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Cross-flow ultrafiltration for surface water treatment in North Thailand

机译:错流超滤技术在泰国北部的地表水处理

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Experimental studies on cross-flow ultrafiltration were carried out to evaluate the applicability to treat surface water in North Thailand. Hollow-fiber UF modules (polyacrylonitrile, MWCO 13,000 daltons, I.D. 0.8 mm, and module length 1126 mm) were used in the experiments. While the permeation flux was controlled at 1.0 m/d, the cross-flow velocity was either fixed at 0.1 m/s or varied as the membrane fouling proceeded. The comparative study on fixed and variable cross-flow velocities revealed that the variable velocity operation was superior to achieve a longer operational period before chemical cleaning. Intensive backwashing was performed when the filtration resistance rose over 10(13) m(-1), which revealed that more than 80% of the resistance was caused by cake-layer that can be removed by the intensive backwashing. However, the operational period was only 54% of the one for the new membranes, which suggested that the percentage reduction of the filtration resistance should not be used as an index of the efficiency of chemical or physical membrane cleaning. Despite shortened operational periods, the intensive backwashing was proposed to be an easy and rapid method to recover the permeability of fouled membranes without chemical use. The cross-flow UF system used in this study was found to be easy to operate even in small water systems in developing countries. [References: 4]
机译:进行了错流超滤实验研究,以评估在泰国北部处理地表水的适用性。实验中使用了中空纤维超滤组件(聚丙烯腈,MWCO 13,000道尔顿,内径0.8毫米,组件长度1126毫米)。在将渗透通量控制在1.0 m / d的同时,错流速度固定在0.1 m / s或随着膜结垢的进行而变化。对固定和可变错流速度的比较研究表明,变速操作优于化学清洗之前的更长操作时间。当过滤阻力升至10(13)m(-1)以上时,进行强力反洗,这表明超过80%的阻力是由滤饼层引起的,可以通过强力反洗将其除去。但是,操作时间仅为新膜的54%,这表明不应将过滤阻力的降低百分比用作化学或物理膜清洗效率的指标。尽管缩短了运行周期,但仍提出进行大量的反冲洗是一种无需化学方法即可恢复污垢膜通透性的简便快捷方法。发现本研究中使用的错流超滤系统即使在发展中国家的小型供水系统中也易于操作。 [参考:4]

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