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第 2 期                    丛凯平,等:  不同方法提取油茶籽油品质比较及电子鼻分析                                    ·345·


                 11436.                                            and Environment (森林与环境学报), 2010, 30(4): 344-348.
            [22]  Qi Yutang (齐玉堂). Influence of oil composition on oil color[J].   [29]  Stone N J, Kushner R. Effects of dietary modification and treatment
                 China Oils and Fats (中国油脂), 2004, 29(2): 17-18.     of obesity. Emphasis on improving  vascular outcomes[J]. Medical
            [23] Zhan Dongsheng (战东胜), Zhang Weinong (张维农), Qi Yutang (齐  Clinics of North America, 2000, 84(1): 95-122.
                 玉堂 ),  et al. Influence factors of color formation  during oil   [30]  Zhang Zhimin (张智敏), Wu Suxi (吴苏喜), Liu Ruixing (刘瑞兴).
                 processing [J]. China Oils and Fats (中国油脂), 2012, 37(7): 8-12.     Effect of production process on nutritional quality of camellia seed
            [24]  Standardization Administration of China National Forestry Industry   oil [J]. Food Science (食品科学), 2013, 34(11): 268-272.
                 Federation (中国林业产业联合会标准化技术委员会). T/LYCY        [31]  Nie Ming (聂明), Yang Shuiping (杨水平), Yao Xiaohua (姚小华), et
                 001-2018: Extra oil-tea camellia seed oil[S]. Beijing: Standards Press   al. Effects of  process methods  on  physicochemical property and
                 of China (中国标准出版社), 2018: 1-8.                    nutrient content of tea oil[J]. Forest Research (林业科学研究), 2010,
            [25]  Keys A.  Coronary heart disease in seven countries[J]. Nutrition,   23(2): 165-169.
                 1997, 13(3): 249-253.                         [32]  Wu Caie (吴彩娥), Fan Gongjian (范龚健), Li Tingting (李婷婷), et
            [26]  Das U N. Beneficial effect of eicosapentaenoic and docosahexaenoic   al. Comparison of volatile components in ginkgo fruits stored in
                 acids in the  management of systemic  lupus erythematosus and its   different conditions by electronic nose[J]. Food Science (食品科学),
                 relationship to the cytokine network[J]. Prostaglandins Leukotrienes   2012, 33(16): 167-170.
                 & Essential Fatty Acids, 1994, 51(3): 207-213.     [33]  Lyu J, Liu X, Bi J F, et al. Characterization of Chinese white-flesh
            [27]  Gallai V, Sarchielli P, Trequattrini A, et al. Cytokine secretion and   peach cultivars based on principle component and cluster analysis[J].
                 eicosanoid production in the peripheral blood mononuclear cells of   Journal of Food Science and Technology, 2017, 54(12): 3818-3826.
                 MS patients undergoing dietary supplementation with n-3   [34]  Ampuero S, Bosset J O. The electronic nose applied to dairy products:
                 polyunsaturated fatty acids[J]. Journal  of Neuroimmunology, 1995,   A review[J]. Sensors and Actuators B: Chemical, 2003, 94(1): 1-12.
                 56(2): 143-153.                               [35] Xu  Weisheng (徐维盛), Wang Zhu (王竹), Yang Yuexin (杨月欣).
            [28]  Lu Zexiang (卢泽湘), Fan Liwei (范立维), Zheng Deyong (郑德勇),   Rapid discrimination of fifteen kinds  of tea infusion by electronic
                 et al. Technology for  supercritical CO 2 extraction of Camellia   tongue technology[J]. Food Industry (食品工业), 2014, 35(12):
                 oleifera seed oil and analysis of the fatty acids[J]. Journal of Forest   154-158.




            (上接第 293 页)                                            materials [J]. Journal of Materials Chemistry A, 2013, 1(25): 7500-7510.
                                                               [9]   Klapötke T M, Preimesser A, Stierstorfer J. Energetic derivatives of
                (3)热分析结果表明,AICN 分别在 40~400 ℃                       4,4’,5,5’-tetranitro-2,2’-bisimidazole  (TNBI) [J]. Zeitschrift für
            和 400~1000 ℃温度区间内存在两个失重过程,对应                           Anorganische und Allgemeine Chemie, 2012, 638(9): 1278-1286.
                                                               [10]  Xu  Y, Shen C, Lin Q, et al. 1-Nitro-2-trinitromethyl substituted
            的热分解峰温分别为 256.5 和 698.4 ℃,表明其具有良                       imidazoles: A new family of high performance energetic materials
            好的热稳定性,有望作为咪唑类高能富氮化合物合成                                [J]. Journal of Materials Chemistry A, 2016, 4(45): 17791-17800.
                                                               [11]  Yang Wei (杨威), Ji  Yueping (姬月萍). Research progress  on
            的关键中间体,应用于新型高能清洁含能材料领域。                                polynitroimidazoles and their derivatives [J]. Chinese Journal of
                                                                   Explosives & Propellants (火炸药学报), 2008, 31(5): 46-50.
            参考文献:                                              [12]  Yang Li (杨利), Gao Fulei (高福磊), Fan Qingtao (凡庆涛),  et al.
            [1]   Domasevitch K V, Gospodinov I, Krautscheid H,  et al. Facile and   Progress in imidazolium-based energetic compounds [J]. Chinese
                 selective polynitrations at the 4-pyrazolyl dual backbone: Straightforward   Journal of Energetic Materials (含能材料), 2009, 17(3): 374-379.
                 access to a series of high-density energetic materials [J]. New Journal   [13] Bi Fuqiang (毕福强), Li Jizhen (李吉祯), Xu Cheng (许诚), et al.
                 of Chemistry, 2019, 43(3): 1305-1312.             Synthesis and  thermal decomposition properties  of  4,5-bis(1H-tetrazol-
            [2]   Lewczuk, R. Energetic materials derived from 4,4’,5,5’-tetranitro-1H,   5-yl)-1H-imidazole [J]. Chinese Journal of Energetic Materials (含能
                 1’H-2,2’-biimidazole [J]. Propellants Explosives Pyrotechnics, 2018,   材料), 2013, 21(4): 443-448.
                 43(5): 436-444.                               [14]  Wu Minjie (吴敏杰), Bi Fuqiang (毕福强), Zhou Yanshui (周彦水),
            [3]   Yin P, Zhang Q,  Shreeve J M. Dancing with energetic nitrogen   et al. Synthesis and characterization of 5,5'-(2-(trifluoromethyl)-1H-
                 atoms: Versatile  N-functionalization strategies for  N-heterocyclic   imidazole-4,5-diyl) bis(1H-tetrazole) and its energetic ionic salts [J].
                 frameworks in high energy density materials [J]. Accounts of Chemical   Chinese Journal of Energetic Materials (含能材料), 2017, 25(4): 315-320.
                 Research, 2016, 49(1): 4-16.                  [15]  Srinivas D, Ghule V D, Muralidharan K. Synthesis of nitrogen-rich
            [4]   Li J, Zhang G, Zhang Z,  et al. Synthesis and characterization of   imidazole, 1,2,4-triazole and tetrazole-based compounds [J]. RSC
                                    1
                  5
                 N -(2-fluoro-2,2-dinitroethyl)-N -methyl-1H-tetrazole-5-amine and   Advances, 2014, 4(14): 7041-7051.
                 its nitramide based on functionalized amino group in 5-amino-1H-   [16]  Orcajo G, Calleja G, Botas J A, et al. Rationally designed nitrogen-
                 tetrazole [J]. ChemistrySelect, 2018, 3(24): 6902-6906.   rich metal–organic cube material: An efficient CO 2 adsorbent and H 2
            [5]   Zhao Tingxing (赵廷兴), Li Lei (李磊), Dong Zhan (董战),  et al.   confiner [J]. Crystal Growth & Design, 2014, 14(2): 739-746.
                 Research progress on the synthesis of energetic nitroazoles [J].   [17]  Semeraro T, Mugnaini C, Manetti F,  et al. Practical synthesis of
                 Chinese Journal of Organic Chemistry (有机化学), 2014, 34(2): 304-315.   novel purine analogues as Hsp90 inhibitors [J].  Tetrahedron, 2008,
            [6]   Dai Lingling (代玲玲), Cui Shengfeng (崔胜峰), Damu Guri L V, et   64(49): 11249-11255.
                 al. Recent advances in the synthesis and application of tetrazoles [J].   [18]  Follmann M, Ackerstaff J, Redlich G, et al. Discovery of the soluble
                 Chinese Journal of Organic Chemistry (有机化学), 2013, 33(2): 224-244.   guanylate cyclase stimulator  vericiguat (BAY 1021189) for  the
            [7]   Yin P, He C, Shreeve J M. Fully  C/N-polynitro-functionalized   treatment  of chronic heart failure  [J]. Journal  of Medicinal  Chemistry,
                 2,2’-biimidazole derivatives as nitrogen- and oxygen-rich energetic   2017, 60(12): 5146-5161.
                 salts [J]. Chemistry—A European Journal, 2016, 22(6): 2108-2113.   [19]  Dippold A A, Klapötke T M. Synthesis and characterization of
            [8]   Yin P, Zhang Q, Zhang J, et al. N-trinitroethylamino functionalization   5-(1,2,4-triazol-3-yl)tetrazoles with various energetic functionalities[J].
                 of  nitroimidazoles:  A new strategy for high performance energetic   Chemistry – An Asian Journal, 2013, 8(7): 1463-1471.
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