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首页> 外文期刊>Advances in Chemical Engineering and Science >Application of a Particle Extraction Process at the Interface of Two Liquids in a Drop Column—Consideration of the Process Behavior and Kinetic Approach
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Application of a Particle Extraction Process at the Interface of Two Liquids in a Drop Column—Consideration of the Process Behavior and Kinetic Approach

机译:颗粒萃取工艺在滴液塔中两种液体的界面上的应用—工艺行为和动力学方法的考虑

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摘要

The focus of this research is a new type of particle extraction process for the transfer of magnetite nanoparticles from an aqueous to an immiscible organic phase, directly through the liquid-liquid phase boundary in a drop column. The particle extraction process comprises several advantages such as a minimum amount of stabilizing surfactant, no exposure of the particles to a gas atmosphere and with it the avoidance of sintering by capillary forces and a high particle concentration in the receiving phase as well. The study presents experimental results of the characterization of the process environment and the transfer behavior in a drop column. The solution of surfactant in the continuous phase has been investigated during a particle-free phase transfer experiment including the measurements of the total organic carbon (TOC) content and analysis of the size of the stabilized droplets using the laser diffraction spectroscopy. The determination of the transfer fluxes, the mass flows as well as the yield of transferred magnetite by ICP-OES measurements provide information on the impact of interaction of the elementary processes at the phase boundary. Furthermore, the transfer kinetics of the process is described and compared with calculated theoretical values resulting from a kinetic approach.
机译:这项研究的重点是一种新型的颗粒提取方法,该方法可直接通过液滴塔中的液相边界将磁铁矿纳米颗粒从水相转移到不可混溶的有机相。颗粒提取方法具有几个优点,例如稳定表面活性剂的量最少,颗粒不暴露于气体气氛中,并且避免了毛细管力引起的烧结以及接收相中的高颗粒浓度。这项研究提出了表征过程环境和转移行为的实验结果。在无颗粒相转移实验中研究了表面活性剂在连续相中的溶液,该实验包括测量总有机碳(TOC)含量和使用激光衍射光谱分析稳定液滴的大小。通过ICP-OES测量确定转移通量,质量流量以及转移磁铁矿的产量,可提供有关基本过程在相边界处相互作用的影响的信息。此外,描述了该方法的转移动力学,并将其与由动力学方法得出的理论值进行了比较。

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