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Modification of tubular ceramic membranes with carbon nanotubes using catalytic chemical vapor deposition

机译:使用催化化学气相沉积法用碳纳米管修饰管状陶瓷膜

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In this study, carbon nanotubes (CNTs) were successfully grown on tubular ceramic membranes using the catalytic chemical vapor deposition (CCVD) method. CNTs were synthesized at 650 degrees C for 3-6 h under a 120 mL min(-1) flow of C2H6 on ceramic membranes impregnated with iron salt. The synthesis procedure was beforehand optimized in terms of catalyst amount, impregnation duration and reaction temperature, using small pieces of tubular ceramic membranes. The yield, size and structure of the CNTs produced were characterized using thermogravimetric analysis and microscopic imaging techniques. Afterwards, preliminary filtration tests with alginate and phenol were performed on two modified tubular membranes. The results indicate that the addition of CNTs on the membrane material increased the permeability of ceramic membrane and its ability to reject alginate and adsorb phenol, yet decreased its fouling resistance.
机译:在这项研究中,使用催化化学气相沉积(CCVD)方法成功地在管状陶瓷膜上生长了碳纳米管(CNT)。在以铁盐浸渍的陶瓷膜上,在120 mL min(-1)的C2H6流量下,在650摄氏度下合成CNT 3-6小时。预先使用小块管状陶瓷膜在催化剂用量,浸渍时间和反应温度方面优化了合成程序。使用热重分析和显微成像技术表征了所生产的CNT的产率,尺寸和结构。之后,在两个改性的管状膜上进行了藻酸盐和苯酚的初步过滤测试。结果表明,在膜材料上添加CNTs可以提高陶瓷膜的渗透性,并提高其拒绝藻酸盐和吸附苯酚的能力,但降低了其耐污垢性。

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