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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Prediction of fouling resistance and permeate flux in cross-flow micellar-enhanced ultrafiltration (MEUF)
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Prediction of fouling resistance and permeate flux in cross-flow micellar-enhanced ultrafiltration (MEUF)

机译:错流胶束增强超滤(MEUF)的耐污垢性和渗透通量的预测

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Cross-flow micellar-enhanced ultrafiltration had been used to separate pollutants from waste water effectively, while permeate flux decline with time because of the increase of fouling resistance. According to resistances in series theory, total transport resistance is the sum of two parts: membrane hydrodynamic resistance and fouling resistance. By observing material balance and hydrodynamic type of filtration, we proposed an analysis method of fouling resistance that was based on cross-flow filtration and took into account the presence of micelles instead of traditional cake resistance theory that was built from dead-end filtration. We found permeate flux decline not only by the relationship of time t ~(1/2) that traditional cake resistance theory said, but also by concentration of fouling layer φ (or φ). Retentate non-recycled and retentate recycled cross-flow experiments were carried out under different operate conditions (i.e., transmembrane pressure (TMP) and initial concentration) by using artificial cadmium (Cd) contaminated water and sodium dodecyl sulfate (SDS) and models showed excellent accuracy to predict permeate flux through correlation r 2 from 0.935 to 0.990.
机译:交叉流胶束增强超滤已被用于有效地分离废水中的污染物,而渗透通量却随着时间的推移而下降,这是因为抗污性的提高。根据串联理论中的阻力,总输送阻力是两部分之和:膜流体阻力和结垢阻力。通过观察物料平衡和过滤的流体力学类型,我们提出了一种基于横流过滤并考虑了胶束的存在而不是由死角过滤建立的传统滤饼阻力理论的耐污垢性分析方法。我们发现渗透通量的下降不仅取决于传统滤饼阻力理论所说的时间t〜(1/2)的关系,而且还取决于结垢层φ(或φ)的浓度。使用人工镉(Cd)污染的水和十二烷基硫酸钠(SDS)在不同的操作条件(即跨膜压力(TMP)和初始浓度)下进行了滞留物非再循环和滞留物再循环错流实验。通过相关性r 2预测渗透通量的精度从0.935到0.990。

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