived from ^210Po/^210Pb disequilibrium during the 4th Chinese National Arctic Research Expedition (CHINARE-4) from July 1 to September 28, 2010. Average residence... Fluxes of particulate organic carbon (POC) were derived from ^210Po/^210Pb disequilibrium during the 4th Chinese National Arctic Research Expedition (CHINARE-4) from July 1 to September 28, 2010. Average residence times of particulate ^210Po in the euphotic zone were -16.00 a to 1.54 a, which are higher than those of dissolved ^210^Po (-6.89 a to -0.70 a). Great excesses of dissolved ^210Po were observed at all stations, with an average 210^Po/^210^Pb ratio of 1.91±0.20, resulting from 210^Pb atmospheric deposition after sea ice melt. POC fluxes from the euphoric zone were estimated by two methods (E and B) in the irreversible scavenging model. Estimated POC fluxes were 945-126 mmol C/(m^2·a)and 1 848-109 mmol C/(m^2·a) by methods E and B, respectively, both decreasing from low to high latitude. The results are comparable to previous works for the same region, indicating efficient biological pumping in the Chukchi Sea. The results can improve understanding of the carbon cycle in the western Arctic Ocean. 展开更多
关键词 particulate organic carbon (POC) flux ^210Po/^210Pb disequilibrium Chukchi Shelf
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