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首页> 外文期刊>Applied clay science >Exploring the interactions between starches, bentonites and plasticizers in sustainable barrier coatings for paper and board
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Exploring the interactions between starches, bentonites and plasticizers in sustainable barrier coatings for paper and board

机译:探索纸张和纸板可持续屏障涂层中淀粉,膨润土和增塑剂之间的相互作用

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摘要

Effective food packaging is a major factor in the current global drive to minimise food waste. Starch is an excellent oxygen barrier for packaging but it is brittle and moisture sensitive. The addition of layered minerals and plasticizers can significantly improve the moisture barrier and flexibility of the resulting composite. Some combinations of starch and plasticizer are incompatible but our results show that the addition of bentonite ensures the formation of coherent starch films with much improved moisture barrier regardless of the starch-plasticizer compatibility. It was clearly demonstrated that improvement of the moisture barrier was critically dependent on the layer charge of the bentonite used. Starch was readily accommodated in the interlayer space of bentonites with a layer charge of 0.4 electrons per formula unit but was not adsorbed if the layer charge was above this value. Starch-bentonite-plasticizer coatings prepared using bentonites with the lower layer charge routinely produced higher barriers to water vapour. The water vapour transmission rate (WVTR) of the base paper was reduced from 780 to 340 +/- 20 gm(2) day(-1) when coated with starch alone. This was further reduced to 48 or 66 gm(2) day(-1) if glycerol or lower charge bentonite, respectively, was added to the starch. Optimised coatings of starch-lower charge bentonite-plasticizer provided WVTR values of = 10 gm(2) day(-1) whereas WVTR values for comparative coatings prepared using the higher charge bentonites were three to four times higher (35 +/- 7 gm(2) day(-1)). Scanning electron micrographs provided clear evidence for the presence of 60 nm thick supramolecular layers formed from starch-bentonite-plasticizer in the samples coated on either glass or paper. The WVTR values for these low-eco footprint coatings are competitive with proprietary coatings prepared using petroleum derived resins.
机译:有效的食品包装是目前全球驱动器的主要因素,以尽量减少食物垃圾。淀粉是一种用于包装的优良氧气屏障,但它是脆性和湿度敏感的。添加层状矿物和增塑剂可以显着改善所得复合材料的防潮层和柔韧性。淀粉和增塑剂的一些组合是不相容的,但我们的结果表明,膨润土的加入确保了与淀粉增塑剂相容性多得多的水分屏障形成相干淀粉膜。清楚地证明,水分屏障的改善尺寸依赖于所用膨润土的层电荷。淀粉容易地容纳在膨润土的层间空间中,具有每配方单元的<0.4电子的层电荷,但如果层电荷高于该值,则没有吸附。使用具有下层的膨润土制备的淀粉 - 膨润土 - 增塑剂涂层通常为水蒸气产生较高的屏障。当单独用淀粉涂覆时,基本纸的水蒸气透射率(WVTR)从780降至340 +/-20克(2)天(-1)。如果分别将甘油或较低的膨润土分别加入到淀粉中,这进一步降低至48或66克(2)天(-1)。优化的淀粉较低电荷膨润土 - 增塑剂提供了WVTR值的<= 10克(2)天(-1),而使用较高电荷膨润土制备的对比涂层的WVTR值较高三至四倍(35 +/- 7 GM(2)天(-1))。扫描电子显微照片提供了在涂覆在任一玻璃或纸上的样品中的样品中由淀粉 - 膨润土 - 增塑剂形成的60nm厚的超分子层存在明显的证据。这些低ECO脚印涂层的WVTR值与使用石油衍生的树脂制备的专用涂层具有竞争力。

著录项

  • 来源
    《Applied clay science》 |2019年第12期|105272.1-105272.14|共14页
  • 作者单位

    Sheffield Hallam Univ Mat & Engn Res Inst Sheffield S1 1WB S Yorkshire England;

    Sheffield Hallam Univ Mat & Engn Res Inst Sheffield S1 1WB S Yorkshire England;

    Sheffield Hallam Univ Mat & Engn Res Inst Sheffield S1 1WB S Yorkshire England|26 Springfield Rd Nottingham NG15 6PR England;

    Karlstad Univ Dept Engn & Chem Sci SE-65188 Karlstad Sweden;

    Karlstad Univ Dept Engn & Chem Sci SE-65188 Karlstad Sweden|BillerudKorsnas AB Storjohanns Vag 4 SE-66428 Grums Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Barrier coating; Bentonite; Starch; Layer charge; X-ray diffraction; SEM;

    机译:屏障涂层;膨润土;淀粉;层电荷;X射线衍射;SEM;

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