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Analyzing the spatial and temporal characteristics of membrane fouling

机译:分析膜污染的时空特征

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Fouling characteristics of crossflow flat-sheet membranes for two Nanofiltration (NF), one Ultrafiltration (UF), and one Microfiltration (MF) membranes were analyzed using 12.5 parts per million (mg/L) FeCl_3 solution and 350 mg/L copper nanofluid. FeCl_3 solution represents dissolved contaminant whereas copper nanofluid simulates particulate contaminant. The spatial and temporal fouling evolutions were captured using digital photography and analyzed using ImageJ software. FeCl_3 fouling studies for one NF membrane showed uniform fouling whereas for the other NF membrane, isolated fouling was apparent and the fouling initiated at the outlet then gradually extended towards the inlet. Copper nanoparticle fouling studies analyzed through gravimetric and image processing revealed spatial and temporal fouling developments. Both non-equilibrium and equilibrium fouling stages/regions were evaluated through fouling density analysis.
机译:使用百万分率(mg / L)12.5 FeCl_3溶液和350 mg / L铜纳米流体对两种纳滤(NF),一种超滤(UF)和一种微滤(MF)膜的错流平板膜的结垢特性进行了分析。 FeCl_3溶液代表溶解的污染物,而铜纳米流体模拟颗粒污染物。使用数字摄影捕获空间和时间结垢的演变,并使用ImageJ软件进行分析。对一个NF膜的FeCl_3结垢研究显示均匀的结垢,而对于另一个NF膜,明显的孤立结垢,并且在出口处开始结垢,然后逐渐向入口延伸。通过重量分析和图像处理对铜纳米颗粒结垢的研究表明了空间和时间结垢的发展。通过结垢密度分析评估非平衡和平衡结垢阶段/区域。

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