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Fouling and Cleaning Characteristics of Reverse Osmosis (RO) Membranes

机译:反渗透(RO)膜的结垢和清洁特性

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This work deals with fouling and successive cleaning of RO membrane fouled by an organic foulant, sodium alginate using a laboratory-scale cross flow test unit. First, spiral-wound RO membrane was fouled with sodium alginate solution up to 10% and 15%, respectively at an applied pressure of 1380 kPa with flow rate of 10 lit/min. An anionic surfactant, sodium dodecyl sulfate (SDS) was used as a chemical cleaning agent for cleaning of RO membrane. The effect of cleaning chemical dose and cross-flow velocity on the membrane chemical cleaning duration to achieve 100% cleaning efficiency (i.e., to get original water flux) was also investigated. As the SDS concentration increases, the membrane chemical cleaning time decreases due to increase in the solubility of the foulant (when the surface tension decreases by an increase in the SDS concentration). Furthermore, the membrane chemical cleaning time decreases with increasing cross-flow velocity of the cleaning chemical solution (SDS). Higher cross-flow velocity enhances the turbulence at the fouling layer and hence the mass transfer of the foulant from the fouling layer to the bulk solution is improved, then the SDS has weakened the structural integrity of the fouling layer. It is observed that better cleaning is occurred with higher concentration of SDS and flow rate. The obtained results clearly reveal that SDS cleaning is proved to be an efficient cleaning method for RO membranes fouled with organic foulant.
机译:这项工作涉及使用实验室规模的错流测试装置对RO膜的结垢和相继清洁进行处理,该膜被有机污垢藻酸盐酸钠污染。首先,在1380 kPa的施加压力和10升/分钟的流速下,分别用高达10%和15%的海藻酸钠溶液污染螺旋缠绕的RO膜。阴离子表面活性剂十二烷基硫酸钠(SDS)用作化学清洁剂,用于清洁RO膜。还研究了清洗化学剂量和错流速度对膜化学清洗持续时间的影响,以达到100%的清洗效率(即获得原始水通量)。随着SDS浓度的增加,由于污垢物的溶解度增加(当表面张力因SDS浓度的增加而降低时),膜化学清洗时间减少。此外,膜化学清洗时间随着清洗化学溶液(SDS)的错流速度的增加而减少。较高的错流速度增强了结垢层的湍流,因此改善了结垢剂从结垢层到本体溶液的质量传递,然后SDS削弱了结垢层的结构完整性。可以观察到,较高的SDS浓度和流速会产生更好的清洁效果。所获得的结果清楚地表明,SDS清洗被证明是一种有效的清洗方法,用于清洗被有机污垢污染的RO膜。

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