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Ceramic membranes formed from nanoparticles: an environmental technology

机译:由纳米粒子形成的陶瓷膜:一种环保技术

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摘要

Membranes, which are used commercially for the last 50 years, are more and more employed since the last ten years. They can be used at the industrial level for liquid, solid or gaseous separations down to the microscopic scale. In spite of ail the advantages of the ceramic membranes (chemical stability, resistance in organic solvents, extreme pH, of high pressures) with regard to organic membranes, their development has been quite long mainly due to strong synthesis difficulties and high cost to produce crack and defect free membranes. Metallic oxides nanoparticles show themselves perfectly adapted to synthesize ceramic membranes, with various advantages. Their small size allows to realize membranes with very reduced sizes of pores. Moreover their high surface reactivity may enable the synthesis of reactive membranes or even catalytic membranes. This paper presents some examples of nanoparticles used in the synthesis of ceramic membranes like the Ferroxane~R nanoparticles obtained by reaction of an iron base minerai and acetic acid. Ail the characterizations indicate that the obtained membranes are adapted to the ultrafiitration. But the most important point concerns their surface reactivity allowing them to sorb certain soluble pollutants. Furthermore they appear as candidates of choice for fuel cells.
机译:在过去的50年中,商业上使用的膜从最近的10年开始越来越多地被使用。它们可用于工业领域,直至微观规模的液体,固体或气体分离。尽管陶瓷膜相对于有机膜具有许多优势(化学稳定性,在有机溶剂中的耐受性,极高的pH值,高压),但它们的发展仍相当长,这主要是由于其合成难度大且产生裂化的成本高和无缺陷的膜。金属氧化物纳米颗粒显示出它们自身非常适合合成陶瓷膜,具有各种优点。它们的小尺寸允许实现具有非常减小的孔尺寸的膜。而且,它们的高表面反应性可以使反应性膜或什至催化膜的合成成为可能。本文介绍了一些用于陶瓷膜合成的纳米颗粒的例子,例如通过铁基矿井和乙酸反应获得的Ferroxane〜R纳米颗粒。所有特征表明,所获得的膜适用于超滤。但是最重​​要的一点是它们的表面反应性,使它们能够吸收某些可溶性污染物。此外,它们似乎是燃料电池的候选选择。

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