ITexLi, 2016. — 417 p. — ISBN: 9535126695, 9535126687.This volume intends to cover recent developments and provide a broad perspective of the key challenges that characterize the field. The target audience for this book includes engineers involved in combustion system design, operational planning and maintenance. Over the past few decades, exciting developments have taken place in the field of combustion technology. Manufacturers and combustion technology researchers will also benefit from the timely and accurate information provided in this work. The volume is organized into five main sections comprising 15 chapters overall: - Coal and Biofuel Combustion - Waste Combustion - Combustion and Biofuels in Reciprocating Engines - Chemical Looping and Catalysis - Fundamental and Emerging Topics in Combustion Technology Contents Preface Combustion of Biomass Fuel and Residues: Emissions Production Perspective A Combustion Process Optimization and Numerical Analysis for the Low Emission Operation of Pulverized Coal-Fired Boiler Bituminous Coal Combustion with New Insights Combustion Characteristics of Waste Tyre Pyrolysis Fuel as Industrial Burner Fuel Municipal Solid Waste Cofiring in Coal Power Plants: Combustion Performance Self-sustaining Smouldering Combustion as a Waste Treatment Process Combustion and Emission Characteristics of Blends: -n-Butanol- Diesel (D2); and Dual Alcohols: n-Butanol-Methanol with Gasoline in Internal Combustion Engines Combustion and Emissions of a Diesel Engine Fueled with Diesel-Biodiesel-Ethanol Blends and Supplemented with Intake CO2 Charge Dilution Low and Medium Calorific Value Gasification Gas Combustion in IC Engines Phenomenological Modeling of Combustion Process in Diesel Engines Based on Stochastic Method Numerical Simulation of Chemical Looping and Calcium Looping Combustion Processes for Carbon Capture Combustion Catalyst: Nano\Fe2O3 and Nano\Thermite Al/ Fe2O3 with Different Shapes Combustion Processes in Interfacial Instabilities Combustion Processes with External Harmonic Excitation using Extended Lindstedt-Poincare Method with Multiple Time Scales Solution Combustion Synthesis: Applications in Oxide Electronics
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