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首页> 外文期刊>Journal of Analytical Science and Technology >Synthesis of alumina, titania, and alumina-titania hydrophobic membranes via sol?gel polymeric route
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Synthesis of alumina, titania, and alumina-titania hydrophobic membranes via sol?gel polymeric route

机译:溶胶-凝胶聚合法合成氧化铝,二氧化钛和氧化铝-二氧化钛疏水膜

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Nanometer TiO2-Al2O3 composite membranes were synthesized through the sol?gel polymeric reaction of TiCl4 and AlCl3 in the presence of acrylic-acrylamide copolymer as a template. The dried samples were characterized by DTA, TGA, FTIR, XRD, and TEM to determine the thermal behavior, chemical composition, crystal structure, shape, and size of the particles. Octyltrichlorosilane was chosen as a silane coupling agent to increase the hydrophobic nature of the prepared membranes. The morphological structure, hydrophobic nature, water permeability, and desalination efficiency of the prepared membranes were studied by SEM, contact angle, permeability, and NaCl rejection coefficient (R%) measurements. The crystal structure of titania and alumina particles in the composite was affected by the AlCl3 and TiCl4 feed ratio. As the titania concentration increased, the average particle size of the composite particles became larger and the uniformity of the membrane layer decreased. The alumina (75%)-titania (25%) composite (AT25) showed a uniform crack-free membrane layer with a pore diameter of 12.9?nm and a porosity of 21.46%, with great hydrophobic nature, and with contact angle reaching 116?. This membrane can withstand calcination temperature up to 700?C, as the alumina and titania were present in their active forms: gamma-alumina and anatase, respectively. The membrane produced from this composite showed a high surface area of 333?m2/g with a respective particle size of 4.6?nm. Moreover, it showed a high ability to reject NaCl from water with a rejection coefficient of 73% and a high permeation flux of 4.8?l/h?m2 at 75?C.
机译:在丙烯酸​​-丙烯酰胺共聚物为模板的条件下,通过TiCl4和AlCl3的溶胶-凝胶聚合反应合成了纳米TiO2-Al2O3复合膜。通过DTA,TGA,FTIR,XRD和TEM对干燥的样品进行表征,以确定颗粒的热行为,化学组成,晶体结构,形状和尺寸。选择辛基三氯硅烷作为硅烷偶联剂以增加所制备膜的疏水性。通过SEM,接触角,渗透性和NaCl截留系数(R%)测量研究了制备的膜的形态结构,疏水性,透水性和脱盐效率。复合材料中二氧化钛和氧化铝颗粒的晶体结构受AlCl3和TiCl4进料比的影响。随着二氧化钛浓度的增加,复合颗粒的平均粒径变大并且膜层的均匀性降低。氧化铝(75%)-二氧化钛(25%)复合材料(AT25)显示出均匀的无裂纹膜层,其孔径为12.9?nm,孔隙率为21.46%,具有疏水性,接触角达到116 ?由于氧化铝和二氧化钛分别以活性形式存在:γ-氧化铝和锐钛矿,因此该膜可以承受高达700°C的煅烧温度。用这种复合材料制成的膜显示出333平方米/克的高表面积,各自的粒径为4.6纳米。而且,它显示出从水中脱除NaCl的能力高,其脱除系数为73%,在75℃时的渗透通量为4.8μl/ h2m2。

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