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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Performance of a vibratory shear membrane filtration system during the treatment of magnetic ion exchange process concentrate
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Performance of a vibratory shear membrane filtration system during the treatment of magnetic ion exchange process concentrate

机译:振动剪切膜过滤系统在磁离子交换过程浓缩液处理中的性能

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摘要

The performance of a vibratory shear enhanced processing (VSEP) unit used to treat waste generated from a magnetic ion exchange (MIEX) process is assessed. The unit was fitted with a NF-270 membrane (97% nominal rejection of MgSO4) with an internal membrane surface area of 37 m(2). The vibration amplitude of the module was set at 12.7 mm. The system removes greater than 97% dissolved organic carbon as well as 70-85% multivalent solutes (Mg2+, Ca2+, SO42-)from the MIEX waste. The permeate generated was high in salt and was successfully recycled to reduce the brine requirement for MIEX resin bead regeneration. Early operation in recirculating batch mode examined the effect of volumetric recoveries (in the permeate) ranging from 75-85%. Higher recovery had no significant influence on the performance of the system. System chemical cleaning was carried out every 14-16 batches. Batch durations generally extended in each subsequent cycle prior to cleaning, with the last batches taking up to five times longer than the first batch. The installation of VSEP has resulted in a reduced frequency of waste disposal from the facility and has also reduced the amount of make-up brine required for resin regeneration by 78%. (C) 2015 Elsevier B.V. All rights reserved.
机译:评估了用于处理由磁离子交换(MIEX)过程产生的废物的振动剪切增强处理(VSEP)单元的性能。该装置装有NF-270膜(MgSO4的标称排放率为97%),内部膜表面积为37 m(2)。模块的振动幅度设定为12.7mm。该系统从MIEX废料中去除了97%以上的溶解有机碳以及70-85%的多价溶质(Mg2 +,Ca2 +,SO42-)。产生的渗透物含盐量很高,可以成功地回收利用,以减少MIEX树脂珠再生所需的盐水。循环分批模式的早期操作检查了体积回收率(透过水)的影响范围为75-85%。较高的恢复率对系统的性能没有重大影响。每14-16批次进行一次系统化学清洗。通常,在清洁之前的每个后续周期中,批次持续时间会延长,最后一批的耗时最多是第一批次的五倍。 VSEP的安装减少了工厂废物处理的频率,并且还使树脂再生所需的补充盐水量减少了78%。 (C)2015 Elsevier B.V.保留所有权利。

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