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Enhanced Ethylene Absorption over the Positively Charged Solid Surface

机译:在带正电荷的固体表面上增强乙烯吸收

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The transformation of homogeneous catalysts on solid supports has been regarded as one of the most efficient technologies for recovering ethylene from dry gas. Researchers focus on catalyst efficiency under many factors except the surface charge properties. In this work,absorbing liquids, AgNO3 and AgBF4 aqueous solution, are dispersed on charged solid surfaces forming a supported liquid phase absorbent (SLPA) for ethylene recovery. Three kinds of surfaces:strong acid, strong basic and strong amphoteric are created to demonstrate how the charge properties of the micro-scale interfaces between liquid and solid phases affect the ethylene absorptivity. The porous media was characterized by nitrogen sorption measurements or mercury porosimetry, zeta potential analyzer and the X-ray powder diffraction. It is found that when dispersing AgNO3 and AgBF4 aqueous solutions on a positively charged surface, the ethylene absorptivity is enhanced by 51.6% and 82.6%, respectively. And the acting mechanism of a positively charged solid surface in ethylene absorption is also discussed.
机译:在固体载体上的均相催化剂的转化被认为是从干燥气体中回收乙烯的最有效的技术之一。研究人员专注于除表面电荷特性外的许多因素下的催化剂效率。在该工作中,吸收液体,AgNO3和AgBF4水溶液分散在具有用于乙烯回收的负载型液相吸收剂(SLPA)的带电的固体表面上。三种表面:产生强酸,强碱和强两性的两性,以证明液体和固相之间的微观界面的电荷特性如何影响乙烯吸收率。多孔介质的特征在于氮吸附测量或汞孔隙率,Zeta电位分析仪和X射线粉末衍射。发现当在带正电荷的表面上分散AgNO 3和AgBF4水溶液时,乙烯吸收率分别增强51.6%和82.6%。还讨论了乙烯吸收中带正电荷的固体表面的作用机制。

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