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Simulation of Rotating Magnetic Field on Ion Distribution in Saltwater

机译:旋转磁场对盐水中离子分布的模拟

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The world is facing a severe crisis of fresh water shortage. Desalination technologies of seawater are very interesting and emerging alternative to fresh water sources. However, the conventional technologies consume too much energy and have other problems, which greatly restrict their popularization. A method for saltwater desalination is proposed based on rotating magnetic field eliminating the dissolved ions in salt water. The desalination function is realized by rotating magnetic field exerting Lorenz forces on the ions in the salt solution to separate the ions of the contrary sign. Four factors were simulated and analyzed to reveal their effect on the ion distribution, including salt concentration, magnetic field intensity and its rotating rate, and width of water pipeline. The results shows that the above four factors greatly affect the ion distribution characteristics in the water pipeline. This method is helpful in energy saving for seawater desalination.
机译:世界正面临着严重的淡水短缺危机。海水淡化技术非常有趣,并且正在成为淡水源的替代方案。然而,传统技术消耗太多能量并且存在其他问题,这极大地限制了它们的普及。提出了一种基于旋转磁场消除盐水中溶解离子的盐水淡化方法。脱盐功能是通过旋转磁场在盐溶液中的离子上施加洛伦兹力以分离相反符号的离子来实现的。对四个因素进行了模拟和分析,以揭示它们对离子分布的影响,包括盐浓度,磁场强度及其旋转速率以及输水管道的宽度。结果表明,以上四个因素极大地影响了输水管道中的离子分布特性。该方法有助于节省海水淡化的能源。

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