期刊文献+

响应面法优化纳米UF香精微胶囊工艺 被引量:6

Optimization of UF Fragrance Nano-capsules by Response Surface Analysis
原文传递
导出
摘要 采用原位聚合法以脲醛树脂(urea-formaldehyde resins,UF)为壁材制备的微胶囊常在微米级水平上,实验选用吐温80作乳化剂,通过探究实验工艺,制备出了纳米粒径的脲醛树脂香精微胶囊。进行了乳化香精粒径、固含量、壁芯比(UF壁材与香精芯材的质量比,下同)单因素实验,以激光粒度仪测定的微胶囊粒径大小和分布情况为考察指标,确定了3种因素的水平范围。实验表明,当体系固体质量分数小于1%,壁芯比为(2~5):1,乳化香精粒径为50~200 nm时可制得粒径分布均匀的纳米粒径微胶囊。用响应面分析软件进行实验设计,得到了微胶囊粒径与3种因素之间的三次回归模型,其R2值为0.992 7。对模型进行4组实验验证,验证实验结果相对偏差在6%以内,该模型具有较高可信度。 Based on the micron level size of microencapsules prepared by in-situ polymerization method with urea formaldehyde resin as wall material, nano-capsules were prepared with urea-formaldehyde resin as shell, sandalwood fragrance as core and Tween 80 as emulsifier. The shell/core ratio, size of emulsified fragrance, solid content were studied as single effect factor. Three factors' level was ranged by evaluation of particle size and distribution. It shows that, when the system solid content was less than 1% , shell/core ratio was ( 2 - 5 ) : 1, emulsified fragrance particle size was 50 - 200 nm, nano-capsules with homogeneous particle size distribution could be obtained. A quadratic polynomial model between the size of UF partials and the three factors was established by using response surface methodology. In addition,R2 value of the model was 0. 992 7,while the relative deviation of the verification experiment was within 6%, which shows that the model is of high reliability in predicting size of UF nanomicrocapsules.
出处 《精细化工》 EI CAS CSCD 北大核心 2013年第1期51-55,63,共6页 Fine Chemicals
基金 国家"973"前期基础研究基金(2009CB226104) 国家自然科学基金面上项目(21076125)~~
关键词 香精微胶囊 纳米工艺 响应面设计 fragrance microcapsules nano-technology response surface design
  • 相关文献

参考文献15

  • 1Salata O V. Applications of nanoparticles in biology and meilicine[J]. Journal of Hanohiotechnoioor,2004,2( 1):1 -6.
  • 2于海艳,杨剑,张兴.香精微胶囊制备技术新进展及其发展趋势分析[J].食品与发酵工业,2007,33(2):108-113. 被引量:19
  • 3Noda A,Yamaguchi M,Aizawa M,et al. Cosmetic containing finesoft microcapsules[ P]. EP0316054 B1,1993 -08 -04.
  • 4Moustafa MG. Fouda,HM. Fahray. Multifunctional finish and cottoncellulose fabric [J]. Carbohydrate Polymers, 2011,86:625 -629.
  • 5Hu Jing,Xiao Zuobing,Zhou Rujun,et al. Synthesis andcharacterization of polybutylcyanoacry late-encapsulated rosefragrance nanocapsule [ J]. Flavor and Fragrance Journal, 2011,26:162 -173.
  • 6Crespy D,Musyanovych A,Landfester K. Synthesis of polymerparticles and nanocapsules stabilized with PEO/PPO containingpolymerizable surfactants in miniemulsion[ J]. Colloid Polym Sci,2006,284:780 -787.
  • 7朱银燕,安学勤.微乳中界面聚合法制备包载胰岛素纳米胶囊[J].日用化学工业,2009,39(1):5-8. 被引量:5
  • 8Hideaki Ichiura,Masaru Takayama,Noriyoshi Nishida,et al.Interfacial polymerization preparation of functional paper coatedwith polyamide film containing volatile essential oil [ J ]. Journal ofApplied Polymer Science,2011 ,124(1) :242 - 247.
  • 9张丹,闵伟红,刘景圣,解蕙铭,张春,李锁霞,方丽.响应面法优化蛋白酶菌株发酵条件[J].食品科学,2011,32(13):248-253. 被引量:18
  • 10李佩艳,王锋,尹飞,刘建学,戚艳艳,熊瑞,裴亚锋.响应面法优化酶法提取红薯叶总黄酮的工艺[J].食品工业科技,2012,33(1):275-277. 被引量:22

二级参考文献83

共引文献79

同被引文献104

引证文献6

二级引证文献28

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部