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Research on the formation mechanism of magnetized water used to wet coal dust based on experiment and simulation investigation on its molecular structures

机译:基于实验和模拟研究其分子结构的磁化水形成机理研究

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To better improve the effects of magnetization on the solution wettability, in this paper, the formation mecha-nism of magnetized water was investigated based on the combined method between the numerical simulation and experiments. The simulation results indicated that magnetization can reduce the first wave of the radial distribution function of water molecules; meanwhile, with the increase of magnetic field intensity, the diffusion coefficient of water molecules shows the four stages of changes, i.e. the slow change (0-200 mT), rapid increase (200-350 mT), stable period (350-450 mT) and reduce period (450-500 mT). In addition, the experimental re-sults also show that as the magnetic field strength increases (0-350 mT), the K-M value of the solution gradually decreases, indicating that the hydrogen bond structures among the water molecules are reduced, which further verifies that the large molecular clusters break into smaller molecule groups under the magnetic field. The surface tension and contact angle of the magnetized water were reduced by 6.33%, 13.47% than that of the untreated water, respectively. It was concluded that the magnetization mainly destroys the hydrogen bond structures among the water molecules and reduces the solution cohesion to improve the solution wettability, which is of great significance for proposing the novel dust control technologies based on the magnetic method. (c) 2021 Elsevier B.V. All rights reserved.
机译:为了更好地改善磁化对溶液润湿性的影响,本文采用数值模拟与实验相结合的方法,研究了磁化水的形成机理。模拟结果表明,磁化可以降低水分子径向分布函数的第一波;同时,随着磁场强度的增加,水分子的扩散系数表现出四个阶段的变化,即缓慢变化(0-200 mT)、快速增加(200-350 mT)、稳定期(350-450 mT)和减少期(450-500 mT)。此外,实验结果还表明,随着磁场强度的增加(0-350mT),溶液的K-M值逐渐降低,表明水分子之间的氢键结构减少,这进一步证实了大分子团簇在磁场作用下会断裂为小分子团簇。磁化水的表面张力和接触角比未处理水分别降低了6.33%和13.47%。结果表明,磁化主要破坏水分子间的氢键结构,降低溶液的内聚力,从而提高溶液的润湿性,这对提出基于磁法的新型防尘技术具有重要意义。(c)2021爱思唯尔B.V.保留所有权利。

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