使用南非不同地表水的颗粒和天然有机物组分对陶瓷膜的协同污染

T. Nkambule, Welldone Moyo, M. Motsa, N. Chaukura, Nomcebo H. Mthombeni, T. Msagati, B. Mamba, Sebastian Bas Heijman
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引用次数: 0

摘要

这项研究证明了陶瓷膜上未过滤和0.45µm预过滤水样在结垢发展和机理方面的根本差异。使用重量分析、光学方法和建模技术对进水进行了稳健的表征。未过滤样品的UV254去除和悬浮固体(SS)呈现出强相关性(R2=0.87)。此外,SS与荧光组分呈现出强相关(R2=0.82;C1分别为0.81和0.74;C2和C3)。这一观察结果证实了无机颗粒在开发具有荧光有机成分的组合污垢层中的重要性。从普拉滕堡湾(PL)取样的水的结垢发展率高于其他0.45µm预过滤样品。这归因于水样的低电导率(175µS.m-1),转化为低离子强度环境。从Hermanus河(HL)和Lepelle河(OL)采集的样品具有相似的SS量(分别为87.6 mg/L和88.4 mg/L),原始样品的修正污垢指数(MFI)值分别为6625和8060 s/L2,尽管有机物含量差异很大(22.67 mg/L.C和9.81 mg/L.C)。这可能是由于有机物附着在颗粒表面,减少了NOM在膜孔内和/或在膜活性层上的吸附。本研究证明了原位背景电解质、污垢浓度、污垢-污垢相互作用、污垢-膜相互作用和进料流的物理化学性质对污垢发展的程度和机理。
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The synergistic fouling of ceramic membranes by particles and natural organic matter fractions using different surface waters in South Africa
This study demonstrates the fundamental differences in fouling development and mechanisms of unfiltered and 0.45 µm pre-filtered water samples on ceramic membranes. Robust characterization of the feed waters was conducted using gravimetric analysis, optical methods and modeling techniques. UV254 removal and suspended solids (SS) for the unfiltered samples presented a strong correlation (R2 = 0.87). Further, SS exhibited strong correlations with fluorescent fractions (R2 = 0.82; 0.81 and 0.74 for C1; C2 and C3, respectively). This observation confirmed the significance of inorganic particles in the development of a combined fouling layer with fluorescent organic components. The fouling development rate for water sampled from Plattenburg Bay (PL) was higher than the rest of the 0.45 µm pre-filtered samples. This was attributed to the low conductivity (175 µS.m-1) of the water sample, translating to a low ionic strength environment. Samples collected from Hermanus River (HL) and Lepelle River (OL) had similar SS quantity (87.6 mg/L and 88.4 mg/L, respectively), and modified fouling index (MFI) values for raw samples were 6625 and 8060 s/L2 , respectively, despite a very large difference in the content of organic matter (22.67 mg/L.C and 9.81 mg/L.C). This could be due to organic matter attaching onto the surface of particles and reducing the adsorption of NOM within membrane pores and/or onto the membrane active layer. This study demonstrated the extent of in situ background electrolytes, foulant concentration, foulant-foulant interactions, foulant-membrane interaction and physicochemical properties of feed stream on fouling development and mechanisms.
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来源期刊
Journal of Membrane Science and Research
Journal of Membrane Science and Research Materials Science-Materials Science (miscellaneous)
CiteScore
4.00
自引率
0.00%
发文量
1
审稿时长
8 weeks
期刊介绍: The Journal of Membrane Science and Research (JMSR) is an Open Access journal with Free of Charge publication policy, which provides a focal point for academic and industrial chemical and polymer engineers, chemists, materials scientists, and membranologists working on both membranes and membrane processes, particularly for four major sectors, including Energy, Water, Environment and Food. The journal publishes original research and reviews on membranes (organic, inorganic, liquid and etc.) and membrane processes (MF, UF, NF, RO, ED, Dialysis, MD, PV, CDI, FO, GP, VP and etc.), membrane formation/structure/performance, fouling, module/process design, and processes/applications in various areas. Primary emphasis is on structure, function, and performance of essentially non-biological membranes.
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