CURRICULUM VITAE. Educational Qualifications. Current Assignment

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1 CURRICULUM VITAE Name: Dr. Ghulam Murshid Father s Name: Ch. Rashid Ahmad Date of Birth: Marital Status: Married Languages: English, Urdu Address: Department of Petroleum & Chemical Engineering Sultan Qaboos University, Oman GSM: g.murshid@squ.edu.om hmurshid@gmail.com Educational Qualifications PhD Chemical Engineering Universiti TEKNOLOGY PETRONAS, Malaysia (2012) M.Sc. : Air Quality Control Solid Waste & Wastewater Process Engineering, University of Stuttgart Germany (2007) B.Sc. : Chemical Engineering Institute of Chemical Engineering & Technology University of the Punjab Lahore Pakistan (2004) Current Assignment Assistant Professor: Department of Petroleum & Chemical Engineering (Sep 2014 to date) Sultan Qaboos Unoversity, Muscat. Oman Teaching and Management: Fluid Flow Chemical Engineering Thermodynamics Heat Transfer Chemical Engineering Practicals Member various Department Committees

2 Research Projects Experience Technology Development Project to capture CO 2 using in house synthesised novel solvent Sponsored by CARIGALI PETRONAS Malaysia Solubility and Kinetic Study of Novel Amino Acid Based Solvent for CO 2 Capture from Light Hydrocarbon Development of amine functionalized based amino acids hybrid solvents to capture CO 2 from CO 2/CH 4 gaseous streams Teaching and Management Expereince Assistant Prof. (September 2014 to date) Department of Petroleum & Chemical Engineering Sultan Qaboos University, Muscat. Oman Lecturer (January 2013 to September 2014) Chemical Engineering Department Universiti Teknologi PETRONAS, Malaysia Journal Publications 1. Hosein, G., Ayoub, M., Suriati, S., Murshid, G., Sarah. F. and Azmi, A. S Investigation of various process parameters on the solubility of carbon dioxide in phosphonium-based deep eutectic solvents and their aqueous mixtures: Experimental and modelling, Int. J. GreenH. Gas Con., 66: Hosein, G., Ayoub, M., Suriati, S., Sintayehu, M. H., Murshid, G., Sarah. F. and Saleem, N.K Experimental and prediction of volumetric properties of aqueous solution of allyltriphenyl Phosphonium bromide Triethylene glycol) deep eutectic solvents, Thermochim. Acta. 657: Sahil, G., Murshid, G., Mjalli, F.S. and Waqar, A Physical properties of aqueous blend of diethanolamine and sarcosine: experimental and correlation study, Chem. Pap. 71: Murshid, G., Sahil, G. and Mjalli, F.S Experimental and correlation study of selected physical properties of aqueous blends of potassium sarcosinate and 2- piperidineethanol as a solvent for CO2 capture, Chem. Eng. Res. Des. 118: Experimental and correlation study of selected physical properties of aqueous blends of potassium sarcosinate and 2-piperidineethanol as a solvent for CO2

3 capture, S. Garg. G. Murshid, F. S. Mjalli, Chemical Engineering Research and Design, 2017, 118, The effects of salt, particle and pore size on the process of carbon dioxide hydrate formation: A critical review, H. Ghaedi, M. Ayoub, G. Murshid, AIP Proceedings, 2016, 1787, High Pressure Rheology and Viscosity of Monoethanolamine with n-methyl-2- Pyrrolidone and Water Hybrid Solvent, L.S. Tana, A.M. Shariff, G. Murshid. Procedia Engineering, 2016, 148, Measurement and prediction of physical propertiesof aqueous sodium l-prolinate and piperazineas a solvent blend for CO2 removal, MS Shaikh, A. M Shariff, MA Bustam, G Murshid. Chemical Engineering Research & Design, 2015, 102, Thermo-Physical Properties and Solubility of CO2 in Piperazine Activated Aqueous Solutions of β-alanine, G. Murshid World Academy of Science, Engineering and Technology, International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering, 2015, 9, Synergistic Effect of Thiourea and Surfactants on Corrosion Inhibition of Stainless Steel-410 in Presence of Sulfuric Acid. S Ullah, AM Shariff, M Nadeem, MA Bustam, SA Shahid, G Murshid, Applied Mechanics and Materials 2015, 699, Absorption of Green House Gas (CO2) and Physical Properties of Aqueous Solutions of 2-Amino-2-Hydroxymethyl-1, 3-Propanediol and Di-Ethanolamine (AHPD+ DEA) at Elevated Pressures. G Murshid, AM Shariff, MA Bustam, S Ullah. Journal of Applied Sciences, 2014, 14, Synthesis and CO2 adsorption study of modified MOF-5 with multi-wall carbon nanotubes and expandable graphite. S Ullah, MA Bustam, AM Shariff, AEI Elkhalifah, G Murshid, N Riaz. 3RD INTERNATIONAL CONFERENCE ON FUNDAMENTAL AND APPLIED SCIENCES, 2014, 1621, Effect of Modified MIL-53 with Multi-Wall Carbon Nanotubes and Nanofibers on CO2 Adsorption. S Ullah, AM Shariff, MA Bustam, AEI Elkhalifah, G Murshid, N Riaz., Applied Mechanics and Materials, 2014, 625, Solubility of CO2 in Piperazine (PZ) Activated Aqueous Solutions of 2-Amino-2- methyl-1-propanol (AMP) at Elevated Pressures. G Murshid, AM Shariff, MA Bustam, S Ullah. Applied Mechanics and Materials, 2014, 625, Study of CO2 Solubility in Aqueous Blend of Potassium Carbonate Promoted with Glycine. MS Shaikh, AM Shariff, MA Bustam, G Murshid. Applied Mechanics and Materials, 2014, 625, Density, Viscosity and CO2 Solubility of Novel Solvent. WM Kee, AM Shariff, MAB Bustam, LK Keong, T Karikalan, G Murshid. Advanced Materials Research, 2014, 917,

4 17. Solubility of Carbon Dioxide in Aqueous Solutions of Piperazine (PZ) at Elevated Pressures. G Murshid, AM Shariff, LK Keong, M Azmi Bustam. Advanced Materials Research, 2014, 917, Solubility of 2-Amino-2-Hydroxymethyl-1, 3-Propanediol and Di-Ethanolamine (AHPD+ DEA) at Elevated Pressures. G Murshid, AM Shariff, MA Bustam, S Ullah. Journal of Applied Sciences, 2014, 14 (23), Solubility of CO2 in Piperazine Activated MDEA and 2-Amino-2-Methyl-1- Propanol. MK Wong, G Murshid, MA Bustam, S Tyutyu, AM Shariff. Journal of Applied Sciences, 2014, 14 (22), Analysis of Physicochemical Properties of Aqueous Sodium Glycinate (SG) Solutions at Low Concentrations from M. MS Shaikh, AM Shariff, MA Bustam and Ghulam Murshid. Journal of Applied Sciences, 2014, 14 (10), Physicochemical Properties of Aqueous Solutions of Sodium l-prolinate as an Absorbent for CO2 Removal. MS Shaikh, AM Shariff, MA Bustam, G Murshid. Journal of Chemical & Engineering Data, 2013, 59 (2), Physical properties of aqueous solutions of potassium carbonate + glycine as a solvent for carbon dioxide removal. MS Shaikh, AM Shariff, MA Bustam, G Murshid. Journal of the Serbian Chemical Society 2014, 79 (6), Solubility of Carbon Dioxide in Aqueous Solution of 2-Amino-2-hydroxymethyl- 1, 3-propanediol at Elevated Pressures. M Ghulam, SA Mohd, BM Azmi, RESEARCH JOURNAL OF CHEMISTRY AND ENVIRONMENT, 2013, 17 (10), Volumetric properties, viscosities and refractive indices of aqueous solutions of 2- amino-2-methyl-1-propanol (AMP). M Ghulam, SA Mohd, BM Azmi, A Faizan. RESEARCH JOURNAL OF CHEMISTRY AND ENVIRONMENT, 2013, 17, Physical properties of aqueous blends of sodium glycinate (SG) and piperazine (PZ) as a solvent for CO2 capture. MS Shaikh, AM Shariff, MA Bustam, G Murshid. Journal of Chemical & Engineering Data, 2013, 58 (3), High Pressure Physical Solubility of CO2 in Novel Solvent (Stonvent). MK Wong, KK Lau, MA Bustam, G Murshid, SF Hashim, AM Shariff. International Journal of Chemical and Environmental Engineering, 2012, 3 (5) 27. The Study of Joule Thompson Effect for the Removal of CO2 from Natural Gas by Membrane Process. F Ahmad, LK Keong, AM Shariff, G Murshid. International Journal of Chemical and Environmental Engineering, 2012, 3 (2) 28. Process simulation and optimal design of membrane separation system for CO2 capture from natural gas. F Ahmad, KK Lau, AM Shariff, G Murshid. Computers & Chemical Engineering, 2012, 36,

5 29. Physical properties of piperazine (PZ) activated aqueous solutions of 2-amino-2- hydroxymethyl-1, 3-propanediol (AHPD+ PZ). G Murshid, AM Shariff, KK Lau, MA Bustam, F Ahmad. Journal of Chemical & Engineering Data, 2011, 57 (1), Thermophysical analysis of aqueous solutions of piperazine (PZ) and 2-amino-2- hydroxymethyl-1, 3-propanediol+ piperazine (PZ+ AHPD). G Murshid, AM Shariff, LK Keong, MA Bustam, F Ahmad. International Journal of Chemical and Environmental Engineering, 2011, 2 (5) 31. Physical properties and thermal decomposition of aqueous solutions of 2-amino- 2-hydroxymethyl-1, 3-propanediol (AHPD). G Murshid, AM Shariff, KK Lau, MA Bustam, F Ahmad. International Journal of Thermophysics, 2011, 32 (10), Solubility and Absorption Performance of Enhanced Amine Solvent (Stonvent) for Carbon Dioxide Removal. LS Tan, G Murshid, MA Bustam, A Mohd Shariff, KK Lau. International Journal of Chemical and Environmental Engineering, 2011, 2 (4) 33. Thermophysical Analysis of Aqueous Solutions of 2-Amino-2-hydroxymethyl-1, 3-propanediol (Potential CO2 Removal Solvent from Gaseous Streams). G Murshid, SA Mohd, KL Kok, BM Azmi, A Faizan. RESEARCH JOURNAL OF CHEMISTRY AND ENVIRONMENT, 2011, 15 (2), Physical Properties of Aqueous Solutions of Piperazine and (2-Amino-2-methyl- 1-propanol+ Piperazine) from ( to ) K. G Murshid, AM Shariff, LK Keong, MA Bustam. Journal of Chemical & Engineering Data, 2011, 56 (5), Study of Carbon Dioxide Absorption from Hydrocarbon Stream Using Enhanced Amine Solvent (Stonvent). TL See, G Murshid, MA Bustam, LK Keong, AM Shariff. International Journal of Chemical and Environmental Engineering, 2011, 3 (3) Thermophysical Analysis of Aqueous Solutions of Piperazine (PZ) and 2-Amino- 2-hydroxymethyl-1, 3-propanediol + Piperazine (PZ + AHPD). G Murshid, AM Shariff, LK Keong, MA Bustam, F Ahmad. Evaluation, 2011, 2 (5), Thermo physical analysis of 2-amino-2-methyl-1-propanol solvent for carbon dioxide removal. G Murshid, AM Shariff, LK Keong, AM Bustam Chem Eng Transactions, 2011, 25, Solubility of CO2 in aqueous solutions of 2-amino-2-methyl-1-propanol at high pressure. AM Shariff, G Murshid, KK Lau, MA Bustam, F Ahamd. World Academy of Science, Engineering and Technology, ,

6 Conference Proceedings 1. Ghulam Murshid, Synthesis of Amine Functionalized MOF-74 for CO2 capture. 18 th International Conference on Materials Science (ICMSEM) 3-4 March, 2016 Singapore. 2. Ghulam Murshid, Azmi Mohd Shariff, Lau Kok Keong, Mohammad Azmi Bustam Solubility of CO2 in an Enhanced Amine Based Solvent (STONVENT) International Conference on Environment 2010 (ICENV 2010). Penang Malaysia 3. Ghulam Murshid, Azmi Mohd Shariff, Lau Kok Keong, Mohammad Azmi Bustam Evaluation of Physical Properties of Piperazine (PZ), PZ Activated Aqueous 2-Amino-2-methyl-1-propanol (AMP + PZ) for CO2 Removal from Hydrocarbon Streams. International Chemical and Environmental Engineering Conference 2010, Kuala Lumpur. Malaysia 4. Ghulam Murshid, Azmi Mohd Shariff, Lau Kok Keong, Mohammad Azmi Bustam and Faizan Ahmad Thermo physical Properties of Aqueous Solutions of 2-Amino-2-methyl-1-propanol (AMP) 14th International Conference on Process Integration, Modelling and Optimisation for Energy Saving for Pollution Reduction 8-11 May Italy Ghulam Murshid, Azmi Mohd Shariff, Lau Kok Keong, Mohammad Azmi Bustam and Faizan Ahmad Volumetric Properties and Viscosities of Aqueous 2-

7 Amino-2-methyl-1-propanol International Renewable Energy and Environment Conference (IREEC 2011) June 2011, Kuala Lumpur. Malaysia 6. Ghulam Murshid, Azmi Mohd Shariff, Lau Kok Keong, Mohammad Azmi Bustam and Faizan Ahmad, Solubility of Carbon dioxide in Aqueous Solutions of 2-amino-2-methyl-1-propanol at High Pressures, International Conference on Environmental Sciences and Engineering (ICESE 2011), (21-23) December Phuket, Thailand. 7. Ghulam Murshid, Azmi Mohd Shariff, Lau Kok Keong, Mohammad Azmi Bustam and Faizan Ahmad, Solubility of Carbon dioxide in Aqueous Solutions of Piperazine (PZ) at High Pressures, ICPEAM, June 2012) Kuala Lumpur, Malaysia 8. Wong, K. K. Lau, Azmi Mohd Shariff and Ghulam Murshid, High Pressure Physical Solubility of CO2 in a Novel Solvent (STONVENT), M K. International Chemical and Environmental Engineering Conference 2011, December Kuala Lumpur Malaysia Projects/Experience 1: Proejects Supervised; 1. Synthesis of Green Deep Eutectic Solvents for CO 2 capture. (PhD thesis) 2. Flow sheet development and simulation of CO 2 capture via reactive absorption using AHPD 3. Development and Characterization of PZ Ehhanced based Amine Solvent for Effective CO 2 Removal 4. Measurement of Transport Properties of AHPD + PZ and Development of Correlations for the Design of CO 2 Absorption Unit 5. Solubility of CO 2 in Aqueous Solutions of (AHPD + DEA) under Elevated Pressures 6. Toxicity and Corrosition Study of PZ activated Aqueous Solutions of AHPD and MDEA 2: FYDP; Supervising number of Capstone projects involving from feasibility to detailed design of process plans at under graduate level students.

8 3: Institute of Sanitary Engineering Water Quality and Solid waste Management (ISWA) Worked as research assistant helped in on going projects at the Institute 4: Master Thesis (ISWA) Design of the waste water treatment plant (Activated sludge system) Lab-Scale Investigation for the Power Failure Effects on Biological Wastewater Treatment Processes Review of energy consumption on different wastewater treatment plants 5: Project Thesis (University of Stuttgart Germany) Theoretical and experimental analysis of the production of NO 2-, N 2O and N 2 in the denitrification process with the use of a new device for the determination of N 2O and CO 2

9 Research Plan (Way Forward) Development of Energy Efficient Hybrid Mixtures for CO2 Capture from Natural Gas. Removal of CO2 from natural gas is of vital importance to maintain and expand the availability of these clean burning, efficient fuel resource.[1] The conventional technologies for the capture of CO2 has been applied in industry through chemical absorption by using as aqueous solution of amine, which has few advantages, such as low cost, high absorption efficiency and capacity. The capture of acid gases from the natural gas is normally performed at high pressure conditions. The type of amine most effective in a given application is related to the partial pressure of the acid gas in the steams, with primary alkanolamines (MEA), secondary alkanolamines (DEA) and tertiary alkanolamines (TEA) being the best suited for low, moderate and high pressure respectively [4] However the use of aqueous amine solutions may also pose serious inherent drawbacks, including loss of solvent, corrosion of facility and high energy demand for regeneration of the absorbent. Therefore any alternative absorbents that could facilitate separation of CO2 from gas mixtures, eg flue gas natural gas/syn gas, without concurrent loss of the solvent into the gas stream would be those liquids, which have negligible volatility, making them be highly desired. Due to their distinctive properties such as high thermal stability, negligible vapor pressure, high loading capacity, easy recyclability and diversiform structure/property modulation, environmentally friendly Task Specific Ionic Liquid (TSIL) could be used as green catalysts/solvents in a wide range of chemical reactions. Design and synthesis of functionalized ILs as green absorbents in gas separation offer a new opportunity for developing novel capture system that are capable of reversibly capturing CO2 with a high capacity and absorption rate. The negligible volatility of ILs results in a noncontaminated target gas, making them especially attractive for the absorption of gases. More importantly, amine intercalated ILs can be designed according to the actual needs of industrial CO2 capture process, obtaining industrial attractive sorbent materials with high capacity and energy saving for CO2 absorption. Based on our recent preliminary

10 research, it was found that the physical mixing of amine and Ils exhibit rapid and reversible CO2 uptake. In the present work it is proposed to develop an industrially attractive and unprecedented method to realize the CO2 capture by chemically combining the desirable properties of targeted solvents/ionic liquids with alkanolamines or water to reduce its viscosity and to make them energy efficient.

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