Dr. Akampumuza Obed
Lecturer, Department Of Cosmetology and Fashion (Clothing Design)
Education & Qualifications
PhD Textile Engineering – Donghua University
Publications
- Lugoloobi, I., Memon, H., Akampumuza, O., & Balilonda, A. (2020). Advanced Physical Applications of Modified Cotton. In Cotton Science and Processing Technology (pp. 433-472). Springer, Singapore.
- Akampumuza, O., Wu, J., Quan, Z., & Qin, X. (2021). Simulation of Bimodal Fiber Distribution Effect on Transient Accumulation of Particles During Filtration. Journal of Shanghai Jiaotong University (Science), 26(2), 176-185.
- Akampumuza, O., Xu, H., Xiong, J., Zhang, H., Quan, Z., & Qin, X. (2020). Analyzing the effect of nanofiber orientation on membrane filtration properties with the progressive increase in its thickness: a numerical and experimental approach. Textile Research Journal, 90(1), 24-36.
- Akampumuza, O., Gao, H., Zhang, H., Wu, D., & Qin, X. H. (2018). Raising nanofiber output: the progress, mechanisms, challenges, and reasons for the pursuit. Macromolecular Materials and Engineering, 303(1), 1700269.
- Akampumuza, O., Wambua, P. M., Ahmed, A., Li, W., & Qin, X. H. (2017). Review of the applications of biocomposites in the automotive industry. Polymer Composites, 38(11), 2553-2569.
- Gao, H., Yang, Y., Akampumuza, O., Hou, J., Zhang, H., & Qin, X. (2017). A low filtration resistance three-dimensional composite membrane fabricated via free surface electrospinning for effective PM 2.5 capture. Environmental Science: Nano, 4(4), 864-875.
- Akampumuza, O., Wu, J., Quan, Z., Qin, X., Simulation of the Bimodal Fiber distribution effect on the Transient Accumulation of Particles During Filtration, Journal of Shanghai Jiaotong University (Science)
- Zhou, M., Shi, L., Dai, H., Obed, A., Liu, P., Wu, J. & Wang, R. (2022). Facile fabrication of reinforced sub-micron fibrous media with hierarchical structure compounded thermally for effective air purification in application. Separation and Purification Technology, 289, 120726.

