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第 9 期                     李安林,等:  超高压结合热处理对大米粉理化性质的影响                                   ·1581·


                 Fujian Agricultural and Forestry University (福建农林大学), 2014.     Yangling: Northwest A& F University (西北农林科技大学), 2008.
            [14]  Xu Xiaohui (徐晓辉). Study on the process property of raw material   [21]  Zhang Jianxin (张建新), Du Shuangkui (杜双奎), Duan Xuchang (段
                 of fresh rice noodles [D]. Nanning: Guangxi University(广西大学),   旭昌 ),  et al. Effects of ultrahigh  pressure processing on the
                 2014.                                             physicochemical characteristics of  Taibai Kudzu starch [J].
            [15] Zhu  Xiumei(朱秀梅). The mechanochemical  effect of the high   Transactions of the CSAE (农业工程学报). 2007, 23(4): 269-271.
                 pressure microfluidization to rice amylose [D]. Nanchang : Nanchang   [22]  Stole M, Oinonen S, Autio K. Effect of high pressure on the typical
                 University(南昌大学), 2010.                           properties of barley starch [J]. Innovative Food Science & Emerging
            [16]  Yue Xiaoxia (岳晓霞), Mao Dirui (毛迪锐), Zhao Quan (赵全), et al.   Technologies, 2000, 1(3): 167-175.
                 Study on comparison of properties of corn starch with  modified   [23]  Bauer B A, Knorr D. The impact of pressure, temperature and
                 starch [J]. Food Science(食品科学). 2005, 26 (5): 116-118.     treatment time on starches: pressure-induced starch gelatinisation as
            [17]  Xiong Shanbo (熊善柏), Zhao Siming (赵思明). Study on swelling   pressure time temperature indicator for high hydrostatic pressure
                 characteristics of rice starch [J]. Cereal and Feed Industry (粮食与饲  processing [J]. Journal of Food 2005, 68(3): 329-334.
                 料工业), 2000, (12): 12-14.                      [24]  Stute R Heilbronn, Klingler R W,  et al.  Effects of high  pressures
            [18]  Ratnayake W S, Hoover R, Warkentin T. Pea starch: composition,   treatment on starches [J]. Starke Starke, 1996, 48(11/12): 399-408.
                 structure and properties-A Review [J]. Starch-Starke, 2002, 54(6):   [25]  Yang Jingfeng (杨景峰), Luo Zhigang (罗志刚), Luo Faxing (罗发
                 217-234.                                          兴). Research progress in crystal structure of starch [J]. Science and
            [19] Liu Wenting (刘文婷). Effects of ultra high pressure processing on   Technology of Food Industry(食品工业科技), 2007. (7): 240-243.
                 properties of areca taro starch [D]. Fuzhou: Fujian Agricultural and   [26]  Pu Huayin (蒲华寅), Wang Le (王乐), Huang Junrong (黄峻榕), et
                 Forest University (福建农林大学), 2013.                 al. Effects of ultra high pressure on structure and pasting properties
            [20]  Shuai Xuewen ( 师学文 ). Effects of Ultra-high pressure on   of corn starch  [J]. Journal  of the Chinese Cereals and Oils
                 buckwheat starch granule structural and pasting properties [D].   Association (中国粮油学报), 2017, 32(1): 24-28.


            (上接第 1572 页)                                       [4]   Hereijgers B P C, Weckhuysen B M. Aerobic oxidation of cyclohexane
            表征。通过与 NHPI 组成共催化体系考察了 NHPI/                           by gold-based catalysts: New mechanistic insight by thorough
                                                                   product analysis[J]. Journal of Catalysis, 2010, 270(1): 16-25.
            SMA-Co 在环己烷液相分子氧氧化反应中的催化活                          [5]   Wu Zhaoyi (吴照义). Development and preparation of cyclohexanone
            性。结果表明,NHPI/SMA-Co 复合催化剂表现出的                           [J]. Chemical Engineer (化学工程师), 2003, (1): 41-42.
            催化活性较高;固体催化剂的多次循环使用实验表                             [6]   Guo C C,  Chu M F,  Liu Q,  et al. Effective  catalysis of  simple
                                                                   metalloporphyrins for cyclohexane oxidation with air in the absence
            明,SMA-Co 在反应过程中没有发生明显的失活,                              of additives and  solvents[J]. Applied Catalysis A General, 2003,
            是稳定、能循环使用的催化剂。                                         246(2): 303-309.
                 实验得出,NHPI/SMA-Co 催化氧气氧化环己                     [7]   Ma H, Xu J, Zhang Q, et al. Selective oxidation of ethylbenzene by a
                                                                   biomimetic combination: Hemin and N -hydroxyphthalimide (NHPI)
            烷的最佳反应条件为:环己烷用量 5 mL,溶剂乙                               [J]. Catalysis Communications, 2007, 8(1): 27-30.
            腈 10 mL,复合催化剂 NHPI/SMA-Co〔n(NHPI) :                [8]   Guo Cancheng (郭灿城), Zhang Xiaobing (张晓兵), Hou Lianguo
            n(SMA-Co)=10 : 3〕用量 0.04 g,反应温度 120 ¥,                 (侯连国), et al. Study on the mechanism of cyclohexanone formation
                                                                   in cyclohexane hydorxylation catalyzed by metalloporphyrins[J].
            初始氧压 1.0 MPa,反应时间 6 h。在此条件下进行                          Acta Chimica Sinica(化学学报), 1998, 56(6): 489-496.
            反应,环己烷转化率为 19.84%,环己醇选择性                           [9]   Guo Cancheng (郭灿城), Yin Zhenming (尹振明), Long Mingjie (龙
            22.23%,环己酮选择性 38.65%,KA 油选择性达                          明杰),  et al. Catalysis of axial supported-metalloporphyrins for
                                                                   cyclohexane hydroxylation[J]. Journal of Hunan University(Natural
            60.88%。                                                Sciences Edition)(湖南大学学报:自然科学版), 2000, 27(2): 27-30.
                 后续将制备不同相对分子质量的 SMA-Co 用于                      [10]  Velusamy S, Punniyamurthy T. Copper( Ⅱ )-catalyzed C—H
            环己烷液相氧化,并探究其催化环己烷液相分子氧                                 oxidation of alkylbenzenes and  cyclohexane with hydrogen
                                                                   peroxide[J]. Tetrahedron Letters, 2004, 35(12):8955-8957.
            氧化的反应机理,从而改进生产工艺,促进实现工                             [11]  Y Ishii, S Sakaguchi. Recent progress in aerobic oxidation of
            业化。                                                    hydrocarbons by N-hydroxyimides[J]. Catalysis Today, 2007, 38 (5):
                                                                   105-113.
            参考文献:                                              [12]  Yaghi O M, Li G, Li H. Selective binding and removal of guests in a
                                                                   microporous metal-organic framework[J]. Nature, 1995, 378(6558):
            [1]   Qadir M I, Scholten J D, Dupont J.  TiO 2 nanomaterials: Highly   703-706.
                 active catalysts for theoxidation of hydrocarbons[J]. Journal of
                 Molecular Catalysis A: Chemical, 2014, 383/384(3): 225-230.   [13]  Wang Jun ( 王筠 ), Li  Quanliang ( 李全良 ). Synthesis of  N-
            [2]   Habibi D, Faraji A R, Arshadi M, et al. Efficient catalytic systems   hydroxyphthalimade by one-pot method[J]. Journal of Zhoukou
                 based on cobalt for oxidation of ethylbenzene, cyclohexene and   Normal University (周口师范学院学报), 2010, 27(2): 71-72.
                 oximes in the presence of  N-hydroxyphthalimide[J]. Applied   [14]  Qi Xinhua (齐新华). Synthesis of  Co(Ⅱ), Ni(Ⅱ) and Cu(Ⅱ)
                 Catalysis A: General, 2013, 466: 282-292.         polymer complexes and applications in green separation
            [3]   Xu Baoming (徐保明), Chen Meng (陈梦), Tang Qiang (唐强), et al.   chemistry[D]. Lanzhou: Lanzhou University (兰州大学), 2009.
                 Research progress on the oxidation of cyclohexane catalyzed by   [15]  Zhou Yulu (周玉路), Lin Shasha (林莎莎), Xia Daohong (夏道宏),
                 NHPI composite system[J]. Journal  of Henan University(Natural   et al. Oxidation  of cyclohexane catalyzed by NHPI and CoSPc[J].
                 Science) (河南大学学报:  自然科学版), 2017, 47(1): 80-84.    Fine Chemicals (精细化工), 2012, 29(1): 37-40.
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