首页> 外文期刊>International Journal of Environmental Research and Public Health >Advanced Wastewater Treatment Engineering鈥擨nvestigating Membrane Fouling in both Rotational and Static Membrane Bioreactor Systems Using Empirical Modelling
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Advanced Wastewater Treatment Engineering鈥擨nvestigating Membrane Fouling in both Rotational and Static Membrane Bioreactor Systems Using Empirical Modelling

机译:先进的废水处理工程—使用经验模型研究旋转和静态膜生物反应器系统中的膜污染

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Advanced wastewater treatment using membranes are popular environmental system processes since they allow reuse and recycling. However, fouling is a key limiting factor and so proprietary systems such as Avanti鈥檚 RPU-185 Flexidisks membrane bioreactor (MBR) use novel rotating membranes to assist in ameliorating it. In earlier research, this rotating process was studied by creating a simulation model based on first principles and traditional fouling mechanisms. In order to directly compare the potential benefits of this rotational system, this follow-up study was carried out using Avanti鈥檚 newly developed static (non-rotating) Flexidisks MBR system. The results from operating the static pilot unit were simulated and modelled using the rotational fouling model developed earlier however with rotational switching functions turned off and rotational parameters set to a static mode. The study concluded that a rotating MBR system could increase flux throughput when compared against a similar static system. It is thought that although the slowly rotating spindle induces a weak crossflow shear, it is still able to even out cake build up across the membrane surface, thus reducing the likelihood of localised critical flux being exceeded at the micro level and lessening the potential of rapid trans-membrane pressure increases at the macro level.
机译:使用膜进行高级废水处理是流行的环境系统过程,因为它们可以重复使用和回收利用。但是,结垢是关键的限制因素,因此专有系统(例如Avanti的RPU-185 Flexidisks膜生物反应器(MBR))使用新颖的旋转膜来改善污垢。在较早的研究中,通过基于第一原理和传统结垢机制创建模拟模型来研究这种旋转过程。为了直接比较该旋转系统的潜在优势,使用Avanti新开发的静态(非旋转)Flexidisks MBR系统进行了后续研究。使用先前开发的旋转结垢模型对静态飞行员单元的操作结果进行了模拟和建模,但是关闭了旋转开关功能,并将旋转参数设置为静态模式。研究得出结论,与类似的静态系统相比,旋转的MBR系统可以增加通量。可以认为,尽管缓慢旋转的锭子会产生较弱的横流剪切力,但它仍然能够使滤饼在整个膜表面上积聚,从而降低了在微观水平上超过局部临界通量的可能性,并降低了快速产生的可能性。跨膜压力在宏观水平上增加。

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