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Enhancing mechanical and photocatalytic performances on TiO2/Ti composite ultrafiltration membranes via Ag doping method

机译:Ag掺杂提高TiO2 / Ti复合超滤膜的机械和光催化性能

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The hybrid ceramic-metallic composite membranes combine the advantages of ceramic layers and metallic supports, but the composite membranes tend to crack during sintering process. The metal has superior ductility that could release the shrinkage stress, so that doping the metal into the ceramic membranes can resolve the problem of membrane cracking during sintering process. A new TiO2/Ti ceramic-metallic composite membrane was prepared by Ag doping method, from which the properties and performances were systematically investigated. It was found that the appropriate amount of 6 dwb% (on a dry weight of TiO2 basis, dwb) Ag doping can obtain the uniform Ag nanoparticles with about 5 nm, that can efficiently enhance the mechanical properties of strength and toughness of the supported TiO2 membranes due to the ductility of Ag nanoparticles, overcoming the thermal expansion mismatch between ceramic membranes and metallic supports. The novel as-prepared TiO2/Ti composite membranes presented a molecular weight cut-off (MWCO) of 180 kDa and a pure water flux of 178 L/(m(2) h bar). Moreover, the Ag doping method showed a superior photocatalytic performances on dye decomposition, so that a kind of photocatalytic membrane can be prepared for ultrafiltration (UF) process. (C) 2015 Elsevier B.V. All rights reserved.
机译:陶瓷-金属混合复合膜结合了陶瓷层和金属载体的优点,但是复合膜在烧结过程中容易破裂。金属具有优异的延展性,可以释放收缩应力,因此将金属掺杂到陶瓷膜中可以解决烧结过程中膜破裂的问题。 Ag掺杂制备了一种新型的TiO2 / Ti陶瓷-金属复合膜,并对其性能和性能进行了系统的研究。发现适当的6 dwb%(以TiO2的干重计,以dwb为基准)的Ag掺杂可以获得约5 nm的均匀Ag纳米颗粒,可以有效地提高负载型TiO2的强度和韧性的机械性能。银纳米颗粒的延展性,克服了陶瓷膜和金属载体之间的热膨胀失配问题。新型制备的TiO2 / Ti复合膜的截留分子量(MWCO)为180 kDa,纯水通量为178 L /(m(2)h bar)。而且,Ag掺杂方法对染料的分解显示出优异的光催化性能,因此可以制备一种用于超滤(UF)工艺的光催化膜。 (C)2015 Elsevier B.V.保留所有权利。

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