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Control of Membrane Fouling in Organics Filtration Using Ce-Doped Zirconia and Visible Light

机译:铈掺杂氧化锆和可见光控制有机物过滤中的膜污染

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摘要

Membrane fouling has been a major issue in the development of more efficient water treatment processes. Specifically in surface waters filtration, organic matter, such as humic-like substances, can cause irreversible fouling. Therefore, this study evaluates the activity of a photocatalytic layer composed of Ce-doped zirconia nanoparticles in improving the fouling resistance during filtration of an aqueous solution of humic acid (HA). These nanoparticles were prepared by hydrothermal and sol–gel processes and then characterized. Before the filtration experiments, the photodegradation of HA catalyzed by Ce-doped zirconia nanoparticles in dispersion was studied. It was observed that the sol–gel prepared Ce-ZrO2 exhibited higher HA removal in practically neutral pH, achieving 93% efficiency in 180 min of adsorption in the dark followed by 180 min under visible-light irradiation using light-emitting diodes (LEDs). Changes in spectral properties and in total organic carbon confirmed HA degradation and contributed to the proposal of a mechanism for HA photodegradation. Finally, in HA filtration tests, Ce-ZrO2 photocatalytic membranes were able to recover the flux in a fouled membrane using visible-light by degrading HA. The present findings point to the further development of anti-fouling membranes, in which solar light can be used to degrade fouling compounds and possibly contaminants of emerging concern, which will have important environmental implications.
机译:膜结垢一直是开发更有效的水处理工艺的主要问题。特别是在地表水过滤中,有机物质(例如腐殖质类物质)会导致不可逆的结垢。因此,本研究评估了由掺Ce的氧化锆纳米粒子组成的光催化层在改善腐殖酸(HA)水溶液过滤过程中的耐污垢性方面的活性。这些纳米颗粒通过水热和溶胶-凝胶法制备,然后进行表征。在过滤实验之前,研究了Ce掺杂的氧化锆纳米粒子在分散液中光催化降解HA。观察到,溶胶-凝胶法制备的Ce-ZrO2在几乎中性的pH值下具有较高的HA去除率,在黑暗中180分钟内的吸附效率达到93%,随后在使用发光二极管(LED)的可见光照射下180min 。光谱特性和总有机碳的变化证实了HA的降解,并为HA光降解机理的提出做出了贡献。最后,在HA过滤测试中,Ce-ZrO2光催化膜能够通过降解HA使用可见光来回收污垢膜中的通量。目前的发现指出了防污膜的进一步发展,其中太阳光可用于降解污物和可能引起关注的污染物,这将对环境产生重要影响。

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