Items where Author is "Mohamed, M."

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Number of items: 17.

Article

Tengku Hassan, T.N.A. and Mohd Shariff, A. and Abd Aziz, N.F. and Mustafa, N.F.A. and Tan, L.S. and Abdul Halim, H.N. and Mohamed, M. and Hermansyah, H. (2023) Aqueous Potassium Salt of L-Cysteine as Potential CO2 Removal Solvent: An Investigation on Physicochemical Properties and CO2 Loading Capacity. Sustainability (Switzerland), 15 (15). ISSN 20711050

Chai, Y.H. and Mohamed, M. and Cheng, Y.W. and Chin, B.L.F. and Yiin, C.L. and Yusup, S. and Lam, M.K. (2023) A review on potential of biohydrogen generation through waste decomposition technologies. Biomass Conversion and Biorefinery, 13 (10). pp. 8549-8574. ISSN 21906815

Mostapha, M. and Mohamed, M. and Ameen, M. and Lam, M.K. and Yusup, S. (2022) Upgrading biocrudes derived from agricultural biomass into advanced biofuels: Perspective from Malaysia. Fuel, 323.

Mostapha, M. and Mohamed, M. and Ameen, M. and Lam, M.K. and Yusup, S. (2022) Upgrading biocrudes derived from agricultural biomass into advanced biofuels: Perspective from Malaysia. Fuel, 323.

Chai, Y.H. and Mohamed, M. and Cheng, Y.W. and Chin, B.L.F. and Yiin, C.L. and Yusup, S. and Lam, M.K. (2021) A review on potential of biohydrogen generation through waste decomposition technologies. Biomass Conversion and Biorefinery.

Yamamoto, A. and Shinkai, T. and Loy, A.C.M. and Mohamed, M. and Baldovino, F.H.B. and Yusup, S. and Quitain, A.T. and Kida, T. (2020) Application of a solid electrolyte CO2 sensor to the performance evaluation of CO2 capture materials. Sensors and Actuators, B: Chemical, 315.

Mohamed, M. and Yusup, S. and Loy, A.C.M. (2019) Effect of Empty Fruit Bunch in Calcium Oxide for Cyclic CO2 Capture. Chemical Engineering and Technology, 42 (9). pp. 1840-1851.

Mohamed, M. and Yusup, S. and Quitain, A.T. and Kida, T. (2018) Utilization of rice husk to enhance calcium oxide-based sorbent prepared from waste cockle shells for cyclic CO2 capture in high-temperature condition. Environmental Science and Pollution Research. pp. 1-15.

Mohamed, M. and Yusup, S. and Quitain, A.T. and Kida, T. (2018) Utilization of rice husk to enhance calcium oxide-based sorbent prepared from waste cockle shells for cyclic CO2 capture in high-temperature condition. Environmental Science and Pollution Research. pp. 1-15.

Mohamed, M. and Yusup, S. and Bustam, M.A. and Azmi, N. (2017) Effect of coal bottom ash & binder addition into CaO-based Sorbent on CO2capture performance. Chemical Engineering Transactions, 56. pp. 325-330.

Yiin, C.L. and Yusup, S. and Mohamed, M. and Udomsap, P. and Yoosuk, B. and Sukkasi, S. (2016) Stabilization of empty fruit bunch derived bio-oil using solvents. Journal of Sustainable Development of Energy, Water and Environment Systems, 4 (1). pp. 38-47.

Mohamed, M. and Yusup, S. and Wahyudiono and Machmudah, S. and Goto, M. (2014) Effect of temperature on the extraction of bio-oil from oil palm mesocarp fiber using supercritical CO2. Jurnal Teknologi (Sciences and Engineering), 69 (4). pp. 39-42.

Conference or Workshop Item

Mohamed, M. and Sebastian, P. and Hiung, L.H. and Ngiap, S.T.S. (2014) Threading optimization of the AEMB microprocessor. In: UNSPECIFIED.

Book

Chai, Y.H. and Rashidi, N.A. and Mohamed, M. and Chin, B.L.F. and Yusup, S. (2022) Basic principles of CO2 capture and conversion technologies. Elsevier, pp. 25-61. ISBN 9780323898515; 9780323898881

Ameen, M. and Mohamed, M. and Mostapha, M. and Zafar, H.P. and Sher, F. and Yusup, S. (2022) Design strategies for the synthesis of deep eutectic solvents. Elsevier, pp. 21-48. ISBN 9780323999052; 9780323999564

Mohamed, M. and Yusup, S. and Wahyudiono and Machmudah, S. and Goto, M. and Uemura, Y. (2015) Upgrading of oil palm empty fruit bunch to value-added products. Springer International Publishing, pp. 63-78.

Mohamed, M. and Yusup, S. and Wahyudiono and Machmudah, S. and Goto, M. and Uemura, Y. (2014) Upgrading of oil palm empty fruit bunch to value-added products. Springer International Publishing, pp. 63-78.

This list was generated on Sun Dec 1 18:20:12 2024 +08.