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·996· 精细化工 FINE CHEMICALS 第 37 卷
[8] LONG Dan (龙丹), LIU Xiaohui (刘晓辉), WU Hanyin (吴函殷), [24] YIN Qi (尹起), LIU Xiaoteng (刘晓滕), LI Hui (李辉). Preparation
et al. Utilization of bond aroma precursors in tea[J]. Food and of the graphene layer by layer bonded solid phase microextraction
Fermentation Industries (食品与发酵工业), 2016, 42(12): 120-124. fibers and determination of polycyclic aromatic hydrocarbons [J].
[9] CAO Guangqiu (曹光球), LIN Sizu (林思祖). Preliminary exploration Chinese Journal of Analysis Laboratory ( 分析 试验室 ), 2019,
on Litsea cubeba L. bioenergy resource and its comprehensive 39(3):298-302.
utilization in Fujian Province[J]. Biomass Chemical Engineering (生 [25] WANG Shengxin (王圣鑫), YU Aiming (余爱明), YAN Xiangli (闫
物质化学工程), 2006, 40(S1): 221-223. 向丽), et al. Analysis of volatilis components′ variation before and
[10] ZHANG Xiaomei (张晓梅). Spices and food culture in native after combination in angelica and ligusticum by headspace solid
minorities of Dehong[J]. Agricultural Science & Technology (农业科 phase microextraction gas chromatography-mass spectrometry[J/OL].
学与技术), 2015, 16(2): 380-383. Chinese Archives of Traditional Chinese Medicine (中华中医药学
[11] FAN Gang (范刚), WANG Kexing (王可兴), PAN Siyi (潘思轶). 刊), 2019, 1-14 [2020-02-15]. http://kns.cnki.net/kcms/detail/21.1546.
Advances in research of glycosidically bound aroma compounds in R.20191112.0959.002.html.
fruits[J]. Scientia Agricultura Sinica (中国农业科学), 2010, 43(24): [26] YANG Y N, ZHENG F P, YU A N, et al. Changes of the free and
5100-5111. bound volatile compounds in rubus corchorifolius L. f. fruit during
[12] SÁNCHEZ-PALOMO E, ALONSO-VILLEGAS R, GONZÁLEZ ripening[J]. Food Chemistry, 2019, 287: 232-240.
VIÑAS M A. Characterisation of free and glycosidically bound [27] SCHNEIDER R, RAZUNGLES A, AUGIER C, et al. Monoterpenic
aroma compounds of La Mancha Verdejo white wines[J]. Food and norisoprenoidic glycoconjugates of Vitis vinifera L. cv. Melon B.
Chemistry, 2015, 173(15): 1195-1202. as precursors of odorants in muscadet wines[J]. Journal of
[13] SARRY J E, GÜNATA Z. Plant and microbial glycoside hydrolases: Chromatography A, 2001, 936(1): 145-157.
Volatile release from glycosidic aroma precursors[J]. Food Chemistry, [28] JESúS I M, FERREIRA V, HERNáNDEZORTE P, et al.
2004, 87(4): 509-521. Optimization and evaluation of a procedure for the gas chromatographic-
[14] GAO J, WU B P, GAO L X, et al. Glycosidically bound volatiles as mass spectrometric analysis of the aromas generated by fast acid
affected by ripening stages of satsuma mandarin fruit[J]. Food hydrolysis of flavor precursors extracted from grapes[J]. Journal of
Chemistry, 2017, 240: 1097-1105. Chromatography A, 2006, 1116(1): 217-229.
[15] SKOUROUMOUNIS G K, SEFTON M A. Acid-catalyzed hydrolysis of [29] LIU Y R, WANG S Y, REN J, et al. Data on free and bound volatile
alcohols and their beta-D-glucopyranosides[J]. Agricultural Food compounds in six ribes nigrum L. blackcurrant cultivars[J]. Data in
Chemistry, 2000, 48(6): 2033-2039. Brief, 2018, 17: 926-937.
[16] SUN Aidong (孙爱东), GE Yiqiang (葛毅强), NI Yuanying (倪元 [30] ChERRI-MARTIN M, JULLIEN F, HEIZMANN P, et al. Fragrance
颖), et al. Analysis on the effect of enzymatic hydrolysis of the main heritability in Hybrid Tea roses[J]. Scientia Horticulturae, 2007,
aromatic substances in orange juice (peel) by different aroma 113(2):177-181.
enhancers[J]. Food and Fermentation Industries (食品与发酵工业), [31] SUN Lihong (孙立宏), SUN Liming (孙立明). Research progress of
2001, 27(11): 1-4. geraniol[J]. Northwest Pharmaceutical Journal (西北药学杂志),
[17] REN Jingnan (任婧楠), RONG Mao (荣茂), PENG Xun (彭勋), et 2009, 24(5): 428-430.
al. Acidic hydrolysis of bound aroma compounds in Raspberry [32] DZIADS M, JEL Eń, HENRYK H. Comparison of enzymatic and
juice[J]. Food Science (食品科学), 2013, 34(13): 101-104. acid hydrolysis of bound flavor compounds in model system and
[18] YANG Z Y, BALDERMANN S, WATANABE N. Recent studies of grapes[J]. Food Chemistry, 2016, 190(1): 412-418.
the volatile compounds in tea[J]. Food Research International, 2013, [33] WANG D, DUAN C Q, SHI Y, et al. Free and glycosidically bound
2(53): 585-599. volatile compounds in sun-dried raisins made from different
[19] ZHAO Dan (赵丹), YIN Jie (尹洁). Supercritical fluid extraction fragrance intensities grape varieties using a validated HS-SPME with
technology and its application[J]. Journal of Anhui Agricultural Sciences GC–MS method[J]. Food Chemistry, 2017, 228(1): 125-135.
(安徽农业科学), 2014, 42(15): 4772-4780. [34] WANG Houyin (汪厚银), LI Zhi (李志), ZHANG Jian (张剑), et al.
[20] ZHU Qi (朱旗), SHI Zhaopeng (施兆鹏), REN Chunmei (任春梅). Determination of characteristic aromatic components in Xihu
Changes of aroma of instant green tea during the process by vaccum Longjing tea by GC-MS and GC-Olfactometry[J]. Food Science (食
distillation extract[J]. Journal of Hunan Agricultural University (Natural 品科学), 2012, 33(8): 248-251.
Sciences) (湖南农业大学学报: 自然科学版), 2001, 27(3): 218-220. [35] LIU Ye (刘晔), GE Liqin (葛丽琴), WANG Yuanxing (王远兴).
[21] YANG Mengyun (杨梦云), ZHENG Fuping (郑福平), DUAN Yan Principal component analysis of volatile compounds in different
(段艳), et al. Analysis of volatiles in wild Chinese chive flowers by grades of Lu Mountain Clouds-Mist tea from three regions[J]. Food
solvent extraction/solvent-assisted flavor evaporation coupled with Science(食品科学), 2018, 39(10): 206-214.
gas chromatography-mass spectrometry[J]. Food Science (食品科 [36] YANG Caijing (杨彩静), CAO Renli (曹人郦), ZHAO Ying (赵颖),
学), 2011, 32(20): 211-216. et al. Simultaneous determination of the contents of 6 volatile components
[22] XIONG Maofu (熊茂富), REN Min (任敏), DU Yi (杜伊), et al. in Zhachong Shisan by GC[J]. China Pharmacy (中国药房), 2019,
Simultaneous determination of 12 chloroanisoles in lake reservoir 30(12): 1650-1654.
waters by headspace solid phase microextraction-gas chromatography- [37] BONNEAU A, BOULANGER R, LEBRUN M, et al. Aroma
mass spectrometry[J].Rock and Mineral Analysis (岩矿测试), 2019, compounds in fresh and dried mango fruit (Mangifera indica L. cv.
38(6): 724-733. Kent): impact of drying on volatile composition[J]. International
[23] WANG Xuemei (王雪梅), SUN Wenjia (孙文佳), LI Yalong (李亚 Journal of Food Science & Technology, 2016, 51(3): 789-800.
隆), et al. Quality analysis of different Pixian broad-bean paste from [38] ING H, MAKRA S. Characterization of the key aroma compounds in
different fresh pepper-producing areas [J/OL]. Food Science (食品科 pink guava (Psidium guajava L.) by means of aroma re-engineering
学), 2019,1-16 [2020-02-15]. http://kns.cnki.net/kcms/detail/11.2206. experiments and omission tests[J]. Journal of Agricultural & Food
TS.20190917.1756.131.html. Chemistry, 2009, 57(7): 2882-2888.