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Dive into the research topics where Mohamed Magdeldin is active.

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Featured researches published by Mohamed Magdeldin.


BIOFUELS | 2016

Process modeling, synthesis and thermodynamic evaluation of hydrogen production from hydrothermal processing of lipid extracted algae integrated with a downstream reformer conceptual plant

Mohamed Magdeldin; Thomas Kohl; Mika Järvinen

ABSTRACT Hydrothermal processing of organics, particularly the supercritical water gasification process, has showed potential in lab-scale records to valorize the chemical energy stored in biomass. The technology manipulates the varying thermo-physical properties around the critical point of water to convert and upgrade the organic content, as well as extract inorganics. This study provides a systematic evaluation to the process upscaling into energetically efficient commercial demonstration. Conceptual plant flowsheets for a lipid extracted algae feedstock were developed on Aspen plus® for 99.9% purity hydrogen fuel production. The advantageous reactor system configuration is integrated within a layout that includes subsequent power generation and gas purification. The process is coupled with a downstream steam reformer block to maximize the poly-generation of hydrogen fuel, power and thermal heat. To thermodynamically evaluate the plant designs, minimum process utility demands were computed with the pinch analysis method, and different energy recovery scenarios, as well as alternative design configurations for optimal heat recovery were assessed. Finally, a comparative assessment showed that integrating downstream steam reforming with hydrothermal processing lead to an increase in the overall energetic efficiency from 34.2 to 46.2%, in the fuel-equivalent efficiency from 44.1 to 55% and exergetic efficiency from 28.9 to 41.4%.


Energy | 2017

Techno-economic assessment of the by-products contribution from non-catalytic hydrothermal liquefaction of lignocellulose residues

Mohamed Magdeldin; Thomas Kohl; Mika Järvinen


Energies | 2016

The BioSCWG Project: Understanding the Trade-Offs in the Process and Thermal Design of Hydrogen and Synthetic Natural Gas Production

Mohamed Magdeldin; Thomas Kohl; Cataldo De Blasio; Mika Järvinen; Song Won Park; Reinaldo Giudici


28th International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems, ECOS 2015 | 2015

Heat Integration Assessment for the Conceptual Plant Designs of Synthetic Natural Gas, SNG Production from Supercritical Water Gasification, SCWG of Spirulina Alga

Mohamed Magdeldin; Thomas Kohl; Cataldo De Blasio; Mika Järvinen


Journal of Sustainable Development of Energy, Water and Environment Systems | 2017

Techno-economic Assessment of Integrated Hydrothermal Liquefaction and Combined Heat and Power Production from Lignocellulose Residues

Mohamed Magdeldin; Thomas Kohl; Mika Järvinen


South East European Conference on Sustainable Development of Energy , Water and Environment Systems | 2016

Thermal performance prediction model of the hydrothermal liquefaction of biomass process

Mohamed Magdeldin; Thomas Kohl; Mika Järvinen


International conference on efficiency, cost, optimization, simulation and environmental impact of energy systems | 2016

Techno-economic Assessment for Hydrothermal Liquefaction of Lignocellulosic Biomass, a Finnish case study

Mohamed Magdeldin; Thomas Kohl; Cataldo De Blasio; Loay Saeed; Mika Järvinen


International Symposium on Energy Challenges and Mechanics: towards a Big picture | 2016

Comparative Energetic Assessment of Integrated H2- and CH4-Production via Biomass Supercritical Water Gasification

Thomas Kohl; Mohamed Magdeldin; Cataldo De Blasio; Mika Järvinen


European Symposium on Biochemical Engineering Sciences (ESBES) 2016 | 2016

Process Potential & Assessment For Supercritical Water Extraction-SCWE Of Kraft Black Liquor Pulping Chemicals

Mohamed Magdeldin; Mika Järvinen


Archive | 2015

SuperCritical Water Gasification of Black Liquor: Progress & Prospects

Mohamed Magdeldin; Thomas Kohl; Cataldo De Blasio; Mika Järvinen

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Song Won Park

University of São Paulo

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