Items where Author is "M. Shariff, A."

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Number of items: 8.

Article

Abdul Majid, N.D. and M. Shariff, A. (2020) Incident investigation work-aid tool for process safety management compliance in process industries. Process Safety Progress, 39 (S1).

Aftab, A. and M. Shariff, A. and Garg, S. and Lal, B. and Shaikh, M.S. and Faiqa, N. (2018) Solubility of CO2 in aqueous sodium β-alaninate: Experimental study and modeling using Kent Eisenberg model. Chemical Engineering Research and Design, 131. pp. 385-392.

Aftab, A. and M. Shariff, A. and Garg, S. and Lal, B. and Shaikh, M.S. and Faiqa, N. (2018) Solubility of CO2 in aqueous sodium β-alaninate: Experimental study and modeling using Kent Eisenberg model. Chemical Engineering Research and Design, 131. pp. 385-392.

Aftab, A. and M. Shariff, A. and Garg, S. and Lal, B. and Shaikh, M.S. and Faiqa, N. (2018) Solubility of CO2 in aqueous sodium β-alaninate: Experimental study and modeling using Kent Eisenberg model. Chemical Engineering Research and Design, 131. pp. 385-392.

Aftab, A. and M. Shariff, A. and Garg, S. and Lal, B. and Shaikh, M.S. and Faiqa, N. (2018) Solubility of CO2 in aqueous sodium β-alaninate: Experimental study and modeling using Kent Eisenberg model. Chemical Engineering Research and Design, 131. pp. 385-392.

Jusoh, N. and Yeong, Y.F. and Lau, K.K. and M. Shariff, A. (2017) Enhanced gas separation performance using mixed matrix membranes containing zeolite T and 6FDA-durene polyimide. Journal of Membrane Science, 525. pp. 175-186.

Jusoh, N. and Yeong, Y.F. and Lau, K.K. and M. Shariff, A. (2017) Transport properties of mixed matrix membranes encompassing zeolitic imidazolate framework 8 (ZIF-8) nanofiller and 6FDA-durene polymer: Optimization of process variables for the separation of CO2from CH4. Journal of Cleaner Production, 149. pp. 80-95.

Jusoh, N. and Yeong, Y.F. and Cheong, W.L. and Lau, K.K. and M. Shariff, A. (2016) Facile fabrication of mixed matrix membranes containing 6FDA-durene polyimide and ZIF-8 nanofillers for CO2 capture. Journal of Industrial and Engineering Chemistry, 44. pp. 164-173.

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