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Design of alumina monoliths by emulsion-gel casting: Understanding the monolith structure from a rheological approach

机译:通过乳液凝胶浇铸设计氧化铝整体料:从流变学方法了解整体料结构

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Multimodal porous cellular alumina structures (monoliths) were prepared by an emulsion-gel casting technique using eco-friendly and inexpensive lipids such as corn oil, castor oil, margarine and their mixtures as the dispersed phase. The monoliths obtained showed good mechanical stability, exhibiting compressive strengths in the range of 8-50 N.mm(-2). Mercury intrusion porosimetry analysis showed that the monoliths produced presented porosities ranging from 28% to 60% and average pore sizes within 0.2-3.2 mu m. The formation of the porous networks was interpreted based on combined droplet coalescence, flocculation and Ostwald ripening effects. The presence of such effects along the emulsion storage time led to changes in their viscoelastic and morphological properties, which were found to correlate with structural descriptors of monoliths after sintering (e.g. average pore sizes and porosity). These correlations open up the possibility to anticipate the final structure of the monoliths and adjust emulsion-gel conditions to produce customized cellular structures with fine-tuned porosities and pore sizes, envisaging their application in membrane processes or chromatography. (C) 2018 Published by Elsevier Ltd.
机译:通过使用生态友好且廉价的脂质(例如玉米油,蓖麻油,人造黄油及其混合物)作为分散相,通过乳液凝胶浇铸技术制备多峰多孔多孔氧化铝结构(整体)。所获得的整体显示出良好的机械稳定性,表现出8-50 N.mm(-2)的抗压强度。汞侵入孔隙率法分析表明,生成的整料的孔隙率范围为28%至60%,平均孔径在0.2-3.2微米之间。基于结合的液滴聚结,絮凝和奥斯特瓦尔德熟化效应解释了多孔网络的形成。沿着乳液储存时间的这种影响的存在导致它们的粘弹性和形态学性质的变化,发现这些变化与烧结后的整料的结构特征(例如平均孔径和孔隙率)相关。这些相关性开辟了预测整体结构最终结构并调整乳液-凝胶条件的可能性,以产生具有微调的孔隙率和孔径的定制细胞结构,并设想将其应用于膜法或色谱法中。 (C)2018由Elsevier Ltd.发布

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