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An evaluation of industrial ultrafiltration systems for surface water using fouling indices as a performance indicator

机译:使用结垢指数作为性能指标对地表水工业超滤系统进行评估

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This paper presents an evaluation of two full-scale ultrafiltration systems used for the treatment of surface water for the pharmaceutical industry. Plant A operated in dead-end mode and plant B operated in dead-end mode with recirculation, coagulation and air-scouring. Total and irreversible fouling indices were used to evaluate the fouling rate and the hydraulic cleaning efficiency. Statistical analysis of the operational parameters showed that most of the hydraulically irreversible fouling was generated immediately after the chemical cleaning. Nonlinear correlation between fouling indices and the feed-water turbidity indicates a complex phenomenon of membrane fouling and suggests that turbidity should not be used as the only control parameter of an ultrafiltration system. As a result, a new concept of hydraulic and chemical cleaning cycle duration based on fouling indices is proposed. Recirculation during filtration, coagulation, and air-scouring in plant B was demonstrated to have a positive effect on the hydraulic cleaning efficiency compared to plant A. With a shorter backwash duration and a longer chemical cleaning cycle in plant B, approximately 15% of the permeate and 25% of the chemicals will be saved. Fouling indices can be used as a performance indicator and can help to optimize performance of ultrafiltration systems.
机译:本文介绍了两种用于制药行业地表水处理的全尺寸超滤系统的评估。工厂A在死循环模式下运行,工厂B在死循环模式下运行,具有再循环,凝结和空气洗涤的功能。使用总的和不可逆的结垢指数来评估结垢率和水力清洁效率。对运行参数的统计分析表明,大多数液压不可逆结垢是在化学清洗后立即产生的。结垢指数与给水浊度之间的非线性相关性表明膜结垢的复杂现象,这表明不应将浊度用作超滤系统的唯一控制参数。结果,提出了基于结垢指数的水力和化学清洁循环持续时间的新概念。与工厂A相比,工厂B的过滤,凝结和空气洗涤过程中的再循环被证明对水力清洁效率有积极影响。工厂B中较短的反冲洗时间和较长的化学清洁周期,约占总产量的15%渗透物,将节省25%的化学品。结垢指数可以用作性能指标,并且可以帮助优化超滤系统的性能。

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