Elnabawy Eman, Elsherbiny Ibrahim M A, Abdelsamad Ahmed M A, Anis Badawi, Hassan Abdelwahab, Ulbricht Mathias, Khalil Ahmed S G
Physics Department and Center for Environmental and Smart Technology, Faculty of Science, Fayoum University, Fayoum 63514, Egypt.
Lehrstuhlfür Technische Chemie II, and Center for Water and Environmental Research (ZWU), University of Duisburg-Essen, 45141 Essen, Germany.
Membranes (Basel). 2020 May 12;10(5):97. doi: 10.3390/membranes10050097.
Carbon nanotubes (CNTs) are a robust material and proven as a promising candidate for a wide range of electronic, optoelectronic and environmental applications. In this work, two different methods were utilized for the preparation of CNTs exhibiting different aspect ratios via chemical vapor deposition (CVD). The as-prepared CNTs were analyzed using scanning electron microscopy (SEM), transmission electron microscopy (TEM), Nadsorption isotherms, thermogravimetric analysis and Raman spectroscopy in order to investigate their morphological and structural properties. Free-standing CNTs "buckypaper" membranes were fabricated, characterized and tailored to meet the requirements of two applications, i.e., (1) the removal of humic acid (HA) from water and (2) separation of oil-in-water emulsions. It was revealed that the hydrophobic buckypapers showed high separation performance for Shell oil-in-water emulsions filtration, with up to 98% through the accumulation of oil droplets onto the membrane surface. The absorption capacity of buckypaper membranes for various organic liquids (oil, chloroform and toluene) was evaluated over 10 absorption cycles to investigate their recyclability and robustness. Moreover, surface modification was introduced to the pristine CNTs to increase their surface hydrophilicity and improve the pure water permeability of buckypapers. These modified buckypapers showed high flux for HA solutions and excellent HA rejection efficiency up to 95%via size exclusion and electrostatic repulsion mechanisms.
碳纳米管(CNTs)是一种坚固的材料,已被证明是广泛的电子、光电子和环境应用中有前景的候选材料。在这项工作中,采用了两种不同的方法通过化学气相沉积(CVD)制备具有不同长径比的碳纳米管。对制备的碳纳米管进行了扫描电子显微镜(SEM)、透射电子显微镜(TEM)、N吸附等温线、热重分析和拉曼光谱分析,以研究其形态和结构特性。制备了独立的碳纳米管“巴基纸”膜,对其进行了表征并进行了定制,以满足两种应用的要求,即(1)从水中去除腐殖酸(HA)和(2)分离水包油乳液。结果表明,疏水性巴基纸对壳牌水包油乳液过滤具有很高的分离性能,通过油滴在膜表面的积累,截留率高达98%。在10个吸附循环中评估了巴基纸膜对各种有机液体(油、氯仿和甲苯)的吸附容量,以研究其可回收性和坚固性。此外,对原始碳纳米管进行了表面改性,以提高其表面亲水性并改善巴基纸膜的纯水渗透率。这些改性巴基纸膜对HA溶液显示出高通量,并且通过尺寸排阻和静电排斥机制对HA的截留效率高达95%且效果优异。