Professor

DR Ahmad Omar Hasan

College of Engineering / Department of Department of Mechanical Engineering
Thermal/ thermal pollution

Publications & Articles

Biodiesel production over a catalyst prepared from biomass-derived waste date pits Author links open overlay panel Ala’a H. Al-Muhtaseb a, Farrukh Jamil a, b, Lamya Al-Haj c, Myo Tay Zar Myint d, Eyas Mahmoud e, Mohammad N.M. Ahmad f, Ahmad O. Hasan g, Sikander Rafiq b | | 2000

Abstract Date palms are predominately produced in arid regions and the date pits, or seeds, produced from them are sometimes considered to be a waste. Date pits, ground to powder following an oil extraction, were used to synthesize a renewable heterogeneous catalyst. The green carbon catalyst was modified by an alkaline earth metal oxide (CaO). The oil extracted from date pits was transformed into biodiesel. The biodiesel process was optimized and the optimal yield was 98.2 wt% at a reaction temperature of 70 °C, reaction time ∼120 min, methanol to oil molar ratio of 12 and catalyst loading of 4.5 wt%. The quality of the produced biodiesel meets the standard limits set by regulating agencies (ASTM, EU) which indicates its suitability to be used as a fuel. Thus, it can be concluded that the green carbon catalyst synthesized from waste date pits has a high potential for biodiesel production.

Biodiesel production over a catalyst prepared from biomass-derived waste date pits Author links open overlay panel Ala’a H. Al-Muhtaseb a, Farrukh Jamil a, b, Lamya Al-Haj c, Myo Tay Zar Myint d, Eyas Mahmoud e, Mohammad N.M. Ahmad f, Ahmad O. Hasan g, Sikander Rafiq b | | 2000

Abstract Date palms are predominately produced in arid regions and the date pits, or seeds, produced from them are sometimes considered to be a waste. Date pits, ground to powder following an oil extraction, were used to synthesize a renewable heterogeneous catalyst. The green carbon catalyst was modified by an alkaline earth metal oxide (CaO). The oil extracted from date pits was transformed into biodiesel. The biodiesel process was optimized and the optimal yield was 98.2 wt% at a reaction temperature of 70 °C, reaction time ∼120 min, methanol to oil molar ratio of 12 and catalyst loading of 4.5 wt%. The quality of the produced biodiesel meets the standard limits set by regulating agencies (ASTM, EU) which indicates its suitability to be used as a fuel. Thus, it can be concluded that the green carbon catalyst synthesized from waste date pits has a high potential for biodiesel production.

Research Interests

Internal combustion engines thermal pollution

Other Information