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    Investigation of a hydrogen production process through aluminum and water chemical reaction 

    Bolt, Andre (2019-12-01)
    This thesis reported a novel hydrogen production experimental set up, which utilized the chemical reaction between aluminum and water to produce hydrogen. The constructed experimental setup had an aluminum powder spraying ...
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    Development of a new integrated sustainability assessment model for energy systems 

    Abu-Rayash, Azzam (2017-07-01)
    This thesis presents a novel and comprehensive sustainability assessment model for energy systems. The model features an integrated approach and encompasses various multi-disciplinary areas of study, which influence energy ...
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    Development and analysis of a solar-based integrated system with a CO2 Rankine power cycle 

    AlZahrani, Abdullah (2013-10-01)
    The current work is a thermodynamic-based design and analysis of a solar-based integrated system for power production. In this regards, a reheat supercritical carbon dioxide (S-CO2) Rankine cycle is proposed. This cycle ...
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    Development and investigation of compressed air only and hybrid powering options 

    Mohammadali Zadeh, Reza (2016-04-01)
    Currently, significant resources are deployed to investigate electric and pneumatic vehicles in response to environmental, energy and consumer pressures. The goal of this thesis is to show conceptual development, analyze, ...
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    Experimental and theoretical investigations of a new integrated solar tower system for photocatalytic hydrogen and power production 

    Shamim, Rafay Omar (2013-08-01)
    Solar energy conversion via photocatalytic hydrogen production from water is an attractive route for the propagation of a hydrogen economy. Increasing the efficiency of such systems to meet the target of 10% is essential ...
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    Energy ans exergy analysis of biomass co-firing in pulverized coal power generation 

    Mehmood, Shoaib (2011-04-01)
    Biomass co-firing with coal exhibits great potential for large scale utilization of biomass energy in the near future. In the present work, energy and exergy analyses are carried out for a co-firing based power generation ...
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    Energy, exergy and exergoeconomic analyses of gas-turbine based systems 

    Altayib, Khalid (2011-12-01)
    Gas turbines are the primary technology used for the purpose of power generation nearly everywhere. In this thesis, the Makkah Power Plant, running on a Brayton cycle, is considered for analysis. The peak demand for electric ...
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    Thermodynamic performance assessment of three biomass-based hydrogen production systems 

    Cohce, Mehmet Kursad (2010-04-01)
    Hydrogen is likely to be an important energy carrier in the future. It can be produced by the steam reforming of natural gas, coal gasification and water electrolysis among other processes. However current processes are ...
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    Thermodynamic anaysis of an integrated photovoltaic system for hydrogen and methanol production 

    Esmaili, Payam (2012-06-01)
    A solar based integrated system for hydrogen and methanol production is investigated. Energy and exergy analyses of a hydrogen production plant, thermodynamic assessment of methanol synthesis plant, and exergy analysis of ...
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    Investigation of mechanical heat pump systems for heat upgrading applications 

    Singh, Vishavdeep (2016-04-01)
    Three high temperature heat pump systems based on vapor compression cycles are introduced and examined. Four fluids (water, cyclohexane, biphenyl and mercury) are selected and analysed thermodynamically as prospective ...
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    AuthorKhalid, Farrukh (2)Abdel Rahman, Ahmed (1)Abu-Rayash, Azzam (1)Abuadala, Abdussalam Goma (1)Acar, Canan (1)Ahmadi, Pouria (1)Al Ali, Mohammed (1)Altayib, Khalid (1)AlZahrani, Abdullah (1)Bolt, Andre (1)... View MoreSubject
    Exergy (30)
    Energy (16)Hydrogen (8)Efficiency (7)Optimization (4)Biomass (3)Gasification (3)Hydrogen production (3)Solar (3)Exergoeconomic (2)... View MoreDate Issued2013 (5)2014 (4)2010 (3)2011 (3)2012 (3)2016 (3)2017 (3)2015 (2)2018 (2)2019 (2)Has File(s)Yes (30)

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