Behdad Moghtaderi mainly investigates Chemical looping combustion, Pyrolysis, Chemical engineering, Mineralogy and Combustion. His Chemical looping combustion research integrates issues from Redox, Air separation, Work and Systems engineering. His biological study focuses on Char.
His Char study combines topics in areas such as Thermogravimetric analysis and Experimental data. Mineralogy is frequently linked to Coal in his study. His study looks at the relationship between Combustion and topics such as Ignition system, which overlap with Coal combustion products, Mechanical engineering, Computational fluid dynamics, Process engineering and NOx.
Behdad Moghtaderi mainly focuses on Waste management, Chemical engineering, Mechanics, Combustion and Chemical looping combustion. His research on Waste management focuses in particular on Char. His Chemical engineering study incorporates themes from Hydrogen, Syngas and Calcium looping.
His Combustion research includes elements of Heat transfer, Process engineering and Coal. His Coal research includes themes of Metallurgy, Ignition system, Mineralogy and Pulp and paper industry. His studies deal with areas such as Oxide, Air separation and Redox as well as Chemical looping combustion.
Mechanics, Chemical engineering, Methane, Thermal and Waste management are his primary areas of study. The various areas that Behdad Moghtaderi examines in his Chemical engineering study include Chemical looping combustion, Oxygen, Carbonate and Calcium looping. His biological study spans a wide range of topics, including Air separation, Process engineering and Energy storage.
His Carbonate study integrates concerns from other disciplines, such as Pyrolysis and Char. In his study, which falls under the umbrella issue of Pyrolysis, Thermogravimetric analysis is strongly linked to Catalysis. His Methane research is multidisciplinary, relying on both Deflagration, Ignition system, Coal mining, Coal dust and Carbon dioxide.
The scientist’s investigation covers issues in Mechanics, Methane, Deflagration, Coal dust and Ignition system. His study in the field of Turbulence and CFD-DEM is also linked to topics like Direct method and Numerical stability. His research in Methane focuses on subjects like Waste management, which are connected to Bayer process and Red mud.
His Coal dust research is classified as research in Coal. Behdad Moghtaderi combines subjects such as Inorganic chemistry, Combustion, Ionic liquid and Environmental engineering with his study of Coal. His work investigates the relationship between Work and topics such as Integrated gasification combined cycle that intersect with problems in Chemical engineering.
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An overview on oxyfuel coal combustion—State of the art research and technology development
Terry Wall;Yinghui Liu;Chris Spero;Liza Elliott.
Chemical Engineering Research & Design (2009)
Influence of pyrolysis conditions on the structure and gasification reactivity of biomass chars
E. Cetin;B. Moghtaderi;R. Gupta;Tf F. Wall.
Fuel (2004)
Differences in reactivity of pulverised coal in air (O2/N2) and oxy-fuel (O2/CO2) conditions
Renu Kumar Rathnam;Liza K. Elliott;Terry F. Wall;Yinghui Liu.
Fuel Processing Technology (2009)
Effect of pyrolysis pressure and heating rate on radiata pine char structure and apparent gasification reactivity
Emre Cetin;Rajender Gupta;Behdad Moghtaderi.
Fuel (2005)
Review of the Recent Chemical Looping Process Developments for Novel Energy and Fuel Applications
Behdad Moghtaderi.
Energy & Fuels (2012)
Application of Chemical Looping Concept for Air Separation at High Temperatures
Behdad Moghtaderi.
Energy & Fuels (2010)
Effect of magnetic field on laminar convective heat transfer of magnetite nanofluids
R. Azizian;R. Azizian;E. Doroodchi;T. McKrell;J. Buongiorno.
International Journal of Heat and Mass Transfer (2014)
Pyrolytic characteristics of blended coal and woody biomass
Behdad Moghtaderi;Chatphol Meesri;Terry F Wall.
Fuel (2004)
Effect of thermal mass on the thermal performance of various Australian residential constructions systems
Katherine Gregory;Behdad Moghtaderi;Heber Sugo;Adrian Page.
Energy and Buildings (2008)
Lack of synergetic effects in the pyrolytic characteristics of woody biomass/coal blends under low and high heating rate regimes
Chatphol Meesri;Behdad Moghtaderi.
Biomass & Bioenergy (2002)
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