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Metal decorated polymeric membranes for low trans partial hydrogenation of soybean oil.

机译:金属装饰的聚合物膜,用于大豆油的低反式部分氢化。

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摘要

Multiphase reactions are often constrained by mass transfer limitations which in many cases lead to low reaction rates and undesirable product distribution. Here we fabricate integral-asymmetric polymeric membranes decorated with metal catalysts, to supply hydrogen directly at or near the surface of the catalyst, thus minimizing mass-transfer limitations. The metal decorated polymeric membranes were used for partial hydrogenation of soybean oil with the goal to minimize trans fatty acid (TFA) formation. It was discovered that polymeric membranes with "defective" metal coatings are well suited to achieve low-TFA hydrogenation of soybean oil at quite moderate process conditions.;The metal decorated polymeric membranes studied produced significantly lower trans fatty acid as compared to traditional reactors (3.5 wt% at an Iodine Value of 95 as compared to 8 wt% in slurry reactor), at pressures and temperatures which are compatible with the existing systems. The process concept is simpler than some of the alternatives being studied and no catalyst recovery from the oil is needed since the catalyst is immobilized on the membrane.;Metal decorated polymeric membranes having a variety of hydrogen fluxes, skin defects, and catalyst loadings were evaluated. All the metal decorated polymeric membranes evaluated produced low TFA. Membranes with high hydrogen fluxes resulted in higher hydrogenation rates but had little influence on TFA formation. Membranes with higher catalyst loadings resulted in lower TFA but increased saturate formation.;Metal decorated polymeric membranes behaved differently to changes in temperature and pressures when compared to traditional slurry reactors. They showed a minor increase in TFA with temperature (50-90°C) as compared to traditional slurry reactors. The hydrogenation rate and cis-trans isomerization also showed a modest dependence on pressure.;Due to the defective nature of the metal layer on the polymeric membrane skin and the low temperatures (50-90°C) at which the reactor is operating, the hydrogen permeability of metals has a minor influence on hydrogenation reaction. A range of metal catalysts can be used for the given system.;Repeat runs using the same membrane showed a decrease in hydrogenation activity, without any change in isomerization or hydrogenation selectivity. Initial results indicate the decreased activity may not be from leaching of catalyst from membrane surface nor from sulfur poisoning.
机译:多相反应通常受到传质限制的约束,这在许多情况下会导致低反应速率和不良的产物分布。在这里,我们制作了装饰有金属催化剂的整体非对称聚合物膜,以直接在催化剂表面或附近提供氢,从而最大程度地减少了传质限制​​。金属装饰的聚合物膜用于大豆油的部分氢化,目的是最大程度地减少反式脂肪酸(TFA)的形成。发现具有“有缺陷的”金属涂层的聚合物膜非常适合在相当中等的工艺条件下实现大豆油的低TFA加氢。;与传统的反应器相比,所研究的金属装饰聚合物膜产生的反式脂肪酸要低得多(3.5在与现有系统兼容的压力和温度下,碘值为95,而碘值为95,而浆料反应器为8 wt%。该方法的概念比正在研究的一些替代方法更简单,并且由于催化剂固定在膜上,因此无需从油中回收催化剂。;评估了具有各种氢通量,皮肤缺陷和催化剂负载量的金属装饰聚合物膜。评价的所有金属装饰的聚合物膜均产生低TFA。具有高氢通量的膜导致较高的氢化速率,但对TFA的形成影响很小。具有较高催化剂负载量的膜导致较低的TFA但增加了饱和产物的形成;与传统的淤浆反应器相比,金属装饰的聚合物膜在温度和压力变化方面表现不同。与传统的淤浆反应器相比,它们显示出随温度(50-90°C)的TFA略有增加。氢化速率和顺-反异构化也显示出对压力的适度依赖;由于聚合物膜表层上金属层的缺陷性质以及反应器运行的低温(50-90°C),金属的氢渗透性对氢化反应影响很小。对于给定的系统,可以使用多种金属催化剂。使用同一膜的重复运行显示出氢化活性降低,而异构化或氢化选择性没有任何变化。初步结果表明,活性降低可能不是由于膜表面催化剂的浸出或硫中毒引起的。

著录项

  • 作者

    Singh, Devinder.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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