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Development of a novel electric field-assisted modified hydrodynamic cavitation system for disintegration of waste activated sludge

机译:新型电场辅助改性水力空化系统的开发,用于分解废活性污泥

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In this current study, we present a modified hydrodynamic cavitation device that combines an electric field to substitute for the chemical addition. A modified HC system is basically an orifice plate and crisscross pipe assembly, in which the crisscross pipe imparts some turbulence, which creates collision events. This study shows that for maximizing disintegration, combining HC system, which called electric field-assisted modified orifice plate hydrodynamic cavitation (EFM-HC) in this study, with an electric field is important. Various HC systems were compared in terms of disintegration of WAS, and, among them, the EFM-HC system exhibited the best performance with the highest disintegration efficiency of 47.0 ± 2.0% as well as the destruction of WAS morphological characteristics. The experimental results clearly show that a conventional HC system was successfully modified. In addition, electric field has a great potential for efficient disintegration of WAS for as a additional option in a combination treatment. This study suggests continued research in this field may lead to an appropriate design for commercial use.
机译:在当前的研究中,我们提出了一种改进的水力空化装置,该装置结合了电场来代替化学添加物。改进的HC系统基本上是孔板和交叉管组件,其中交叉管会产生一些湍流,从而产生碰撞事件。这项研究表明,为了使崩解最大化,将HC系统与电场相结合是很重要的,该HC系统在本研究中被称为电场辅助改良孔板水动力空化(EFM-HC)。比较了各种HC系统的WAS分解,其中EFM-HC系统表现出最佳性能,最高分解效率为47.0±2.0%,并且破坏了WAS的形态特征。实验结果清楚地表明,传统的HC系统已成功改进。此外,电场具有将WAS有效分解的巨大潜力,作为组合治疗中的其他选择。这项研究表明,对该领域的持续研究可能会导致针对商业用途的适当设计。

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