Items where Author is "Leng, Chew Thiam"

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Number of items: 8.

Article

Mubashir, Muhammad and Fong, Yeong Yin and Leng, Chew Thiam and Keong, Lau Kok and Jusoh, Norwahyu (2021) Nanocomposite catalytic membranes for energy production: Advances and challenges. Handbook of Nanotechnology Applications. pp. 239-254.

Mubashir, Muhammad and Leng, Chew Thiam and Keong, Lau Kok and Jusoh, Norwahyu and others (2020) Study on the effect of process parameters on CO2/CH4 binary gas separation performance over NH2-MIL-53 (Al)/cellulose acetate hollow fiber mixed matrix membrane. Polymer Testing, 81. p. 106223.

Mokri, Nurul Afiqah and Ching, Oh Pei and Mukhtar, Hilmi and Leng, Chew Thiam (2019) Tailoring particle size and agglomeration state of mesoporous MCM-48 via optimisation of sol-gel silica process. Journal of Physical Science, 30 (1). pp. 145-168.

Mokri, Nurul Afiqah and Ching, Oh Pei and Mukhtar, Hilmi and Leng, Chew Thiam (2019) Tailoring particle size and agglomeration state of mesoporous MCM-48 via optimisation of sol-gel silica process. Journal of Physical Science, 30 (1). pp. 145-168.

Mubashir, Muhammad and Fong, Yeong Yin and Leng, Chew Thiam and Keong, Lau Kok (2018) Issues and Current Trends of Hollow-Fiber Mixed-Matrix Membranes for CO2 Separation from N2 and CH4. Chemical Engineering & Technology, 41 (2). pp. 235-252.

Mubashir, Muhammad and Fong, Yeong Yin and Leng, Chew Thiam and Keong, Lau Kok (2018) Issues and Current Trends of Hollow-Fiber Mixed-Matrix Membranes for CO2 Separation from N2 and CH4. Chemical Engineering & Technology, 41 (2). pp. 235-252.

Mubashir, Muhammad and Fong, Yeong Yin and Leng, Chew Thiam and Keong, Lau Kok (2018) Prediction of CO2 permeability in NH2-MIL-53 (Al)/cellulose acetate mixed matrix membranes using theoretical models. International Journal of Integrated Engineering, 10 (5).

Mubashir, Muhammad and Fong, Yeong Yin and Leng, Chew Thiam and Keong, Lau Kok (2018) Prediction of CO2 permeability in NH2-MIL-53 (Al)/cellulose acetate mixed matrix membranes using theoretical models. International Journal of Integrated Engineering, 10 (5).

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