Page 106 - 201811
P. 106

·1892·                            精细化工   FINE CHEMICALS                                  第 35 卷

            固定化柚苷酶具有良好的操作稳定性和贮藏稳定                                  Journal, 2013, 226(12): 300-311.
            性。总之,由于磁性硅基壳聚糖微球不仅比表面积                             [13]  Lian Meng (廉萌), Li Qian (李佥), Tian Jing (田晶), et al. Process
                                                                   optimization of naringinase production improved by fungi co-culture
            大,还具有很好的磁分离性能,因此磁性硅基壳聚                                 [J]. Journal of Chemical Engineering of Chinese Universities (高校
            糖微球在固定化柚苷酶方面具有很好的发展前景,                                 化学工程学报), 2017, 31(2): 394-400.
                                                               [14]  Sun X T, Li Q, Yang L R,  et al.  Chemically modified magnetic
            为其进一步的工业化发展提供了基础数据和技术                                  chitosan microspheres for Cr(Ⅵ) removal from acidic aqueous
            准备。                                                    solution[J]. Particuology, 2016, 26(3): 79-86.
                                                               [15]  Jiang D S, Long S Y, Huang J, et al. Immobilization of Pycnoporus
            参考文献:                                                  sanguineus laccase on magnetic chitosan microspheres[J]. Biochemical
                                                                   Engineering Journal, 2005, 25(1): 15-23.
            [1]  Li  Yanli  (李艳丽). The preparation and characterization of biopolymer   [16] Ren Jiaoyan (任娇艳), Kang Xiaoyan (康小燕), Chen Yun (陈云),
                 hydrogels[D]. Nanjing: Southeast University (东南大学), 2016.   et al.  Immobilization  of  xanthine oxidase on magnetic chitosan
            [2]   Karthikeyan O P, Chidambarampadmavathy K, Cirés S, et al. Review   microspheres and study of its enzymatic properties[J]. Modern Food
                 of sustainable  methane  mitigation and biopolymer production[J].
                 Critical Reviews in Environmental Science  and Technology, 2015,   Science and Technology (现代食品科技), 2016, 32(12): 66-73.
                 45(15): 1579-1610.                            [17]  Shi Qinghong (史清洪), Peng Guanying (彭冠英), Sun Shu (孙舒),
            [3]   Nitta S K, Numata K. Biopolymer-based nanoparticles for drug/gene   et al. Process intensification and characterization of agarose gel
                 delivery and tissue engineering[J]. International Journal of Molecular   activation with epichlorohydrin[J]. The Chinese Journal of Process
                 Sciences, 2013, 14(1): 1629-1654.                 Engineering (过程工程学报), 2007, 7(4): 743-746.
            [4]   Yang H,  Yuan B,  Lu Y B,  et al. Preparation  of magnetic chitosan   [18]  Davis W B. Determination of flavanones in citrus fruits[J]. Analytical
                 microspheres and its applications in wastewater treatment[J]. Science   Chemistry, 1947, 19(7): 476-478.
                 in China Series B: Chemistry, 2009, 52(3): 249-256.   [19]  Cui Peiwu (崔培梧), Li Jilie (黎继烈), Xiao Zuowei (肖作为), et al.
            [5]   Şekeroğlu G, Fadıloğlu S, Göğüş F. Immobilization and   Immobilization of  Penicillium  sp. Naringinase on epoxy resin[J].
                 characterization of naringinase for the hydrolysis of naringin[J].   Food and Fermentation Industries (食品与发酵工业), 2014, 40(5):
                 European Food Research and Technology, 2006, 224(1): 55-60.   87-92.
            [6]   Ribeiro M H.  Naringinases: occurrence, characteristics, and   [20]  Wang Y J, Wang X H, Luo G S, et al. Adsorption of bovin serum
                 applications[J]. Applied Microbiology and Biotechnology, 2011,   albumin(BSA) onto the magnetic chitosan nanoparticles prepared by
                 90(6): 1883-1895.                                 a  microemulsion system[J]. Bioresource Technology, 2008, 99(9):
            [7]   Lei Shengjiao (雷生姣), Yu Haili (余海立), Huang Chao (黄超), et al.   3881-3884.
                 Cross-linked chitosan as a carrier for immobilization of naringinase   [21]  Zhu H Y, Jiang R, Xiao L,  et al. Preparation, characterization,
                 [J]. Food Science (食品科学), 2013, 34(23): 233-238.   adsorption kinetics and thermodynamics of novel magnetic chitosan
            [8]   Awad G  E A, Abd El Aty A  A, Shehata A N,  et al. Covalent   enwrapping nanosized  γ-Fe 2O 3 and multi-walled carbon  nanotubes
                 immobilization of microbial naringinase using novel thermally stable   with enhanced adsorption properties for methyl  orange[J].
                 biopolymer for hydrolysis of naringin[J]. Biotechnology, 2016, 6(1): 1-10.   Bioresource Technology, 2010, 101(14): 5063-5069.
            [9]   Xiao A F, You  H Y, Wu C Z,  et al. Immobilization and   [22]  Sun X T, Yang L R, Xing H F, et al. Synthesis of polyethylenimine-
                 characterization of naringinase from  aspergillus aculeatus onto   functionalized poly (glycidyl methacrylate)  magnetic microspheres
                 magnetic Fe 3O 4 nanoparticles[J]. Nanoscience and Nanotechnology   and their excellent Cr(Ⅵ) ion  removal properties[J].  Chemical
                 Letters, 2015, 7(9): 770-778.                     Engineering Journal, 2013, 234(19): 338-345.
            [10]  Sun X T, Yang L  R, Li Q,  et al. Amino-functionalized  magnetic   [23]  Zhang Hailong (张海龙), Qiao Xin (乔昕), Yao Hongjuan (姚红娟),
                 cellulose nanocomposite as adsorbent for  removal of Cr(VI):   et al. Synthesis of peptide-ligand affinity chromatography media with
                 Synthesis and adsorption studies[J]. Chemical Engineering Journal,   controllable ligand  density[J]. Chemical Reaction Engineering and
                 2014, 241(1): 175-183.                            Technology (化学反应工程与工艺), 2007, 23(4): 289-295.
            [11]  Liu Y D, Fang F  F, Choi H J. Core-shell-structured silica-coated   [24]  Hu B, Pan J, Yu H L, et al. Immobilization of Serratia marcescens
                 magnetic carbonyl iron microbead and its magnetorheology with   lipase onto amino-functionalized magnetic nanoparticles for repeated
                 anti-acidic characteristics[J]. Colloid  and Polymer Science, 2011,   use in enzymatic  synthesis of Diltiazem intermediate[J]. Process
                 289(11): 1295-1298.                               Biochemistry, 2009, 44(9): 1019-1024.
            [12]  Ren  Y,  Abbood H A, He F B,  et al. Magnetic EDTA-modified   [25]  Diab M A, El-Sonbati A Z,  Al-Halawany M M,  et al. Thermal
                 chitosan/SiO 2/Fe 3O 4 adsorbent: Preparation, characterization, and   stability and degradation of chitosan modified by cinnamic acid[J].
                 application in heavy metal adsorption[J]. Chemical Engineering     Open Journal of Polymer Chemistry, 2012, 2(1): 14-20.
   101   102   103   104   105   106   107   108   109   110   111