首页> 美国卫生研究院文献>Membranes >Application of PolyHIPE Membrane with Tricaprylmethylammonium Chloride for Cr(VI) Ion Separation: Parameters and Mechanism of Transport Relating to the Pore Structure
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Application of PolyHIPE Membrane with Tricaprylmethylammonium Chloride for Cr(VI) Ion Separation: Parameters and Mechanism of Transport Relating to the Pore Structure

机译:含三辛基甲基氯化铵的PolyHIPE膜在Cr(VI)离子分离中的应用:与孔结构相关的参数和传输机理

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摘要

The structural characteristics of membrane support directly affect the performance of carrier facilitated transport membrane. A highly porous PolyHIPE impregnated with Aliquat 336 is proposed for Cr(VI) separation. PolyHIPE consisting of poly(styrene-co-2-ethylhexyl acrylate) copolymer crosslinked with divinylbenzene has the pore structure characteristic of large pore spaces interconnected with small window throats. The unique pore structure provides the membrane with high flux and stability. The experimental results indicate that the effective diffusion coefficient D* of Cr(VI) through Aliquat 336/PolyHIPE membrane is as high as 1.75 × 10−11 m2 s−1. Transport study shows that the diffusion of Cr(VI) through Aliquat 336/PolyHIPE membrane can be attributed to the jumping transport mechanism. The hydraulic stability experiment shows that the membrane is quite stable, with recovery rates remaining at 95%, even after 10 consecutive cycles of operation. The separation study demonstrates the potential application of this new type of membrane for Cr(VI) recovery.
机译:膜载体的结构特征直接影响载体促进的转运膜的性能。提出了用Aliquat 336浸渍的高度多孔的PolyHIPE用于Cr(VI)分离。由与二乙烯基苯交联的聚(苯乙烯-丙烯酸-2-乙基己酯)共聚物构成的PolyHIPE具有孔结构大,孔窗小的特点。独特的孔结构为膜提供了高通量和稳定性。实验结果表明,Cr(VI)在Aliquat 336 / PolyHIPE膜上的有效扩散系数D *高达1.75×10 −11 m 2 s −1 。迁移研究表明,Cr(VI)通过Aliquat 336 / PolyHIPE膜的扩散可归因于跳跃迁移机制。水力稳定性实验表明,该膜非常稳定,即使连续运行10个周期,其回收率仍保持在95%。分离研究证明了这种新型膜在六价铬回收中的潜在应用。

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