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  1. NTU Theses and Dissertations Repository
  2. 生物資源暨農學院
  3. 森林環境暨資源學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/78464
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor張上鎮(Shang-Tzen Chang)
dc.contributor.authorTing-Kuang Changen
dc.contributor.author張廷光zh_TW
dc.date.accessioned2021-07-11T14:58:26Z-
dc.date.available2025-01-21
dc.date.copyright2020-01-21
dc.date.issued2020
dc.date.submitted2020-01-17
dc.identifier.citation林群雅、鄭森松、張上鎮(2015a)風箱樹花釋出之揮發化合物及其香味活性成分解析。台灣農學會報16(4):293-310。
林群雅、劉怡秀、陳育涵、張資正、陳盈如、鄭森松、張上鎮(2015b)臺灣紅檜葉子BVOCs之動態釋出速率及其釋出量之估算。中華林學季刊48(1):55-70。
林群雅、張上鎮(2016)苦楝樹花香味成分及其釋出量變化之研究。中華林學季刊49(2):177-188。
林群雅、何政坤、許原瑞、張上鎮(2016)利用頂空氣相層析法預測伽羅木醇型土肉桂葉子精油化學組成分。中華林學季刊49(2):151-164。
林群雅、陳育涵、張上鎮(2017)野薑花揮發成分於空氣中濃度之研究。台灣農學會報18(1):1-14。
洪聖峰、何政坤、林欣德(2014)芳樟醇型土肉桂嫁接及扦插之初步成活表現。臺灣大學生物資源暨農學院實驗林研究報告28(2):109-121。
陳品方、張上鎮、吳懷慧(2002)土肉桂葉精油及其成分之抗螨活性。中華林學季刊35(4):397-403。
胡大維、林耀堂、何政坤(1985)台灣土肉桂葉子精油化學成分之天然變異。中華民國農學團體七十四年度聯合年會特刊45-62。
許雅青、吳季玲、張惠婷、張上鎮(2007)樟屬植物葉精油及其成分應用於防黴紙之研製。中華林學季刊40(3):391-404。
鄭秉和、張育銘、黃玲瓏、張上鎮(2013)葉片解剖學特徵對伽羅木醇型土肉桂葉子精油萃取速率影響之探討。中華林學季刊46(4):521-530。
鄭森松、林群雅、王亞男、許原瑞、張上鎮(2008)臺灣土肉桂種源庫之設置-葉子精油成分與化學多態性分析。臺灣大學生物資源暨農學院實驗林研究報告22(1):21-34。
劉如芸、曹雋偉、鄭森松、許原瑞、張上鎮(2004)萃取時間及次數對土肉桂葉子精油成分及其抗腐朽活性的影響。中華林學季刊37(4):445-452。
劉如芸、鄭森松、蕭英倫、張上鎮(2006)樟屬植物葉子精油對竹林天狗巢病原菌抑制效果之評估。中華林學季刊9(3):377-388。
劉紹培、洪福良、彭錦樵、李仰修(2008)不同乾燥方式對土肉桂葉乾燥及抗氧化特性之影響。台灣農學會報9(4):361-379。
Adams, R. P. (2007) Identification of Essential Oil Components by Gas Chromatography/Mass Spectrometry. 4th ed. Allured Pub. Corp., Illinois. 804 pp.
Aprotosoaie, A. C., M. Hăncianu, I. I. Costache and A. Miron (2014) Linalool: a review on a key odorant molecule with valuable biological properties. Flavour Frag. J. 29(4): 193-219.
Arabhosseini, A., S. Padhye, T. A. van Beek, A. J. B. van Boxtel, W. Huisman, M. A. Posthumus and J. Müller (2006) Loss of essential oil of tarragon (Artemisia dracunculus L.) due to drying. J. Sci. Food Agric. 86(15): 2543-2550.
Argyropoulos, D. and J. Müller (2014) Changes of essential oil content and composition during convective drying of lemon balm (Melissa officinalis L.). Ind. Crops Prod. 52: 118-124.
Asgharian, P., F. H. Afshar, S. Asnaashari, S. B. Moghaddam and A. Delazar (2016) The seasonal variations of the chemical composition of essential oil obtained from Scrophularia frigida. Jundishapur J. Nat. Pharm. Prod. 11(1): UNSP e29742.
Assami, K., D. Pingret, S. Chemat, B. Y. Meklati and F. Chemat (2012) Ultrasound induced intensification and selective extraction of essential oil from Carum carvi L. seeds. Chem. Eng. Process. 62: 99-105.
Babu, A. K., G. Kumaresan, V. A. A. Raj and R. Velraj (2018) Review of leaf drying: mechanism and influencing parameters, drying methods, nutrient preservation, and mathematical models. Renew. Sust. Energ. Rev. 90: 536-556.
Badalamenti, F. (2004) Proceedings of the IFEAT International Conference. The Essential Oils of the Mediterranean Region. In C. Green, ed. International Federation of Essential Oil and Aroma Trades (IFEAT), London. pp. 77-97.
Baker, G. R., J. C. Doran, E. R. Williams and I. A. Southwell (2007) Breeding and cloning tea tree for greater profitability (2001-2006). RIRDC publication No. 07/142. RIRDC, Canberra. 50 pp.
Bang, J. H. and K. S. Suslick (2010) Applications of ultrasound to the synthesis of nanostructured materials. Adv. Mater. 22(10): 1039-1059.
Baritaux, O., H. Richard, J. Touche and M. Derbesy (1992) Effects of drying and storage of herbs and spices on the essential oil. Part I. Basil, Ocimum basilicum L. Flavour Frag. J. 7(5): 267-271.
Bruno, T. J. (2009) Simple, quantitative headspace analysis by cryoadsorption on a short alumina PLOT column. J. Chromatogr. Sci. 47(7): 569-574.
Bousbia, N., M. A. Vian, M. A. Ferhat, B. Y. Meklati and F. Chemat (2009) A new process for extraction of essential oil from Citrus peels: microwave hydrodiffusion and gravity. J. Food Eng. 90(3): 409-413.
Buckle, J. (2015) The evolution of aromatherapy. 3rd ed. Clinical Aromatherapy: Essential Oils in Healthcare. Elsevier, Edinburgh. pp. 2-14.
Casabianca, H., J. B. Graff, V. Faugier and F. Fleig (1998) Enantiomeric distribution studies of linalool and linalyl acetate - a powerful tool for authenticity control of essential oils. HRC-J. High Resolut. Chromatogr. 21(2): 107-112.
Calín-Sánchez, Á., A. Szumny, A. Figiel, K. Jałoszyński, M. Adamski and Á. A. Carbonell-Barrachina (2011) Effects of vacuum level and microwave power on rosemary volatile composition during vacuum-microwave drying. J. Food Eng. 103(2): 219-227.
Chaintreau, A. (2001) Simultaneous distillation-extraction: from birth to maturity - review. Flavour Frag. J. 16(2): 136-148.
Chang, C. W., W. L. Chang, S. T. Chang and S. S. Cheng (2008) Antibacterial activities of plant essential oils against Legionella pneumophila. Water Res. 42(1-2): 278-286.
Chang, S. T., P. F. Chen and S. C. Chang (2001) Antibacterial activity of leaf essential oils and their constituents from Cinnamomum osmophloeum. J. Ethnopharmacol. 77(1): 123-127.
Chang, S. T. and S. S. Cheng (2002) Antitermitic activity of leaf essential oils and components from Cinnamomum osmophleum. J. Agric. Food Chem. 50(6): 1389-1392.
Chantraine, J. M., J. M. Dhenin and C. Moretti (2009) Chemical variability of rosewood (Aniba rosaeodora Ducke) essential oil in French Guiana. J. Essent. Oil Res. 21(6): 486-495.
Chemat, F., N. Rombaut, A. G. Sicaire, A. Meullemiestre, A. S. Fabiano-Tixier and M. Abert-Vian (2017) Ultrasound assisted extraction of food and natural products. Mechanisms, techniques, combinations, protocols and applications. A review. Ultrason. Sonochem. 34: 540-560.
Chemat, S., A. Lagha, H. AitAmar, P. V. Bartels and F. Chemat (2004) Comparison of conventional and ultrasound-assisted extraction of carvone and limonene from caraway seeds. Flavour Frag. J. 19(3): 188-195.
Cheng, B. H., C. Y. Lin, T. F. Yeh, S. S. Cheng and S. T. Chang (2012) Potential source of S-(+)-linalool from Cinnamomum osmophloeum ct. linalool leaf: essential oil profile and enantiomeric purity. J. Agric. Food Chem. 60(31): 7623-7628.
Cheng, B. H., L. Y. Sheen and S. T. Chang (2015) Evaluation of anxiolytic potency of essential oil and S-(+)-linalool from Cinnamomum osmophloeum ct. linalool leaves in mice. J. Tradit. Complement Med. 5(1): 27-34.
Cheng, B. H., L. Y. Sheen and S. T. Chang (2018) Hypolipidemic effects of S-(+)-linalool and essential oil from Cinnamomum osmophloeum ct. linalool leaves in mice. J. Tradit. Complement Med. 8(1): 46-52.
Cheng, S. S., J. Y. Liu, K. H. Tsai, W. J. Chen and S. T. Chang (2004) Chemical composition and mosquito larvicidal activity of essential oils from leaves of different Cinnamomum osmophloeum provenances. J. Agric. Food Chem. 52(14): 4395-4400.
Cheng, S. S., J. Y. Lin, C. Y. Lin, Y. R. Hsui, M. C. Lu, W. J. Wu and S. T. Chang (2008) Terminating red imported fire ants using Cinnamomum osmophloeum leaf essential oil. Bioresour. Technol. 99(4): 889-893.
Cheng, S. S., C. Y. Lin, M. J. Chung, Y. J. Chen and S. T. Chang (2019) Potential source of environmentally benign antifungal agents from Cinnamomum osmophloeum leaves against Phellinus noxius. Plant Prot. Sci. 55(1): 43-53.
Chioca, L. R., V. D. C. Antunes, M. M. Ferro, E. M. Losso and R. Andreatini (2013) Anosmia does not impair the anxiolytic-like effect of lavender essential oil inhalation in mice. Life Sci. 92(20-21): 971-975.
Chua, M. T., Y. T. Tung and S. T. Chang (2008) Antioxidant activities of ethanolic extracts from the twigs of Cinnamomum osmophloeum. Bioresour. Technol. 99(6): 1918-1925.
Chuvieco, E., M. Deshayes, N. Stach, D. Cocero, and Rianõ (1999) Short-term fire risk: foliage moisture content estimation from satellite data. In E. Chuvieco, ed. Remote Sensing of Large Wildfires in the European Mediterranean Basin. Springer, Berlin. pp. 17-38.
CIE Colorimetry Committee (1974). Technical notes: working program on colour differences. J. Opt. Soc. Am. 64(6): 896-897.
Cohen, A. J. (1979) Critical review of the toxicology of coumarin with special reference to interspecies differences in metabolism and hepatotoxic response and their significance to man. Food Chem. Toxicol. 17(3): 277-289.
Dalla Nora, F. M. and C. D. Borges (2017) Ultrasound pretreatment as an alternative to improve essential oils extraction. Cienc. Rural 47(9): e20170173.
Demir, V., T. Gunhan, A. K. Yagcioglu and A. Degirmencioglu (2004) Mathematical modelling and the determination of some quality parameters of air-dried bay leaves. Biosyst. Eng. 88(3): 325-335.
Dey, B. B. and M. A. Choudhuri (1983) Effect of leaf development stage on changes in essential oil of Ocimum sanctum L. Biochem. Physiol. Pflanz. 178(5): 331-335.
Díaz-Maroto, M. C., E. S. Palomo, L. Castro, M. A. G. Viñas and M. S. Pérez-Coello (2004) Changes produced in the aroma compounds and structural integrity of basil (Ocimum basilicum L.) during drying. J. Sci. Food Agric. 84(15): 2070-2076.
Díaz-Maroto, M. C., E. A. Pardo, N. Castillo-Muñoz, I. J. Díaz-Maroto and M. S. Pérez-Coello (2009) Effect of storage conditions on volatile composition of dried rosemary (Rosmarinus officinalis L.) leaves. Flavour Frag. J. 24(5): 245-250.
Díaz-Maroto, M. C., M. S. Pérez-Coello and M. D. Cabezudo (2002) Effect of drying method on the volatiles in bay leaf (Laurus nobilis L.). J. Agric. Food Chem. 50(16): 4520-4524.
Ebadi, M. T., F. Sefidkon, M. Azizi and N. Ahmadi (2017) Packaging methods and storage duration affect essential oil content and composition of lemon verbena (Lippia citriodora Kunth.). Food Sci. Nutr. 5(3): 588-595.
Ellouze, I., M. Abderrabba, N. Sabaou, F. Mathieu, A. Lebrihi and J. Bouajila (2012) Season's variation impact on Citrus aurantium leaves essential oil: chemical composition and biological activities. J. Food Sci. 77(9): T173-T180.
Figueiredo, A. C., J. G. Barroso, L. G. Pedro, S. S. Fontinha, A. Looman and J. C. Scheffer (1997) Essential oils: basic and applied research. In C. Franz, Á. Máthé and G. Buchbauer, eds. Proceedings of the 27th International Symposium on Essential Oils. Allured Publishing Corp., Illinois. pp. 95-107.
Figueiredo, A. C., J. G. Barroso, L. G. Pedro and J. J. C. Scheffer (2008) Factors affecting secondary metabolite production in plants: volatile components and essential oils. Flavour Frag. J. 23(4): 213-226.
Gattefossé R. M. (1937) Aromathérapie: Les Huiles Essentielles Hormones Végétales. ed. Librairie des Sciences Girardot.
Goel, N., H. Kim and R. P. Lao (2005) An olfactory stimulus modifies nighttime sleep in young men and women. Chronobiol. Int. 22(5): 889-904.
Gomes, A. F., M. P. Almeida, M. F. Leite, S. Schwaiger, H. Stuppner, M. Halabalaki, J. G. Amaral and J. M. David (2019) Seasonal variation in the chemical composition of two chemotypes of Lippia alba. Food Chem. 273: 186-193.
González-Centeno, M. R., K. Knoerzer, H. Sabarez, S. Simal, C. Rosselló and A. Femenia (2014) Effect of acoustic frequency and power density on the aqueous ultrasonic-assisted extraction of grape pomace (Vitis vinifera L.) - a response surface approach. Ultrason. Sonochem. 21(6): 2176-2184.
Guan, X., D. P. Ge, S. Li, K. Huang, J. Liu and F. Li (2019) Chemical composition and antimicrobial activities of Artemisia argyi Lévl. et Vant essential oils extracted by simultaneous distillation-extraction, subcritical extraction and hydrodistillation. Molecules 24(3):483.
Hӧferl, M., S. Krist and G. Buchbauer (2006) Chirality influences the effects of linalool on physiological parameters of stress. Planta Med. 72(13): 1188-1192.
Hsu, F. L., W. H. Li, C. W. Yu, Y. C. Hsieh, Y. F. Yang, J. T. Liu, J. Shih, Y. J. Chu, P. L. Yen, S. T. Chang and V. H. C. Liao (2012) In vivo antioxidant activities of essential oils and their constituents from leaves of the Taiwanese Cinnamomum osmophloeum. J. Agric. Food Chem. 60(12): 3092-3097.
Huang, T. C., H. Y. Fu, C. T. Ho, D. Tan, Y. T. Huang and M. H. Pan (2007) Induction of apoptosis by cinnamaldehyde from indigenous cinnamon Cinnamomum osmophloeum Kaneh. through reactive oxygen species production, glutathione depletion, and caspase activation in human leukemia K562 cells. Food Chem. 103(2): 434-443.
Huang, X., J. Wang, H. Hao, J. Ouyang, Y. Gao, Y. Bao, Y. Wang and Q. Yin (2015) Determination and correlation of solubility and solution thermodynamics of coumarin in different pure solvents. Fluid Ph. Equilibria 394: 148-155.
Karki, B., B. P. Lamsal, S. Jung, J. van Leeuwen, A. L. Pometto, D. Grewell and S. K. Khanal (2010) Enhancing protein and sugar release from defatted soy flakes using ultrasound technology. J. Food Eng. 96(2): 270-278.
Kirschbaum, C. and D. H. Hellhammer (1989) Salivary cortisol in psychobiological research - an overview. Neuropsychobiology 22(3): 150-169.
Kofidis, G., A. Bosabalidis and S. Kokkini (2004) Seasonal variation of essential oils in a linalool-rich chemotype of Mentha spicata grown wild in Greece. J. Essent. Oil Res. 16(5): 469-472.
Kowalski, R., G. Kowalska, J. Jamroz, A. Nawrocka and D. Metyk (2015) Effect of the ultrasound-assisted preliminary maceration on the efficiency of the essential oil distillation from selected herbal raw materials. Ultrason. Sonochem. 24: 214-220.
Kuriyama, H., S. Watanabe, T. Nakaya, I. Shigemori, M. Kita, N. Yoshida, D. Masaki, T. Tadai, K. Ozasa, K. Fukui and J. Imanishi (2005) Immunological and psychological benefits of aromatherapy massage. Evid.-based Complement Altern. Med. 2(2): 179-184.
Kuroda, K., N. Inoue, Y. Ito, K. Kubota, A. Sugimoto, T. Kakuda and T. Fushiki (2005) Sedative effects of the jasmine tea odor and (R)-(–)-linalool, one of its major odor components, on autonomic nerve activity and mood states. Eur. J. Appl. Physiol. 95(2-3): 107-114.
Lapczynski, A., S. P. Bhatia, C. S. Letizia and A. M. Api (2008a) Fragrance material review on l-linalool. Food Chem. Toxicol. 46(11): S195-S196.
Lapczynski, A., C. S. Letizia and A. M. Api (2008b) Fragrance material review on d-linalool. Food Chem. Toxicol. 46(11): S193-S194.
Lee, S. C., S. Y. Wang, C. C. Li and C. T. Liu (2018) Anti-inflammatory effect of cinnamaldehyde and linalool from the leaf essential oil of Cinnamomum osmophloeum Kanehira in endotoxin-induced mice. J. Food Drug Anal. 26(1): 211-220.
Lee, S. C., W. X. Xu, L. Y. Lin, J. J. Yang and C. T. Liu (2013) Chemical composition and hypoglycemic and pancreas-protective effect of leaf essential oil from indigenous cinnamon (Cinnamomum osmophloeum Kanehira). J. Agric. Food Chem. 61(20): 4905-4913.
Lehrner, J., G. Marwinski, S. Lehr, P. Johren and L. Deecke (2005) Ambient odors of orange and lavender reduce anxiety and improve mood in a dental office. Physiol. Behav. 86(1-2): 92-95.
Lin, C. Y., Y. H. Chen, T. C. Chang, Y. J. Chen, S. S. Cheng and S. T. Chang (2013) Characteristic aroma-active compounds of floral scent in situ from Barringtonia racemosa and their dynamic emission rates. J. Agric. Food Chem. 61(51): 12531-12538.
Lin, C. Y., T. C. Chang, Y. H. Chen, Y. J. Chen, S. S. Cheng and S. T. Chang (2015) Monitoring the dynamic emission of biogenic volatile organic compounds from Cryptomeria japonica by enclosure measurement. Atmos. Environ. 122: 163-170.
Lin, G. M., Y. H. Chen, P. L. Yen and S. T. Chang (2016) Antihyperglycemic and antioxidant activities of twig extract from Cinnamomum osmophloeum. J. Tradit. Complement Med. 6(3): 281-288.
Lin, G. M., C. Y. Hsu and S. T. Chang (2018) Antihyperglycemic activities of twig extract of indigenous cinnamon (Cinnamomum osmophloeum) on high-fat diet and streptozotocin-induced hyperglycemic rats. J. Sci. Food Agric. 98(15): 5908-5915.
Lin, T. Y., J. W. Liao, S. T. Chang and S. Y. Wang (2011) Antidyslipidemic activity of hot-water extracts from leaves of Cinnamomum osmophloeum Kaneh. Phytother. Res. 25(9): 1317-1322.
Linck, V. M., A. L. da Silva, M. Figueiró, Â. L. Piato, A. P. Herrmann, F. D. Birck, E. B. Caramão, D. S. Nunes, P. R. H. Moreno and E. Elisabetsky (2009) Inhaled linalool-induced sedation in mice. Phytomedicine 16(4): 303-307.
Linck, V. M., A. L. da Silva, M. Figueiró, E. B. Caramão, P. R. H. Moreno and E. Elisabetsky (2010) Effects of inhaled linalool in anxiety, social interaction and aggressive behavior in mice. Phytomedicine 17(8-9): 679-683.
Lucattini, L., G. Poma, A. Covaci, J. de Boer, M. H. Lamoree and P. E. G. Leonards (2018) A review of semi-volatile organic compounds (SVOCs) in the indoor environment: occurrence in consumer products, indoor air and dust. Chemosphere 201: 466-482.
Maréchal, J. P., G. Culioli, C. Hellio, H. Thomas-Guyon, M. E. Callow, A. S. Clare and A. Ortalo-Magné (2004) Seasonal variation in antifouling activity of crude extracts of the brown alga Bifurcaria bifurcata (Cystoseiraceae) against cyprids of Balanus amphitrite and the marine bacteria Cobetia marina and Pseudoalteromonas haloplanktis. J. Exp. Mar. Biol. Ecol. 313(1): 47-62.
Martinazzo, A. P., E. C. Melo, L. C. D. Barbosa, N. D. F. Soares, R. P. Rocha, L. L. Randuz and P. A. Berbert (2009) Quality parameters of Cymbopogon citratus leaves during ambient storage. Appl. Eng. Agric. 25(4): 543-547.
Mason, T. J. and J. P. Lorimer (2002) General principles. In T. J. Mason and J. P. Lorimer, eds. Applied Sonochemistry: Uses of Power Ultrasound in Chemistry and Processing. Wiley-VCH, Weinheim. pp. 25-74.
Medeiros-Neves, B., F. M. C. de Barros, G. L. von Poser and H. F. Teixeira (2015) Quantification of coumarins in aqueous extract of Pterocaulon balansae (Asteraceae) and characterization of a new compound. Molecules 20(10): 18083-18094.
Moss, M., J. Cook, K. Wesnes and P. Duckett (2003) Aromas of rosemary and lavender essential oils differentially affect cognition and mood in healthy adults. Int. J. Neurosci. 113(1): 15-38.
Msaada, K., K. Hosni, M. Ben Taarit, T. Chahed, M. E. Kchouk and B. Marzouk (2007) Changes on essential oil composition of coriander (Coriandrum sativum L.) fruits during three stages of maturity. Food Chem. 102(4): 1131-1134.
Nakamura, A., S. Fujiwara, I. Matsumoto and K. Abe (2009) Stress repression in restrained rats by (R)-(−)-linalool inhalation and gene expression profiling of their whole blood cells. J. Agric. Food Chem. 57(12): 5480-5485.
Ongwandee, M., R. Moonrinta, S. Panyametheekul, C. Tangbanluekal and G. Morrison (2011) Investigation of volatile organic compounds in office buildings in Bangkok, Thailand: concentrations, sources, and occupant symptoms. Build. Environ. 46(7): 1512-1522.
Omidbaigi, R., F. Sefidkon and F. Kazemi (2004) Influence of drying methods on the essential oil content and composition of Roman chamomile. Flavour Frag. J. 19(3): 196-198.
Orphanides, A., V. Goulas and V. Gekas (2016) Drying technologies: vehicle to high-quality herbs. Food Eng. Rev. 8(2): 164-180.
Ozek, T., N. Tabanca, F. Demirci, D. E. Wedge and K. H. C. Baser (2010) Enantiomeric distribution of some linalool containing essential oils and their biological activities. Rec. Nat. Prod. 4(4): 180-192.
Padrayuttawat, A., T. Yoshizawa, H. Tamura and T. Tokunaga (1997) Optical isomers and odor thresholds of volatile constituents in Citrus sudachi. Food Sci. Technol. Int., Tokyo 3(4): 402-408.
Palma, M. and C. G. Barroso (2002) Ultrasound-assisted extraction and determination of tartaric and malic acids from grapes and winemaking by-products. Anal. Chim. Acta 458(1): 119-130.
Petigny, L., S. Périno-Issartier, J. Wajsman and F. Chemat (2013) Batch and continuous ultrasound assisted extraction of boldo leaves (Peumus boldus Mol.). Int. J. Mol. Sci. 14(3): 5750-5764.
Pilli, S., P. Bhunia, S. Yan, R. J. LeBlanc, R. D. Tyagi and R. Y. Surampalli (2011) Ultrasonic pretreatment of sludge: a review. Ultrason. Sonochem. 18(1): 1-18.
Pingret, D., A. S. Fabiano-Tixier, C. Le Bourvellec, C. Renard and F. Chemat (2012) Lab and pilot-scale ultrasound-assisted water extraction of polyphenols from apple pomace. J. Food Eng. 111(1): 73-81.
Rao, B. R. R., D. K. Rajput, R. P. Patel and S. Purnanand (2010) Essential oil yield and chemical composition changes during leaf ontogeny of palmarosa (Cymbopogon martinii var. motia). Nat. Prod. Commun. 5(12): 1947-1950.
Reyes-Jurado, F., A. Franco-Vega, N. Ramírez-Corona, E. Palou and A. López-Malo (2015) Essential oils: antimicrobial activities, extraction methods, and their modeling. Food Eng. Rev. 7(3): 275-297.
Santos, H. M., C. Lodeiro and J. L. Capelo-Martínez (2009) The power of ultrasound. In J. L. Capelo-Martínez, ed. Ultrasound in Chemistry: Analytical Applications. Wiley-VCH, Weinheim. pp. 1-16.
Schweiggert, U., R. Carle and A. Schieber (2007) Conventional and alternative processes for spice production - a review. Trends Food Sci. Technol. 18(5): 260-268.
Sefidkon, F., K. Abbasi and G. B. Khaniki (2006) Influence of drying and extraction methods on yield and chemical composition of the essential oil of Satureja hortensis. Food Chem. 99(1): 19-23.
Sellami, I. H., W. A. Wannes, I. Bettaieb, S. Berrima, T. Chahed, B. Marzouk and F. Limam (2011) Qualitative and quantitative changes in the essential oil of Laurus nobilis L. leaves as affected by different drying methods. Food Chem. 126(2): 691-697.
Sereshti, H., A. Rohanifar, S. Bakhtiari and S. Samadi (2012) Bifunctional ultrasound assisted extraction and determination of Elettaria cardamomum Maton essential oil. J. Chromatogr. A 1238: 46-53.
Setzer, W. N. (2009) Essential oils and anxiolytic aromatherapy. Nat. Prod. Commun. 4(9): 1305-1316.
Shaw, D., J. M. Annett, B. Doherty and J. C. Leslie (2007) Anxiolytic effects of lavender oil inhalation on open-field behaviour in rats. Phytomedicine 14(9): 613-620.
Soni, U., S. Brar and V. K. Gauttam (2015) Effect of seasonal variation on secondary metabolites of medicinal plants. Int. J. Pharm. Sci. Res. 6(9): 3654-3662.
Stiefel, C., T. Schubert and G. E. Morlock (2017) Bioprofiling of cosmetics with focus on streamlined coumarin analysis. Acs Omega 2(8): 5242-5250.
Sugawara, Y., C. Hara, K. Tamura, T. Fujii, K. Nakamura, T. Masujima and T. Aoki (1998) Sedative effect on humans of inhalation of essential oil of linalool: sensory evaluation and physiological measurements using optically active linalools. Anal. Chim. Acta 365(1-3): 293-299.
Suslick, K. S. (1989) The chemical effects of ultrasound. Sci. Am. 260(2): 80-86.
Tongnuanchan, P. and S. Benjakul (2014) Essential oils: extraction, bioactivities, and their uses for food preservation. J. Food Sci. 79(7): R1231-R1249.
Tung, Y. T., M. T. Chua, S. Y. Wang and S. T. Chang (2008) Anti-inflammation activities of essential oil and its constituents from indigenous cinnamon (Cinnamomum osmophloeum) twigs. Bioresour. Technol. 99(9): 3908-3913.
Tung, Y. T., C. C. Huang, S. T. Ho, Y. H. Kuo, C. C. Lin, C. T. Lin and J. H. Wu (2011) Bioactive phytochemicals of leaf essential oils of Cinnamomum osmophloeum prevent lipopolysaccharide/D-galactosamine (LPS/D-GalN)-induced acute hepatitis in mice. J. Agric. Food Chem. 59(15): 8117-8123.
Turek, C. and F. C. Stintzing (2013) Stability of essential oils: a review. Compr. Rev. Food Sci. Food Saf. 12(1): 40-53.
Vilkhu, K., R. Mawson, L. Simons and D. Bates (2008) Applications and opportunities for ultrasound assisted extraction in the food industry - a review. Innov. Food Sci. Emerg. Technol. 9(2): 161-169.
Vinatoru, M. (2001) An overview of the ultrasonically assisted extraction of bioactive principles from herbs. Ultrason. Sonochem. 8(3): 303-313.
Venskutonis, R., L. Poll and M. Larsen (1996) Effect of irradiation and storage on the composition of volatile compounds in basil (Ocimum basilicum L.). Flavour Frag. J. 11(2): 117-121.
Verma, R. S., L. U. Rahman, S. Mishra, R. K. Verma, A. Chauhan and A. Singh (2011) Changes in essential oil content and composition of leaf and leaf powder of Rosmarinus officinalis cv. CIM-Hariyali during storage. Maejo Int. J. Sci. Technol. 5(2): 181-190.
Volden, J., Y. Thomassen, T. Greibrokk, S. Thorud and P. Molander (2005) Stability of workroom air volatile organic compounds on solid adsorbents for thermal desorption gas chromatography. Anal. Chim. Acta 530(2): 263-271.
Wang, L. J. and C. L. Weller (2006) Recent advances in extraction of nutraceuticals from plants. Trends Food Sci. Technol. 17(6): 300-312.
Wang, S. Y., C. W. Yang, J. W. Liao, W. W. Zhen, F. H. Chu and S. T. Chang (2008) Essential oil from leaves of Cinnamomum osmophloeum acts as a xanthine oxidase inhibitor and reduces the serum uric acid levels in oxonate-induced mice. Phytomedicine 15(11): 940-945.
Wang, X. S., Y. F. Wu, G. Y. Chen, W. Yue, Q. L. Liang and Q. A. Wu (2013) Optimisation of ultrasound assisted extraction of phenolic compounds from Sparganii rhizoma with response surface methodology. Ultrason. Sonochem. 20(3): 846-854.
Wei, X. L., M. A. Chen, J. B. Xiao, Y. Liu, L. Yu, H. Zhang and Y. F. Wang (2010) Composition and bioactivity of tea flower polysaccharides obtained by different methods. Carbohydr. Polym. 79(2): 418-422.
Wen, T. C., Y. S. Li, K. Rajamani, H. J. Harn, S. Z. Lin and T. W. Chiou (2018) Effect of Cinnamomum osmophloeum Kanehira leaf aqueous extract on dermal papilla cell proliferation and hair growth. Cell Transplant. 27(2): 256-263.
Woolfenden, E. (1997) Monitoring VOCs in air using sorbent tubes followed by thermal desorption capillary GC analysis: summary of data and practical guidelines. J. Air Waste Manage. Assoc. 47(1): 20-36.
World Health Organization (2017) Depression and other common mental disorders: global health estimates. Geneva: World Health Organization. 24 pp.
Wu, C. L., H. T. Chang, Y. R. Hsui, Y. W. Hsu, J. Y. Liu, S. Y. Wang and S. T. Chang (2013) Antioxidant-enriched leaf water extracts of Cinnamomum osmophloeum from eleven provenances and their bioactive flavonoid glycosides. Bioresources 8(1): 571-580.
Yamini, Y., M. Khajeh, E. Ghasemi, M. Mirza and K. Javidnia (2008) Comparison of essential oil compositions of Salvia mirzayanii obtained by supercritical carbon dioxide extraction and hydrodistillation methods. Food Chem. 108(1): 341-346.
Zhang, Q. A., Z. Q. Zhang, X. F. Yue, X. H. Fan, T. Li and S. F. Chen (2009) Response surface optimization of ultrasound-assisted oil extraction from autoclaved almond powder. Food Chem. 116(2): 513-518.
Zidorn, C. (2018) Seasonal variation of natural products in European trees. Phytochem. Rev. 17(4): 923-935.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/78464-
dc.description.abstract伽羅木醇型土肉桂(Cinnamomum osmophloeum ct. linalool)為臺灣原生土肉桂中的一種化學品系,其葉子精油及主成分S-(+)-Linalool皆具有良好的抗焦慮活性。本研究目的為探討伽羅木醇型土肉桂葉子供作芳香材料之可行性,首先,本研究嘗試建立新的微量萃取方法-超音波輔助微量萃取法(Ultrasound-assisted microextraction, UAME)萃取葉子精油;接著,探討植株生理變異對葉子精油成分含量之影響;另外,亦評估葉子精油及其主成分S-(+)-Linalool之安定性。
探討精油最適萃取條件之試驗結果顯示,水蒸餾法(Hydrodistillation, HD)是使用大量葉子(10 g)並添加乙醚(Diethyl ether)於Clevenger裝置萃取30 min;而UAME則是使用微量葉子(10 mg),添加正己烷(n-Hexane)後利用超音波輔助萃取1 min,此條件萃得的S-(+)-Linalool含量(28.3 ± 0.5 mg/g leaf)與HD萃得的相當(26.9 ± 2.7 mg/g leaf),顯示UAME可應用於快速萃取分析伽羅木醇型土肉桂葉子的S-(+)-Linalool含量。
接著,本研究分別利用HD與UAME萃取葉子精油,探討繁殖方式(扦插、嫁接、種子及組織培養)、單株差異(6株嫁接繁殖植株)、季節(春、夏、秋及冬)變化及葉子成熟度(嫩葉、半成熟葉及成熟葉)4種生理變異因子對精油成分含量之影響。試驗結果顯示,扦插、嫁接、種子及組織培養等4種方式繁殖之植株中,扦插及嫁接繁殖葉子的S-(+)-Linalool含量及精油收率最高;單株差異對嫁接繁殖植株葉子的精油成分含量並無顯著影響;季節變化分析結果顯示,四季變化對葉子S-(+)-Linalool含量的影響相當低,四季採收葉子的精油收率高(≥ 2.9%)且皆含有大量S-(+)-Linalool(≥ 27.0 mg/g leaf)。此外,3種成熟度葉子,僅成熟葉子含有大量S-(+)-Linalool。由上述結果得知,全年皆可採收伽羅木醇型土肉桂之成熟葉子,供作獲取大量S-(+)-Linalool之來源。
另由葉子精油及S-(+)-Linalool的安定性試驗結果顯示,氣乾與烘乾(30、45及60oC)對葉子精油的化學組成均無顯著影響,主成分皆為S-(+)-Linalool,其中,利用60oC烘乾葉子的效率最佳,乾燥所需時間最少(2 h),且只需使用少量電能(0.3 kWh)。至於乾燥葉子裝袋貯藏於室內環境6個月後仍保有大量的S-(+)-Linalool(21.1 - 28.4 mg/g leaf);此外,葉碎片及葉粉放置於室溫環境60 min後,釋出之S-(+)-Linalool仍保有能舒緩人體壓力之濃度(9.8 mg m-3 g-1)。由上述葉子乾燥與貯藏試驗結果及葉子釋出至空氣中S-(+)-Linalool濃度分析結果得知,葉子精油及S-(+)-Linalool的安定性極佳,葉子磨碎後於一定時間內還可持續釋出對人體健康有益之S-(+)-Linalool。
綜合本研究結果得知,嫁接繁殖的伽羅木醇型土肉桂植株葉子之精油及S-(+)-Linalool含量高且安定性極佳,葉子磨碎後還會釋出大量S-(+)-Linalool。此外,伽羅木醇型土肉桂葉子具有使用便利、低成本、安定性佳及可永續利用的優點,未來不僅可以作為日常隨手可得的芳香材料,亦極具潛力作為開發紓壓產品之來源。
zh_TW
dc.description.abstractCinnamomum osmophloeum ct. linalool is one chemotype of the indigenous cinnamon in Taiwan. Its leaf essential oil (LEO) and major component, S-(+)-linalool, both possess excellent anxiolytic activity. The aim of this study was to evaluate feasibility of leaf from Cinnamomum osmophloeum ct. linalool for aromatic materials. An advanced microextraction method: ultrasound-assisted microextraction (UAME) was established to extract the LEO. Then, the effects of physiological variations of the plant on chemical composition of the LEO as well as the stability of both LEO and S-(+)-linalool in the leaf were investigated.
The results obtained from the optimal conditions of LEO extraction showed that the optimal condition for hydrodistillation (HD) was: 10 g leaf was hydrodistilled with diethyl ether addition in Clevenger apparatus for 30 min, while that for UAME was: 10 mg leaf was extracted using n-hexane in an ultrasonicator with the power of 80 W for 1 min. S-(+)-Linalool content obtained by UAME (28.3 ± 0.5 mg/g leaf) was comparable with that extracted by HD (26.9 ± 2.7 mg/g leaf), suggesting that UAME is a rapid method for analyzing the S-(+)-linalool content of C. osmophloeum ct. linalool leaves.
To understand how physiological variations in C. osmophloeum ct. linalool affected chemical composition and S-(+)-linalool content of the LEO, four parameters including plant propagation methods (cuttage, grafting, seeding, and tissue culture), individual variation (6 grafting plants), seasonal variation (spring, summer, fall, and winter), and leaves at different stages of maturity (young, semi-mature, and mature) were explored by using both HD and UAME. Results indicated that yields of the LEOs and S-(+)-linalool content in cutting and grafting plants were higher than those obtained from seeding and tissue culture plants. Moreover, it was found that individual variation in six grafting plants did not significantly affect the chemical composition and S-(+)-linalool content in the LEOs. The observed seasonal variation in S-(+)-linalool content in the leaf was minimal. LEOs obtained in four seasons all had a high yield (≥ 2.9%) and a large quantity of S-(+)-linalool (≥ 27.0 mg/g leaf). In addition, results revealed that only mature leaf contained a large amount of S-(+)-linalool, compared with young and semi-mature leaf. These showed that mature leaf of grafting C. osmophloeum ct. linalool could be harvested all year round, being the excellent source of S-(+)-linalool.
In addition, results obtained from the stability evaluation demonstrated that both air drying at ambient temperature and oven drying (30, 45, and 60oC) had no significant effect on the chemical composition of the LEO and S-(+)-linalool content. The major component in each LEO was S-(+)-linalool (≥ 78.6%). Oven-dried leaves at 60oC required 2 h and 0.3 kWh only, revealing it is the most efficient drying treatment. The result also showed that dried leaves packaged in polyethylene bag retained a large amount of S-(+)-linalool (21.1 - 28.4 mg/g) during 6-month storage at ambient temperature. After being crushed, within 60 min both leaf flakes and leaf powders emitted S-(+)-linalool in a concentration higher than 9.8 mg m-3 g-1 (a known concentration for the stress-relieving activity). These results showed that both the LEO and its major component, S-(+)-linalool, had an excellent stability in the C. osmophloeum ct. linalool leaf. Moreover, S-(+)-linalool, which was benefit to human health, could be emitted continuously from crushed leaf within a certain period of time.
In summary, leaf of grafted C. osmophloeum ct. linalool possesses high LEO yield and S-(+)-linalool content with great stability throughout a year. Besides, the crushed leaf emitted a large amount of S-(+)-linalool into the air. Moreover, C. osmophloeum ct. linalool leaves have various advantages, including convenience, lower cost, great stability, and sustainable use. These results suggested that crushed leaf could be developed as a potential source of stress-relieving products and aromatic materials in daily life.
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dc.description.tableofcontents目 錄 I
表目錄 V
圖目錄 VII
摘 要 1
Abstract 3
壹、前言 6
貳、文獻回顧 9
  一、土肉桂品系及其功效 9
  二、伽羅木醇特性 10
   (一)基本性質 10
   (二)生物活性 12
      1. 抗焦慮 12
      2. 鎮靜及紓壓 13
  三、植物精油之萃取 14
  四、超音波輔助萃取法 15
   (一)超音波性質 15
   (二)萃取機制 16
      1. 碎裂 16
      2. 侵蝕 16
      3. 破壞 17
      4. 超音波毛細效應 17
   (三)超音波輔助萃取效率之影響因子 17
      1. 超音波功率 18
      2. 超音波頻率 18
      3. 萃取溫度 19
      4. 萃取溶劑 19
   (四)超音波輔助萃取與傳統萃取植物精油 20
  五、生理變異對葉子精油成分之影響 21
  六、葉子揮發成分安定性之影響因子 21
   (一)乾燥處理 23
   (二)貯藏時間 23
  七、空氣中植物揮發成分之分析 25
參、材料與方法 25
  一、試驗材料 25
   (一)伽羅木醇型土肉桂 25
   (二)標準品 28
   (三)溶劑 28
  二、試驗方法 28
   (一)葉子精油萃取條件之評估試驗 28
      1. 水蒸餾法 28
      2. 超音波輔助微量萃取法 29
   (二)植株生理變異試驗 30
      1. 繁殖方式 30
      2. 單株差異 30
      3. 季節變化 30
      4. 葉子成熟度 30
       (1)葉表顏色分析 31
       (2)葉綠素相對含量分析 31
   (三)精油成分分析 31
   (四)葉子精油及S-(+)-Linalool安定性之分析 33
      1. 葉子之乾燥試驗 33
      2. 葉子之貯藏試驗 33
      3. 葉子釋出至空氣中主成分含量 33
       (1)不同粒徑葉子製備 33
       (2)揮發成分之吸附 34
       (3)揮發成分含量之分析 34
  三、統計分析 35
肆、結果與討論 36
  一、伽羅木醇型土肉桂葉子精油之萃取 36
   (一)水蒸餾法 36
      1. 萃取時間及次數對葉子精油成分含量之影響 36
      2. 添加乙醚對伽羅木醇型土肉桂葉子精油成分含量之影響 40
   (二)超音波輔助微量萃取法 43
   (三)超音波輔助微量萃取法替代水蒸餾法萃取葉子精油之評估 45
  二、伽羅木醇型土肉桂生理變異對其葉子精油成分之影響 51
   (一)繁殖方式 51
   (二)單株差異 57
   (三)季節變化 61
   (四)葉子成熟度 65
  三、伽羅木醇型土肉桂葉子中S-(+)-Linalool安定性之評估 68
   (一)不同方式乾燥處理 68
   (二)長期貯藏處理 76
   (三)葉子釋出至空氣中S-(+)-Linalool之含量 78
      1. 不同粒徑 78
      2. 放置時間 80
伍、結論 82
陸、參考文獻 84
dc.language.isozh-TW
dc.subject葉子精油zh_TW
dc.subject伽羅木醇型土肉桂zh_TW
dc.subject超音波輔助微量萃取法zh_TW
dc.subject生理變異zh_TW
dc.subject安定性zh_TW
dc.subjectS-(+)-伽羅木醇zh_TW
dc.subjectUltrasound-assisted microextractionen
dc.subjectCinnamomum osmophloeum ct. linaloolen
dc.subjectLeaf essential oilen
dc.subjectPhysiological variationsen
dc.subjectS-(+)-Linaloolen
dc.subjectStabilityen
dc.title伽羅木醇型土肉桂葉子供作芳香材料可行性之探討zh_TW
dc.titleStudy on Feasibility of Leaf from Cinnamomum osmophloeum ct. linalool for Aromatic Materialsen
dc.typeThesis
dc.date.schoolyear108-1
dc.description.degree碩士
dc.contributor.oralexamcommittee許富蘭(Fu-Lan Hsu),張惠婷(Hui-Ting Chang),鄭森松(Sen-Sung Cheng),葉汀峰(Ting-Feng Yeh)
dc.subject.keyword伽羅木醇型土肉桂,葉子精油,S-(+)-伽羅木醇,安定性,生理變異,超音波輔助微量萃取法,zh_TW
dc.subject.keywordCinnamomum osmophloeum ct. linalool,Leaf essential oil,Physiological variations,S-(+)-Linalool,Stability,Ultrasound-assisted microextraction,en
dc.relation.page94
dc.identifier.doi10.6342/NTU202000169
dc.rights.note有償授權
dc.date.accepted2020-01-17
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept森林環境暨資源學研究所zh_TW
dc.date.embargo-lift2025-01-21-
顯示於系所單位:森林環境暨資源學系

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