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首页> 外文期刊>Journal of Membrane Science >Optimization of membrane physical and chemical cleaning by a statistically designed approach
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Optimization of membrane physical and chemical cleaning by a statistically designed approach

机译:通过统计设计的方法优化膜物理和化学清洁

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摘要

Membrane cleaning efficiency depends on many parameters such as hydrodynamic conditions, concentration and temperature of chemical cleaning solution, as well as sequence of cleaning. Various studies and industrial applications show that factorial design is an efficient method in optimization of operational parameters. In this study, a statistical factorial design was employed to identify more accurately the key factors as well as their interactions in both physical and chemical cleaning of ultrafiltration (UF) and reverse osmosis (RO) membranes in municipal wastewater reclamation. It was found that significant factors affecting physical cleaning of both UF and RO membranes are production interval between cleans, duration of backwash and pressure during forward flush. In chemical cleaning of both membranes, temperature and concentration of high pH cleaning solution and backwash after chemical cleaning play important roles. By using the optimized membrane cleaning methods, the cleaning efficiency was significantly improved, which can cause higher membrane filtration capacity and efficiency.
机译:膜清洗效率取决于许多参数,例如流体动力学条件,化学清洗液的浓度和温度以及清洗顺序。各种研究和工业应用表明,析因设计是优化运行参数的有效方法。在这项研究中,采用统计析因设计来更准确地识别市政废水回收中超滤(UF)和反渗透(RO)膜的物理和化学清洗中的关键因素及其相互作用。已发现影响UF和RO膜物理清洗的重要因素是清洗之间的生产间隔,反冲洗的持续时间和正向冲洗期间的压力。在两个膜的化学清洗中,温度和高pH清洗液的浓度以及化学清洗后的反冲洗都起着重要的作用。通过使用优化的膜清洗方法,清洗效率得到了显着提高,这可能会导致更高的膜过滤能力和效率。

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