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首页> 外文期刊>Journal of the Australasian ceramic society >Modification of surface charge characteristics for unsupported nanostructured titania-zirconia UF/NF membrane top layers with calcination temperature
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Modification of surface charge characteristics for unsupported nanostructured titania-zirconia UF/NF membrane top layers with calcination temperature

机译:修改的表面电荷特征不支持的纳米titania-zirconia超滤/ NF膜层与煅烧温度

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摘要

Ceramic membranes are more advantageous alternatives especially for harsh working conditions when compared with the polymeric membranes. The porous multilayer structure of the ceramic membranes (composed of support, intermediate, and top layers) can be prepared via different oxides. Titania and zirconia, having superior properties, are mainly preferred for the top layer formation. The separation properties of the membrane are both dependent on pore morphology and surface charge of the oxide(s) forming the top layer. The effect of surface charge in separation may be very significant in case of filtration of charged species with relatively lower mass as in the ultrafiltration (UF) and nanofiltration (NF). In this study, unsupported membrane top layers were prepared with varying titania/zirconia ratios by sol-gel technique. Their surface charges at different pH conditions after calcination at varying temperatures (400 degrees, 500 degrees, and 600 degrees C) were determined. The surface charge of the pure titania (full Ti) top layer was decreasing with the increasing calcination temperature. The highest magnitudes of zeta potential for both acidic and basic conditions were measured via Zr rich top layer (TiZr2575) at calcination temperatures >= 500 degrees C, which was composed of anatase, rutile (titania), and tetragonal (zirconia) phases after calcination. The tailor-made top layer can be prepared with modifications during membrane preparation.
机译:陶瓷膜更有利选择尤其是严厉的工作条件与聚合物相比膜。陶瓷膜(组成的支持,中间和上面层)可以通过做好准备不同的氧化物。优越的特性,主要是首选的表层形成。膜都是依赖于孔隙氧化物的形态和表面电荷(s)形成了顶层。电荷分离可能是非常重要的过滤的带电的物种相对较低质量的超滤(UF)、纳滤(NF)。不支持的膜层准备不同二氧化钛溶胶-凝胶/氧化锆比率技术。在不同煅烧条件温度(400度,500度,600度)测定。纯二氧化钛(Ti)顶层减少与增加煅烧温度。潜在的酸性和基本条件测量通过Zr丰富顶层(TiZr2575)煅烧温度> = 500摄氏度是由锐钛矿、金红石(二氧化钛),然后呢正方(氧化锆)煅烧后阶段。特制的顶层可以做好准备膜制备过程中修改。

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