碳纳米管膜的可控制备及其在气固分离方面的应用任务书

 2021-10-24 15:49:46

1. 毕业设计(论文)的内容和要求

膜技术是依托于高性能膜材料的一种采用物理分离流体的技术,与传统过滤、蒸发、精馏等分离技术相比,具有能耗低高节能、膜装置简单、分离操作方便等优点。

近年来,膜技术被广泛应用在污水处理(金属离子、污染物的分离)、气体分离(大气中固体颗粒物的截留和VOCs的催化降解)等各领域。

随着科技的不断发展,人们对于健康问题和居住环境的要求越来越重视,因此用于环境改善的新型膜材料的研究与开发备受关注。

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2. 参考文献

[1] Kolla, P., Lai, C., Mishra, S., Fong, H., Rhine, W., Nanofiber hybrid filters. Separation and Purification Technology, 236, 116255.[10] Xia, W., Bitter, J. H., Su, D., Qian, J., Muhler, M. (2009). Iron impregnation on the amorphous shell of vapor grown carbon fibers and the catalytic growth of secondary nanofibers. Diamond and Related Materials, 18(1), 13-19.[11] Xu, C., Xie, W., Yu, Y., Zhang, J., Yang, J. (2018). A carbon nanotubes composite filter for removal of oil particles. Materials Research Express, 6(2), 025024.[12] Xu, C., Xie, W., Yu, Y., Zhang, J., Yang, J. (2019). Photocatalytic and Filtration performance study of TiO2/CNTs-Filter for oil particle. Process Safety and Environmental Protection, 123, 72-78.[13] Yang, S., Zhu, Z., Wei, F., Yang, X. (2017). Carbon nanotubes / activated carbon fiber based air filter media for simultaneous removal of particulate matter and ozone. Building and Environment, 125, 60-66.[14] Yildiz, O., Bradford, P. D. (2013). Aligned carbon nanotube sheet high efficiency particulate air filters. Carbon, 64, 295-304.[15] Zou, Z., Yao, M. (2015). Airflow resistance and bio-filtering performance of carbon nanotube filters and current facepiece respirators. Journal of Aerosol Science, 79, 61-71.

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