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Removal of silica from brackish water by integrated adsorption/ultrafiltration process

机译:通过集成吸附/超滤过程从咸水中除去二氧化硅

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u A lab-scale unit of the hybrid continuous stirred tank reactor (CSTR) adsorption/ultrafiltration (UF) system was used to evaluate the removal efficiency of silica from brackish water. The semi-batch adsorption process was carried out using iron oxy/hydroxide agglomerates (IOAs) as adsorbent and hollow fiber ultrafiltration membrane as a barrier to the adsorbent passage to the product water. The effect of residence time, concentration of silica, and adsorbent dosage on the silica removal and UF membrane blockage was examined. It was found that a short residence time of 15 min was sufficient to achieve the maximum adsorption capacity similar to that obtained in batch isotherm experiments. The adsorption capacity increased with the augmentation of the silica concentration and decreased with the increase in the adsorbent dosage. The UF was effectively employed to separate the loaded adsorbent without fouling the membrane until breakthrough. A simple model was applied to accurately predict the adsorption breakthrough curves.
机译:U用于杂化连续搅拌釜反应器(CSTR)吸附/超滤(UF)系统的实验室级单元用于评估来自咸水的二氧化硅的去除效率。使用铁/氢氧化物附聚物(IOA)作为吸附剂和中空纤维超滤膜来进行半批量吸附过程,作为吸附剂通过产物水的屏障。研究了停留时间,二氧化硅浓度和吸附剂剂量对二氧化硅去除和UF膜堵塞的影响。结果发现,15分钟的短暂停留时间足以实现与在批次等温线实验中获得的最大吸附容量。吸附能力随着二氧化硅浓度的增强而增加,随着吸附剂剂量的增加而降低。有效地使用UF以将装载的吸附剂分离,而不会污染膜直至突破。应用了一个简单的模型,以准确地预测吸附突破曲线。

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