Page 113 - 201807
P. 113

第 7 期                   杨楠楠,等:  一种低共熔溶剂在深度萃取模拟油脱硫中的应用                                   ·1181·


            衍生物模拟油脱硫中的应用效果,下一步重点研究                                 fuels catalyzed by phosphotungstic acid in ionic liquids at room
                                                                   temperature[J]. Energy Fuels, 2009, 23: 1354-1357.
            其合成机理并计算合成收率,大量合成并耦合多级
                                                               [12]  Raheel S, Graham J H.Hydrodesulfurization of hindered dibenzothiophenes:
            逆流萃取脱硫方法,以期此类 DESs 能够早日工厂                              an overview[J]. Catalysis Today, 2000, 59(3): 423-442.
            化应用。                                               [13]  Holberey J D, Ignacio L M, Gadi R,  et al.  Desulfurisation of oils
                                                                   using ionic liquids: selection of cationic and anionic components to
            参考文献:                                                  enhance extraction efficiency[J]. Green Chemical, 2008, 10: 87-92.
                                                               [14]  Hu Songqing (胡松青), Zhang Jun  (张军), Liu Bing (刘冰),  et
            [1]   Lv H  Y, Deng C  L, Ren W Z,  et al. Oxidative desulfurization of   al.Exploratory study on desulfurization of ionic liquid extraction[J].
                 model diesel using [(C 4H 9) 4N] 6-Mo 7O 24 as a catalyst in ionic liquids   Journal of Petroleum Science (Petroleum Processing)[石油学报(石
                 [J]. Fuel Processing Technology, 2014,119: 87-91.   油加工)], 2007, 23(1): 100-103.
            [2]   Zhu W S, Zhu G P, Li H M, et al. Oxidative desulfurization of fuel   [15]  Ismagilov Z, Yashnik S, Kerzhentsev M, et al. Oxidative desulfurization
                 catalyzed by metal-based surfactant-type ionic liquids [J]. Journal of   of hydrocarbon fuels [J]. Catalysis Reviews:  Science and Engineering,
                 Molecular Catalysis A Chemical, 2011, 347(1/2): 8-14.   2011, 53(3): 199-255.
            [3]   Wang Jianlong (王建龙), Zhao Dishun(赵地顺), Zhou Erpeng (周二  [16]  Tang Xiaodong (唐晓东), Hu Tao (胡涛), Li Jingjing (李晶晶), et al.
                 鹏),  et al. Study on the application of pyridine ionic liquid in   Research progress of electrochemical desulfurization for automotive
                 gasoline extraction and desulfurization[J]. Journal of Fuel Chemistry   fuel[J]. Chemical Progress (化工进展), 2015, 34(5): 1277-1282.
                 (燃料化学学报). 2007, 35(3): 293-295.               [17]  Abbott A P, Capper G, Davies D L,  et al.Preparation of novel,
            [4]   Wei Houmin (魏厚敏), He Peng (何鹏), Wang Rui (王锐), et al. The   moisture- stable, Lewis- acidic ionic liquids containing quaternary
                 development and research of automobile gasoline in China[J].   ammonium salts with functional side chains. Chemical Communications,
                 Journal  of Automotive Engineering (汽车工程学报), 2013, 3(6):   2001, (19): 2010-2011.
                 457-465.                                      [18]  Abbott A P, Capper G, Davies  D  L, et al.Ionic liquids based upon
            [5]  Liang Wenjian (梁文坚), Bai Wenru (白文茹), Li Shunhua (李顺华).   metal halide/substituted  quaternary ammonium salt mixtures. Inorganic
                 The influence and countermeasure of the quality and quality of   Chemistry, 2004,43 (11): 3447-3452.
                 Shengli crude oil[J]. Petroleum Processing and Chemical Engineering (石  [19]  Wang X, Jiang W, Zhu W,  et al.  A simple and cost effective
                 油炼制与化工), 1995, 10: 6-11.                          extractive desulfurization process with novel deep eutectic
            [6]   Shi Yahua (石亚华). Desulfurization in petroleum processing[M].   solvents[J]. RSC Advance, 2016, 6(36): 30345-30352.
                 Beijing (北京): China Petrochemical Press (中国石化出版社), 2008:   [20]  Tang X D, Zhang Y F, Li J J. Alkylation of thiophenic compounds
                 14-18.                                            catalyzed by deep  eutectic solvents[J]. Catalysis Communications,
            [7]   Hua Ruixiang (花瑞香), Li Yanyan (李艳艳), Zheng Jincheng (郑锦  2015, 70:40-43.
                 诚),  et al. Study on sulfide morphological distribution of gasoline   [21]  Lü H Y, Li P  C, Deng C L,  et al. Deep catalytic  oxidative
                 fractions[J]. Chromatography (色谱), 2005, 22(5): 515-520.   desulfurization  (ODS)  of dibenzothiophene (DBT) with  oxalate-based
            [8]   Xing Jinxian (邢金仙), Liu Chenguang (刘晨光). Classification of   deep eutectic solvents (DESs)[J]. Chemical Communications, 2015,
                 sulfur and family composition and sulfide type fraction in catalytic   51(53): 10703-10706.
                 cracking gasoline[J]. Refining Technology and Engineering (炼油技  [22]  María F,  Adriaan B, Maaike C K. Low-transition-temperature
                 术与工程), 2003, 33(6): 6-9.                          mixtures (Lttms): a new generation of DESⅠgner solvents[J].
            [9]   Zeng Xiaolan (曾小岚), Liu Jun (刘君), Liu Jianhua (刘建华), et al.   Angewandte Chemie,2013, 52(11): 3074-3085.
                 Study on morphological distribution of aromatic sulfur compounds in   [23]  Otsuki S, Nonaka T, Takashirna N, et al.Oxidative desulfurization of
                 crude oil[J]. Analytical Chemistry (分析化学), 2006, 34(11): 1546- 1550.   light gas oil and vacuum gas oil by oxidation and solvent extraction[J].
            [10] Zhao  D S, Sun Z M, Li F  T,  et al. Oxidative desulfurization of   Energy Fuels, 2000, 14(6): 1232-1239.
                 thiophene catalyzed by (C 4H 9) 4NBr·2C 6H 11NO coordinated ionic   [24] Wang Shidong (王世东). Study on application of recovery technology of
                 liquid[J]. Energy Fuels, 2008, 22: 3065-3069.     functional liquid desulfurizer[D]. Fushun: Liaoning Shihua
            [11]  Li H M, He  L N,  Lu J D, et al.  Deep oxidative desulfurization of     University, 2015.


            (上接第 1175 页)                                           丽),  et al. Extraction and antioxidant ability of flavonoids from
                                                                   passion fruit[J]. Food Research  and Development (食品研究与开
            [20]  Qi Xiaoni (祁小妮), Sui Ying (隋英), Li Zhenliang (李振亮), et al.
                 Optimization of flavonoids extraction technology from  Cuscuta   发), 2014, 35(17): 25-29.
                 Chinensis  by response surface  methodology and its antioxidant   [25]  Can Jinyuan (蔡锦源), Wei Kunhua (韦坤华), Xiong Jianwen (熊建
                 activity[J]. China Brewing (中国酿造), 2015, 34(8): 35-38.   文), et al.Extraction of flavonoids from Sophora tonkinensis Gapnep
            [21]  Qi Xiaoni (祁小妮), Lin Nannan (林楠楠), Li Zhenliang (李振亮),    and their antioxidant and antibacterial activities[J].Fine Chemicals
                                                                   (精细化工), 2017, 34(3): 285-293.
                 et al. Optimization the extraction process of flavonoids by response   [26] Lan  Yansu  (兰艳素), Li  Changjiang (李长江), Qi Zhaopeng (亓昭
                 surface  methodology from the Rehmannia and its antioxidant   鹏),  et al. Optimizationg of microwave-assisted extraction of total
                 activity[J]. Food and Fermentation Industies(食品与发酵工业),   flavonoids from Sophora tonkinensis by using  response surface
                 2016, 42(2): 231-235.                             methodology[J]. Chinese  Traditional  Patent Medicine (中成药),
            [22] He Chuanbo (何传波), Wei Haocheng (魏好程), Xiong Hejian (熊何  2015, 37(6): 1360-1363.
                 健),  et al. Extraction and antioxidant activities of flavonoids from   [27]  Zhang G W, Hu M M, Li  H,  et al. Optimization of microwave-
                 Laminaria japonica as affected by enzymatic hydrolysis and   assisted enzymatic extraction  of  polyphenols from waste peanut
                 microwave [J]. Food Science (食品科学), 2013, 34(18): 51-55.   shells and evaluation of its antioxidant and antibacterial activities in
            [23]  Fu Liang (付亮), Yuan Jingya (袁璟亚), Ding Chunbang (丁春邦),    vitro[J]. Food and Bioproducts Processing, 2013, 91: 158-168.
                 et al. Flavonoids  extraction  from residue of  Epimedium and its   [28] Guo  Wenjuan  (郭文娟),  Wang Na (王娜),  Wang Nana (王娜娜),
                 antioxidant activity evaluation[J].Science  and Technology of Food   et al. Ultrasonic-assisted ethanol extraction of flavonoids from
                 Industry (食品工业科技), 2016, 37(1): 116-120.          Hawthorn seed and their antioxidant activity[J]. Fine Chemicals (精
            [24]  Tao Yongyuan (陶永元), Shu Kangyun (舒康云), Dong Hongli (董洪  细化工), 2016, 33(2): 152-156.
   108   109   110   111   112   113   114   115   116   117   118