M. Abd El-Salam
Cairo University
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Publication
Featured researches published by M. Abd El-Salam.
Journal of Environmental Management | 2015
Rui Sun; Tamer M. Ismail; Xiaohan Ren; M. Abd El-Salam
A numerical model was employed to simulate the combustion process in a fixed porous bed of municipal solid waste (MSW). Mass, momentum, energy and species conservation equations of the waste bed were set up to describe the incineration process. The rate of moisture evaporation, volatile matter devolatilization, char combustion, NOx production, and reduction and dioxin formation were calculated and established according to the local thermal conditions and waste property characteristics. Changes in the bed volume during incineration were calculated according to the reaction rate of the process. The simulation results were compared with experimental data, which shows that the incineration process of waste in the fixed bed was reasonably simulated. The simulation results of weight loss and solid temperature in the bed agree with the experimental data, which shows that the waste combustion rate is nearly constant in the middle of the incineration process, and that moisture evaporation takes up most of the time for the overall incineration experiment. The emission of gas species from the bed surface is also agreeably simulated, with O2, CO2, and CO concentrations in flue gas agreeing with the experimental data. The simulation results benefit the understanding of the combustion process in the waste bed as well as the design of incinerator grates.
Waste Management | 2017
Tamer M. Ismail; M. Abd El-Salam; Eliseu Monteiro; Abel Rouboa
The present study shows the experimental and numerical results of thermal gasification of biomass, on the energy potential of agro-industrial waste from the Portalegre region. Gasification tests were performed in a pilot-scale fluidized bed gasifier, in order to study the behavior of peach stones and miscanthus to investigate the effect of gasification temperatures at 750°C, 800°C and 850°C at a constant biomass flow rate of 45kg/h. In order to optimize the operating conditions of the biomass gasification process, a numerical model is developed namely COMMENT code. This model is a computer model of two dimensions describing the biomass gasification processes in a fluidized bed gasifier using peach stone and miscanthus as fuel. Both phases, solid and gaseous, were described using an Eulerian-Eulerian approach exchanging mass, energy, and momentum. The numerical model results are then compared with experimental results. The produced results show the impact of the increased temperature in the calorific value of the syngas. The tests carried out at 750°C shown an increase in CO2 and N2 and a decrease of CO in the range of 5% comparing to the tests carried out at 850°C. In addition, increased temperature favors a decrease in tar production in thermal gasification process. Numerical results shows to be in good agreement with the experimental data.
Applied Thermal Engineering | 2016
Tamer M. Ismail; M. Abd El-Salam; Eliseu Monteiro; Abel Rouboa
Applied Thermal Engineering | 2017
Tamer M. Ismail; M. Abd El-Salam
International Journal of Thermal Sciences | 2014
T.M. Ismail; M. Abd El-Salam; M.A. El-Kady; S.M. El-Haggar
Renewable Energy | 2015
Tamer M. Ismail; M. Abd El-Salam
Energy Conversion and Management | 2018
Tamer M. Ismail; Khaled Ramzy; M.N. Abelwhab; Basem E. Elnaghi; M. Abd El-Salam; M.I. Ismail
Energy | 2018
Xiaoxiao Meng; Rui Sun; Tamer M. Ismail; M. Abd El-Salam; Wei Zhou; Ruihan Zhang; Xiaohan Ren
Applied Thermal Engineering | 2017
Eliseu Monteiro; Tamer M. Ismail; Ana Ramos; M. Abd El-Salam; Paulo Brito; Abel Rouboa
Fuel Processing Technology | 2016
Liang Lu; Tamer M. Ismail; Yuqi Jin; M. Abd El-Salam; Kunio Yoshikawa