首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >A new approach for determination of fouling potential by colloidal nanoparticles during reverse osmosis (RO) membrane filtration of seawater Nanotechnology for Sustainable Development
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A new approach for determination of fouling potential by colloidal nanoparticles during reverse osmosis (RO) membrane filtration of seawater Nanotechnology for Sustainable Development

机译:确定海水反渗透(RO)膜过滤过程中胶体纳米颗粒结垢潜力的新方法可持续发展纳米技术

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摘要

A direct measurement of number concentration of colloidal nanoparticles (15-450 nm) in water was made with the membrane filtration-differential mobility analyzer technique, and its corresponding flux decline rate (FDR) was determined by laboratory-scale RO fouling test unit using varying number concentrations of silica nanoparticles in artificial seawaters. This relationship was used to predict fouling potential of colloidal nanoparticles in reverse osmosis (RO) membrane process of seawaters in RO plant. It was found that the FDR linearly increased with the increasing number of colloidal nanoparticles for the given concentration range and that the relationship between the number concentration and the FDR also depended on RO membrane surface properties. Data for estimated FDR values for natural seawaters after pretreatment showed a clear difference among samples, which is contrary to the pre-existing index such as silt density index and modified fouling index. Our data suggest that measurement of colloidal nanoparticles is useful for selection of proper pretreatment and successful operation of RO membrane process along with other particle fouling predictors accounting for large particles (>450 nm).
机译:使用膜过滤-差动迁移率分析仪技术直接测量水中胶体纳米颗粒(15-450 nm)的浓度,并通过实验室规模的RO结垢测试装置使用不同的方法确定其相应的通量下降率(FDR)。人工海水中二氧化硅纳米粒子的浓度该关系用于预测胶体纳米颗粒在反渗透工厂海水反渗透膜过程中的结垢潜力。发现在给定的浓度范围内,FDR随着胶体纳米颗粒数目的增加而线性增加,并且数目浓度与FDR之间的关系也取决于RO膜的表面性质。预处理后天然海水的FDR估算值数据在样品之间显示出明显的差异,这与诸如淤泥密度指数和改良的结垢指数等预先存在的指数相反。我们的数据表明,胶体纳米颗粒的测量可用于选择合适的预处理以及成功进行反渗透膜工艺以及其他占大颗粒(> 450 nm)的颗粒污染预测指标。

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