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Unmodified and modified porous siliceous materials as carriers for active components for food packaging.

机译:未经改性和改性的多孔硅质材料,可作为食品包装中活性成分的载体。

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摘要

Ordered porous silica materials were developed in 1992. These materials possess a uniform pore size in the mesoporous region (2--50 nm), which is in addition also variable. They are also characterized by a large pore volume and a high surface area. These ordered mesoporous silica materials are synthesized by the use of a supramolecular assembly of surfactant molecules (micelles) as the structure-directing agent for the porous structure.;SBA-15 possesses hexagonally ordered mesopores with microporous pore walls. By using a high silica precursor/surfactant ratio in the SBA-15 synthesis, a material of which part of the channels contain internal microporous nanocapsules or 'plugs' was synthesized. The first results showed these PHTS (Plugged Hexagonal Templated Silica) materials are more stable than the conventional micellar templated structures known so far, the amount of open and plugged pores can be varied and they possess a very high micropore volume. Four important parameters of the synthesis were investigated: the amount of silica precursor (tetraethylorthosilicate or TEOS), the stirring and aging temperature, and the stirring time. The adsorption of hydrocarbons (n-hexane, n-heptane, 3-methylpentane, c-hexane, toluene, 1-hexene) onto PHTS and its plug-free analogue SBA-15 was investigated to further characterize the structure.;Next to these smaller hydrocarbons, also the adsorption and desorption behavior of larger molecules, like antioxidants (thymol, chitosan, dodecyl gallate, Na-ascorbate, ascorbyl palmitate, alpha-tocopherol, origanox WS) and antimicrobial agents (nisin and lysozyme), was tested on several porous materials (laponite, SyloblockRTM, SBA-15, PHTS and MCF). These compounds can prevent food deterioration through lipid oxidation and micro-organisms. Control of the release rate of the active component from the plastic wrapping can result in an extension of the shelf-life of the food product. By inserting a porous material loaded with e.g. antioxidant into a packaging material, such an active system could be created. The adsorbent, loaded with active component, was modified in two ways to investigate the influence on the release rate: by mechanical compression and by silylation with silicon tetrachloride (SiCl4) and a commercial silicon oil. Both procedures cause obstructions in the pore channels of the adsorbent, consequently hampering diffusion of the molecules, which can delay their release.
机译:1992年开发出了有序的多孔二氧化硅材料。这些材料在中孔区域(2--50 nm)具有均匀的孔径,此外,孔径也是可变的。它们的特征还在于大的孔体积和高的表面积。这些有序的介孔二氧化硅材料是通过使用表面活性剂分子(胶束)的超分子组装作为多孔结构的结构导向剂而合成的; SBA-15具有带微孔孔壁的六角形有序介孔。通过在SBA-15合成中使用高二氧化硅前体/表面活性剂比率,合成了部分通道包含内部微孔纳米胶囊或“塞子”的材料。最初的结果表明,这些PHTS(插塞六角模板二氧化硅)材料比迄今为止已知的常规胶束模板结构更稳定,开孔和堵塞孔的数量可以变化,并且它们具有很高的微孔体积。研究了合成的四个重要参数:二氧化硅前体的量(原硅酸四乙酯或TEOS),搅拌和老化温度以及搅拌时间。研究了碳氢化合物(正己烷,正庚烷,3-甲基戊烷,正己烷,甲苯,1-己烯)在PHTS及其无塞类似物SBA-15上的吸附,以进一步表征其结构。较小的碳氢化合物,还对几种抗​​氧化剂(百里香酚,壳聚糖,十二烷基没食子酸酯,抗坏血酸钠,抗坏血酸棕榈酸酯,α-生育酚,origanox WS)和抗菌剂(乳链菌肽和溶菌酶)的吸附和解吸行为进行了测试。多孔材料(锂蒙脱石,SyloblockRTM,SBA-15,PHTS和MCF)。这些化合物可以通过脂质氧化和微生物防止食物变质。控制活性成分从塑料包装中的释放速率可以导致食品的货架期的延长。通过插入装有例如将抗氧化剂加入包装材料中,可以产生这样的活性系统。负载有活性成分的吸附剂可通过两种方法进行改性,以研究其对释放速率的影响:通过机械压缩以及通过四氯化硅(SiCl4)和市售硅油进行甲硅烷基化。两种方法都会在吸附剂的孔道中造成阻塞,从而阻碍分子的扩散,从而延迟分子的释放。

著录项

  • 作者

    Van Bavel, Ellen.;

  • 作者单位

    Universiteit Antwerpen (Belgium).;

  • 授予单位 Universiteit Antwerpen (Belgium).;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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