Facile Approach in Development of Superhydrophobic-Superoleophilic Kaolin-Based Hollow Fibre Ceramic Membrane

Jamilu Usman, Mohd Hafiz Dzarfan Othman, Ahmad Fauzi Ismail, Yusuf Olabode Raji, Tijjani Hassan El-Badawy, Tijjani Abdullahi, Jamila Baba Ali
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Abstract

A silane coupling agent is an organosilicon compound with special structure possessing organic functional groups and hydrolysable groups. In this study, a superhydrophobic-superoleophilic nano-silica film on ceramic membrane was constructed by a modified Stöber technique by using tetraethoxy-silane (TEOS) and fluoroalkyl silane (FAS). The colloidal nano-silica based silane sol coating solution was synthesized via co-hydrolysis and co-condensation of TEOS and FAS. Particle size distribution of the colloidal nano-silica based silane sol was evaluated using particle size analyzer as depicted. The contents of the relative elements of the colloidal nano-silica based silane sol were examined using energy dispersive x-ray (EDX) spectra. Extent of superhydrophobicity-superoleophilicity was determined using the contact angle measurements. The surface wettability of superhydrophobicity-superoleophilicity was determined using the contact angle measurements. Also, the effects of grafting times and coating cycles on the wettability of the modified kaolin-based hollow fiber membrane were determined. The results revealed that the modified kaolin-based hollow fiber membrane exhibited oil contact of 0o and water contact angle of 160o and, demonstrating its considerable antiwetting applications like in oil-water filtration process. While, with an increase in grafting times and coating cycles, the wettability of the superhydrophobic-superoleophilic nano-silica film was enhanced due to increase in surface roughness provided by the hydrolysable groups on the surface of the ceramic membrane. In conclusion, this study presents a feasible route to the surface superhydrophobicity-superoleophilicity testing of ceramic membranes
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超疏水-超亲油高岭土基中空陶瓷纤维膜的简易研制
硅烷偶联剂是一种具有特殊结构的有机硅化合物,具有有机官能团和水解基团。本研究以四乙氧基硅烷(TEOS)和氟烷基硅烷(FAS)为原料,采用Stöber改性技术在陶瓷膜上构建了超疏水-超亲油纳米硅膜。采用TEOS和FAS共水解、共缩聚的方法合成了纳米硅烷溶胶溶胶包衣液。用粒径分析仪对胶体纳米二氧化硅基硅烷溶胶的粒径分布进行了评价。利用能量色散x射线(EDX)光谱测定了纳米硅溶胶中相关元素的含量。用接触角测定了超疏水-超亲油的程度。用接触角测定了超疏水-超亲油的表面润湿性。研究了接枝次数和涂布周期对改性高岭土基中空纤维膜润湿性的影响。结果表明,改性后的高岭土基中空纤维膜的油接触角为0°,水接触角为160°,在油水过滤等防湿过程中具有较好的应用前景。然而,随着接枝次数和涂覆周期的增加,超疏水-超亲油纳米二氧化硅膜的润湿性增强,这是由于陶瓷膜表面可水解基团提供的表面粗糙度增加。总之,本研究为陶瓷膜的表面超疏水性-超亲油性测试提供了一条可行的途径
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