文丘里管空化对壳聚糖微球制备及抑菌剂包埋的影响
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(1. 广西科技大学生物与化学工程学院,广西 柳州 545006;2. 广西糖资源绿色加工重点实验室,广西 柳州 545006;3. 广西高校糖资源加工重点实验室,广西 柳州 545006)

作者简介:

张昆明,男,广西科技大学讲师,博士。

通讯作者:

黄永春(1974—),男,广西科技大学教授,博士。E-mail: huangyc@yeah.net

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基金项目:

国家自然科学基金青年科学基金项目(编号:31701646);广西自然科学基金青年科学基金项目(编号:2017GXNSFBA198036);广西高等学校高水平创新团队及卓越学者计划项目(编号:桂教人\[2014\]7号);广西高校中青年教师基础能力提升项目(编号:2017KY0344);广西高校糖资源加工重点实验室开放基金项目(编号:2016TZYKF04);广西科技大学博士基金项目(编号:校科博Z04)


Effect of venturi tube-based cavitation on preparation of chitosan microspheres and loading antibacterial agent
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(1. School of Biological and Chemical Engineering, Guangxi University of Science and Technology, Liuzhou, Guangxi 545006, China; 2. Guangxi Key Laboratory of Green Processing of Sugar Resources, Liuzhou, Guangxi 545006, China; 3. Key Laboratory for Processing of Sugar Resources of Guangxi Higher Education Institutes, Liuzhou, Guangxi 545006, China)

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    摘要:

    以甲基异噻唑啉酮(MIT)为模型抑菌剂,探讨基于文丘里管的水力空化效应对离子交联法制备壳聚糖微球及包埋MIT的影响,考察空化入口压力、空化时间、壳聚糖浓度、壳聚糖和三聚磷酸钠(TPP)的质量比、MIT浓度对微球包封率的影响,并与传统机械搅拌进行比较。结果表明,壳聚糖和TPP的质量比≥2.5,文丘里管空化可稳定制备得到壳聚糖微球;制备微球的最佳工艺条件为:入口压力0.2 MPa,空化时间20 min,壳聚糖浓度3.0 g/L,TPP浓度3.0 g/L,MIT浓度0.5 mmol/L,该条件下微球包封率可达62.3%;与传统机械搅拌相比,文丘里管空化制备所得微球对MIT的包封率提高了17.7%以上。

    Abstract:

    In order to study the effect of venturi tube-based hydrodynamic cavitation on the ionic cross-linking preparation of chitosan microspheres and the encapsulation of methylisothiazolinone (MIT), which was used as a model antibacterial agent in this study. The effects of inlet pressure of venturi tube,cavitation time, chitosan concentration, mass ratio of chitosan and sodium tripolyphosphate (TPP), MIT concentration on the entrapment efficiency of chitosan microsphere were investigated, and the entrapment efficiency of microsphere prepared by venturi tube-based cavitation was compared with that prepared by conventional mechanical agitation. The results showed that the chitosan microspheres could be stably obtained by using venturi tube-based cavitation when the mass ratio of chitosan and TPP was larger than or equal to 2.5. The optimum technological conditions were as follows: the inlet pressure of venturi tube was 0.2 MPa, cavitation time was 20 min, chitosan concentration was 3.0 g/L, TPP concentration was 3.0 g/L, MIT concentration was 0.5 mmol/L, and the entrapment efficiency could be up to 62.3%. Compared to that prepared by conventional mechanical agitation, the entrapment efficiency of microsphere prepared by venturi tube-based cavitation was increased by at least 17.7%.

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张昆明,陆小菊,黄永春,等.文丘里管空化对壳聚糖微球制备及抑菌剂包埋的影响[J].食品与机械,2018,34(1):28-32.
ZHANGKunming, LUXiaoju, HUANGYongchun, et al. Effect of venturi tube-based cavitation on preparation of chitosan microspheres and loading antibacterial agent[J]. Food & Machinery,2018,34(1):28-32.

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  • 收稿日期:2017-10-01
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  • 在线发布日期: 2023-03-17
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