Surface interaction of microbubbles and applications of hydrogen-bubble method for cleaning and separation

K. Matsuura, T. Uchida, S. Ogawa, C. Guan, S. Yanase
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引用次数: 3

Abstract

Microbubble (MB) technology is important for the separation and purification of micro/nanomaterials from waste water. The recovery of these materials from water is required to reduce the risk of cytotoxicity. To investigate surface interactions related to the separation of micro/nanoparticles in water, we attempted to float TiO2, SiC, multi-walled carbon nanotubes (MWCNTs), and carbon fiber (CF) using MBs generated by electrolysis. After MBs were generated for 5-10 min by applying a voltage between two electrodes, SiC, MWCNT, and CF were aggregated on the surface of the tap water in the container. However, hydrophilic TiO2 remained well dispersed in water and did not aggregate after the generation of MBs. These results demonstrated that hydrophobic micro/nanoparticles in water can be separated by floatation and aggregation on the surface of water using this MB-generating method. We also measured the ζ-potential of MB-containing water; the recorded potentials ranged from -12 mV to -19 mV. The pH of this MB-containing water was 5.6. Based on the measured ζ-potential, the electrostatic interaction between MBs and the floating particles would not contribute to adsorption of MB and these particles. Therefore, the hydrophobic interaction with MBs can be used for the purification and separation of hydrophobic micro/nanoparticles.
微气泡的表面相互作用及氢泡法在清洗分离中的应用
微泡技术对废水中微纳米材料的分离纯化具有重要意义。需要从水中回收这些物质以减少细胞毒性的风险。为了研究与水中微/纳米颗粒分离相关的表面相互作用,我们尝试使用电解产生的MBs漂浮TiO2、SiC、多壁碳纳米管(MWCNTs)和碳纤维(CF)。在两个电极之间施加电压产生mb 5-10分钟后,SiC, MWCNT和CF聚集在容器中的自来水表面。然而,亲水性TiO2在水中保持良好的分散,并且在生成MBs后不聚集。这些结果表明,利用这种mb生成方法可以通过漂浮和聚集在水面上分离水中的疏水微/纳米颗粒。我们还测量了含mb水的ζ电位;记录的电位范围从-12 mV到-19 mV。这种含mb的水的pH值为5.6。根据所测得的ζ电位,MB与浮粒之间的静电相互作用不会对MB和浮粒的吸附产生影响。因此,与MBs的疏水相互作用可用于疏水微/纳米颗粒的纯化和分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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