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Reverse osmosis membrane, seawater desalination with vibration assisted reduced inorganic fouling

机译:反渗透膜,海水脱盐振动辅助减少无机污垢

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The subject of this work is the development of a novel vibration assisted seawater desalination approach which changes thermodynamic (mass transfer coefficient) and hydrodynamic (cross-flow velocity) properties to mitigate the inorganic fouling for RO membranes. A classical mass transport model and experimental measurements showed that an increased cross-flow velocity in the feed channel enhances the near membrane mass transfer coefficient, which promotes the back-diffusion of inorganic salts and reduces the concentration polarization (CP). Then a theoretical CP Finite Element Method (FEM) model incorporating increased cross-flow velocity reveals that a lower CP modulus forms near the membrane surface with a higher vibration frequency, which results in less fouling on the membrane surface. The vibration assisted desalination process was demonstrated using a linear motor driven, periodically oscillating desalination cell. A smaller flux decline was observed while using a higher vibration frequency (with a constant sinusoidal amplitude) and a higher vibration velocity (in multiple vibration forms). Process simulations and experimental observations validated that the proposed vibration assisted desalination process helps enhance the permeate flux and mitigate the formation of inorganic fouling on the RO membrane surface.
机译:这项工作的主题是开发一种新型振动辅助海水淡化方法,其改变热力学(传质系数)和流体动力学(横流速度)性能以减轻RO膜的无机污垢。经典的质量传输模型和实验测量表明,进料通道中的横流速增加增强了近膜传质系数,这促进了无机盐的后扩散并降低了浓度极化(CP)。然后,具有增加的横流速度的理论CP有限元方法(FEM)模型揭示了具有较高振动频率的膜表面附近的下CP模量,这导致膜表面的污垢较小。使用线性电动机驱动,周期性地摆动脱盐电池来证明振动辅助脱盐过程。使用较高的振动频率(具有恒定的正弦幅度)和更高的振动速度(以多种振动形式)而观察到较小的磁通量下降。工艺模拟和实验观察验证了所提出的振动辅助脱盐过程有助于增强渗透物通量并减轻Ro膜表面上无机污垢的形成。

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