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负载碳纳米管的黏土基陶瓷膜的制备及其在染料去除中的性能评估

Fabrication and assessment of performance of clay based ceramic membranes impregnated with CNTs in dye removal.

作者信息

Hamad Kareem H, Abdallah Heba, Aly Sohair T, Abobeah R, Amin Sh K

机构信息

Egyptian Academy for Engineering and Advanced Technology (EA&EAT) Affiliated to Ministry of Military Production, Cairo, Egypt.

Chemical Engineering and Pilot Plant Department, Engineering and Renewable Energy Research Institute, National Research Centre (NRC), Dokki, Giza, Egypt.

出版信息

Sci Rep. 2024 Nov 5;14(1):26728. doi: 10.1038/s41598-024-77015-3.

Abstract

In this research, flat disk clay-based ceramic membranes were fabricated and optimized for use in the treatment of wastewater contaminated with dye. The properties of the fabricated membranes were assessed to optimize the fabrication conditions, namely, the firing temperature (1150 °C, 1200 °C, and 1250 °C), soaking time (30 min and 60 min) and zeolite percentage (0%, 10%, and 20%). On the other hand, the rejection of methylene blue dye (MB) and acid fuchsin dye (AF) was studied. The surface of the optimal membrane support was modified using functionalized COOH-carbon nanotubes to increase the dye removal percentage. The fabricated membranes were characterized using FTIR, XRD, and XRF. The optimum membrane support was fabricated at 1150 °C, after 30 min of soaking and with 0% zeolite. The most suitable membrane support was found to be AF, as its rejection percentages reached 42% and 95% without and after surface modification, respectively. The surface of the membrane was examined via SEM, which revealed normally distributed pores. The average pore size of the final membrane was found to be 0.076 micrometers using a mercury porosimeter; thus, the produced membranes can be used in ultrafiltration applications. Finally, the fouling properties showed that the total fouling reached 72.8%, of which only 2.1% was irreversible.

摘要

在本研究中,制备了基于黏土的扁平圆盘陶瓷膜,并对其进行优化以用于处理受染料污染的废水。对制备的膜的性能进行评估,以优化制备条件,即烧制温度(1150℃、1200℃和1250℃)、保温时间(30分钟和60分钟)以及沸石百分比(0%、10%和20%)。另一方面,研究了亚甲基蓝染料(MB)和酸性品红染料(AF)的截留率。使用功能化的COOH-碳纳米管对最佳膜载体的表面进行改性,以提高染料去除率。使用傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)和X射线荧光光谱(XRF)对制备的膜进行表征。最佳膜载体在1150℃下烧制,保温30分钟,且沸石含量为0%。发现最合适的膜载体是AF,因为其在未进行表面改性和表面改性后的截留率分别达到42%和95%。通过扫描电子显微镜(SEM)对膜的表面进行检查,结果显示孔隙分布正常。使用压汞仪测得最终膜的平均孔径为0.076微米;因此,所制备的膜可用于超滤应用。最后,污垢特性表明总污垢率达到72.8%,其中只有2.1%是不可逆的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4b5/11535517/186da784ec79/41598_2024_77015_Fig1_HTML.jpg

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