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·1902·                            精细化工   FINE CHEMICALS                                  第 36 卷

            直接受到香芹酚添加量的影响。                                         版社), 2016: 12.
                (2)当香芹酚体积分数为 0.8%时,香芹酚/海藻                      [14]  Atarés  L,  Bonilla  J,  Chiralt  A.  Characterization  of  sodium
                                                                   caseinate-based  edible  films  incorporated  with  cinnamon  or  ginger
            酸钠复合膜的综合性能最优,水溶性为 90.48%,透明                            essential  oils[J].  Journal  of  Food  Engineering,  2010,  100(4):
                        –1
                                                        2
            度为 0.23 mm ,水蒸气透过速率为 0.17 g/(d·cm ),                   678-687.
                                                               [15]  Hafsa J, Smach M A, Ben Khedher M R, et al. Physical, antioxidant
            拉伸强度为 72.24  MPa,断裂伸长率为 83.41%,对
                                                                   and antimicrobial properties of chitosan films containing eucalyptus
            丰孢木霉菌的抑菌率为 65.79%。                                     globulus essential oil[J]. LWT - Food Science and Technology, 2016,
                (3)香芹酚/海藻酸钠生物复合膜作为可生物降                             68: 356-364.
                                                               [16]  Yang  M  L, Shi J S,  Xia  Y  Z. Effect of  SiO 2,  PVA  and  glycerol
            解的环保包装材料在食品保鲜应用方面具有潜在价
                                                                   concentrations  on  chemical  and  mechanical  properties  of  alginate-
            值,尤其是双孢蘑菇的保鲜,且符合中国可持续发                                 based films[J]. International Journal of Biological Macromolecules,
            展战略和环保政策。                                              2018, 107: 2686-2694.
                                                               [17]  Gholizadeh  B  S,  Buazar  F,  Hosseini  S  M,  et al.  Enhanced
            参考文献:                                                  antibacterial activity, mechanical and physical properties of alginate /
                                                                   hydroxyapatite  bionanocomposite  film[J].  International  Journal  of
            [1]   Garrido T, Etxabide A, Guerrero P, et al. Characterization of agar /   Biological Macromolecules, 2018, 116: 786-792.
                 soy protein biocomposite films: Effect of agar on the extruded pellets   [18]  Abdel Aziz M S, Salama H E, Sabaa M W. Biobased alginate / castor
                 and  compression  moulded  films[J].  Carbohydrate  Polymers,  2016,   oil  edible  films  for  active  food  packaging[J].  LWT  -  Food  Science
                 151: 408-416.
                                                                   and Technology, 2018, 96: 455-460.
            [2]   Shankar  S,  Rhim  J  W.  Preparation  of  nanocellulose  from  micro-
                                                               [19]  Ojagh  S  M,  Rezaei  M,  Razavi  S  H,  et al.  Development  and
                 crystalline cellulose: The effect on the performance and properties of
                                                                   evaluation  of  a  novel  biodegradable  film  made  from  chitosan  and
                 agar-based  composite  films[J].  Carbohydrate  Polymers,  2016,  135:
                                                                   cinnamon  essential  oil  with  low  affinity  toward  water[J].  Food
                 18-26.
                                                                   Chemistry, 2010, 122: 161-166.
            [3]   Tavassolikafrani  E,  Shekarchizadeh  H,  Masoudpourbehabadi  M.   [20]  Alcântara  A  C  S,  Aranda  P,  Darder  M,  et al.  Bionanocomposites
                 Development  of  edible  films  and  coatings  from  alginates  and   based  on  alginate–zein/layered  double  hydroxide  materials  as  drug
                 carrageenans[J]. Carbohydrate Polymers, 2016, 137: 360-374.   delivery  systems[J].  Journal  of  Materials  Chemistry,  2010,  20:
            [4]   Mazarei  Z,  Rafati  H.  Nanoemulsification  of  Satureja khuzestanica   9495-9504.
                 essential  oil  and  pure  carvacrol;  comparison  of  physicochemical
                 properties and antimicrobial activity against food pathogens[J]. LWT -   [21]  Zhang  Z,  Li  N,  Li  H,  et al.  Preparation  and  characterization  of
                                                                   biocomposite  chitosan  film  containing  Perilla frutescens  (L.) Britt.
                 Food Science and Technology, 2019, 100: 328-334.
                                                                   essential oil[J]. Industrial Crops and Products, 2018, 112: 660-667.
            [5]   Wang Juan (王娟), Cheng Meng (程萌), Kong Ruiqi (孔瑞琪), et al.
                                                               [22]  Hasheminya  S  M,  Mokarram  R  R,  Ghanbarzadeh  B, et al.
                 Inhibitory  and  fresh-keeping  effects  study  of  plant  essential  oil
                                                                   Development and characterization of biocomposite films made from
                 sodium alginate composite film on Agaricus bisporus[J]. Transactions of
                                                                   kefiran, carboxymethyl cellulose and Satureja Khuzestanica essential
                 the  Chinese  Society  of  Agricultural  Engineering  (农业工程学报),
                 2019, 35(5): 311-318.                             oil[J]. Food Chemistry, 2019, 289: 443-452.
            [6]   Acosta S, Chiralt A, Santamarina P, et al. Antifungal films based on   [23]  Arfat Y L, Benjakul S, Prodpran T, et al. Properties and antimicrobial
                 starch-gelatin blend, containing essential oils[J]. Food Hydrocolloids,   activity of fish protein isolate /fish skin gelatin film containing basil
                 2016, 61: 233-240.                                leaf  essential  oil  and  zinc  oxide  nanoparticles[J].  Food  Hydrocolloids,
            [7]   Jiao  Xinxin  (焦欣欣),  Zhao  Lei  (赵雷),  Wang  Kai  (王凯), et al.   2014, 41: 265-273.
                                                               [24]  Lei Y, Wu H, Jiao C, et al. Investigation of the structural and physical
                 Preparation and characterization of sodium alginate - gelatin - ellagic
                 acid  blended  film[J].  Food  Science  (食品科学),  2018,  39(21):   properties,  antioxidant  and  antimicrobial  activity  of  pectin-konjac
                 260-266.                                          glucomannan  composite  edible  films  incorporated  with  tea
            [8]   Wu Jia (吴佳). Characterization of pullulan-chitosan blend film[D].   polyphenol[J]. Food Hydrocolloids, 2019, 94: 128-135.
                 Wuxi: Jiangnan University (江南大学), 2012.       [25]  Zhang Y, Ma Q, Critzer F, et al. Physical and antibacterial properties
            [9]   Hassannia-Kolaee M, Khodaiyan F, Pourahmad R, et al. Development of   of  alginate  films  containing  cinnamon  bark  oil  and  soybean  oil[J].
                 ecofriendly bionanocomposite: Whey protein isolate / pullulan films   LWT-Food Science and Technology, 2015, 64(1): 423-430.
                 with nano-SiO 2[J]. International Journal of Biological Macromolecules,   [26]  Monedero  F  M,  Fabra  M  J,  Talens  P,  et al.  Effect  of  oleic
                 2016, 86: 139-144.                                acid-beeswax mixtures on mechanical, optical and barrier properties
            [10]  Zhang P, Zhao Y, Shi Q. Characterization of a novel edible film based   of  soy  protein  isolate  based  films[J].  Journal  of  Food  Engineering,
                 on  gum  ghatti:  Effect  of  plasticizer  type  and  concentration[J].   2009, 91: 509-515.
                 Carbohydrate Polymers, 2016, 153: 345-355.    [27]  Hosseini S F, Rezaei M, Zandi M, et al. Bio-based composite edible
            [11]  Vimala  K,  Yallapu  M  M,  Varaprasad  K,  et al.  Fabrication  of   films  containing  origanum  vulgare  essential  oil[J].  Industrial  Crops
                 curcumin  encapsulated  chitosan  -  PVA  silver  nanocomposite  films   and Products, 2015, 67: 403-413.
                 for  improved  antimicrobial  activity[J].  Journal  of  Biomaterials  and   [28]  Jahed  E,  Khaledabad  M  A,  Almasi  H,  et al.  Physicochemical
                 Nanobiotechnology, 2011, 2(1): 55-64.             properties  of  carum  copticum  essential  oil  loaded  chitosan  films
            [12]  Zhang R, Wang X, Li L, et al. Optimization of konjac glucomannan /   containing  organic  nanoreinforcements[J].  Carbohydrate  Polymers,
                 carrageenan  /  nano-SiO 2  coatings  for  extending  the  shelf-life  of   2017, 164: 325-338.
                 Agaricus  bisporus[J].   International   Journal   of   Biological   [29]  Abdollahi  M,  Rezaei  M,  Farzi  G,  et al.  Improvement  of  active
                 Macromolecules, 2019, 122: 857-865.               chitosan  film  properties  with  rosemary  essential  oil  for  food
            [13]  China  Food  and  Drug  Administration  (国家食品药品监督管理总  packaging[J]. International Journal of Food Science and Technology,
                 局 ).  Microbiological  examination  of  food  hygiene-Detection  of   2012, 47(4): 847-853.
                 aerobic  plate  count  (食品卫生微生物学检验菌落总数测定):GB/
                 T4789.2—2016[S]. Beijing: Standards Press of China (中国标准出                   (下转第 1955 页)
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