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·2568·                            精细化工   FINE CHEMICALS                                 第 39 卷

                                                                   alternative processes for spice production—A review[J]. Trends in
                                                                   Food Science and Technology, 2007, 18(5): 260-268.
                                                               [2]   BAKRY A M, ABBAS S, ALI B, et al. Microencapsulation of oils: A
                                                                   comprehensive review of benefits,  techniques, and applications[J].
                                                                   Comprehensive Reviews in Food Science  and  Food Safety,  2015,
                                                                   15(1): 143-182.
                                                               [3]   HE L, HU J, DENG W J. Preparation and application of flavor and
                                                                   fragrance capsules[J]. Polymer Chemistry, 2018, 9(40): 4926-4946.
                                                               [4]   LEÓN G, PARET  N, FANKHAUSER P,  et al. Formaldehyde-free
                                                                   melamine microcapsules as core/shell delivery systems for encapsulation
                                                                   of volatile active ingredients[J]. RSC Advances, 2017, 7(31):
                                                                   18962-18975.

                                                               [5]   OUYANG X, ZHOU L, XU X L, et al. Preparation and properties of
            图 11   摩擦次数对织物质量和香味值的影响(a);循环                          poly(MMA-co-TMPTA)/fragrance  microcapsules[J]. Colloids and
                                                                   Surfaces A: Physicochemical and Engineering Aspects, 2021, 614(5):
                   洗涤后织物的香味释放性能(b)
            Fig. 11    Effect of friction times on fabric quality and flavor   [6]   126103.
                                                                   LIU F, ANTONIOU J, LI  Y,  et al. Chitosan/sulfobutylether-
                   value (a); Fragrance release performance of fabrics
                   after cyclic washing (b)                        β-cyclodextrin nanoparticles as a potential approach for tea polyphenol
                                                                   encapsulation[J]. Food Hydrocolloids, 2016, 57: 291-300.
                                                               [7]   LIU J, LEI L, YE F,  et al. Aggregates of octenylsuccinate oat
            3   结论                                                 β-glucan as novel capsules to stabilize curcumin over food
                                                                   processing, storage and digestive  fluids and to enhance its
                                                                   bioavailability[J]. Food and Function, 2018, 9(1): 491-501.
                 以生物质材料 EC 为壁材、薰衣草精油为芯材,                       [8]   ABBASPOOR S, ASHRAFI A, SALEHI M. Synthesis and
            通过溶剂蒸发法制备精油微胶囊,探究反应过程搅                                 characterization of ethyl cellulose micro/nanocapsules using solvent
            拌速率、精油添加量对微胶囊形貌、中值粒径的影                                 evaporation method[J]. Colloid and Polymer Science, 2018, 296(3):
                                                                   1-6.
            响,利用 GC-MS 测试了反应前后精油成分变化情                          [9]   CHENG C (程晨), DU S G (杜仕国),  LU Y L  (鲁彦玲),  et al.
            况。并将微胶囊通过湿法涂层与拉伸前后的棉针织                                 Preparation and characterization of red phosphorus encapsulated with
                                                                   ethyI cellulose[J]. Chemical Industry and Engineering Progress (化
            物进行结合,以涂层织物表面形貌、透气率、香味                                 工进展), 2019, 38(4): 1846-1852.
            值为评价指标,并对其吸湿性、耐磨性、水洗牢度                             [10]  MURTAZA G. Ethylcellulose microparticles: A review[J]. Acta Poloniae
            和物理性能进行测试。结果表明,微胶囊为壳核球                                 Pharmaceutica, 2012, 69(1): 11-22.
                                                               [11]  ANDERSSON C, JAERNSTROEM L, FOGDEN A, et al. Preparation
            形颗粒,微胶囊化前后樟脑含量大幅度下降,而乙                                 and incorporation of microcapsules in functional coatings for
            酸芳樟酯含量提高至 49.73%(以微胶囊中提取的精                             self-healing of packaging board[J]. Packaging  Technology and
                                                                   Science, 2009, 22(5): 275-291.
            油质量为基准),证明微胶囊化有助于延长香味释放                            [12]  WANG X G (王信刚), XIA L (夏龙), FU X G (扶兴国), et al.
            行为。当搅拌速率为 1200 r/min、壁材 EC 质量为 1.0 g、                  Particle characteristics and sustained release properties of epoxy
            芯材精油质量为 1.5 g 时,微胶囊包封率最高为                              resin/ethyl cellulose  microcapsule[J]. Journal of Building
                                                                   Materials(建筑材料学报), 2020, 23(2): 396-400, 484.
            44.3%,经 30 d 的释放后依旧有 39.2%的香味保留                    [13]  BEZERRA F M, CARMONA O  G, CARMONA C G,  et al.
            率。添加含量为 12.5%的微胶囊(以黏合液质量为                              Controlled  release  of microencapsulated citronella essential oil on
                                                                   cotton and polyester matrices[J]. Cellulose, 2016, 23: 1459-1470.
            基准)作为涂层组分,通过湿法涂层技术,可获得
                                                               [14]  WANG J X (王婧昕). Development and properties characterization
            高透气率的香味涂层织物。并且在拉伸条件下制备                                 of scented fabrics based on micro-capsule technology[J]. Shanghai
            的涂层织物可以使微胶囊更均匀地涂覆于织物表                                  Textile Science & Technology (上海纺织科技), 2021, 49(10): 44-46.
                                                               [15]  MERTGEN  C,  ENGINAR  H, YLMAZ H. Microencapsulation of
            面,香味值最高为 382,其在 6 h 的释放行为后香味                           fragrance with polyurethane-urea and application on different
            值为 179。拉伸-涂层织物抗弯刚度数值为未拉伸-                              fabrics[J]. Iranian Journal of Science and TechnologyTransaction A:
                                                                   Science, 2021, 45: 1677-1687.
            涂层织物的 2.23 倍,适合制备保型性纺织品,而未
                                                               [16]  CHOI K, CHUNG H, LEE B, et al. Clothing temperature changes of
            拉伸-涂层织物的伸长率高达 120.84%,更适合柔软                            phase change  material-treated warm-up in cold and warm
            纺织品的制备。两种涂层织物均具有优异的摩擦牢                                 environments[J]. Fibers and Polymers, 2005, 6(4): 343-347.
                                                               [17]  VONCINA B, KREFT O, KOKOL V, et al. Encapsulation of rosemary
            度和耐洗性,摩擦后香味值提高,为原始的 1,32 倍,                            oil in ethylcellulose microcapsules[J]. Analysis, 2009, 1: 13-19.
            质量均保留在 96%以上,5 次水洗循环后香味保留                          [18]  HU S W (胡思伟). Ethyl  acetate recovery method by combining
                                                                   activated carbon adsorption and runner adsorption thereof:
            率保持在 35%以上。该涂层方法保留了织物原有白
                                                                   CN109731433B[P]. 2021-12-10.
            度和织物表面形貌,力学强度得以提升,具有良好                             [19]  MAHMOUDIAN  M, NOZAD  E, KOCHAMESHKI M G,  et al.
            的吸湿透气性和机械性能。                                           Preparation and investigation of hybrid self-healing coatings
                                                                   containing linseed oil loaded nanocapsules, potassium ethyl xanthate
                                                                   and benzotriazole on copper surface[J]. Progress in Organic Coatings,
            参考文献:
                                                                   2018, 120: 167-178.
            [1]   SCHWEIGGERT  U, CARLE R, SCHIEBER  A. Conventional and                     (下转第 2592 页)
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