Ash Formation, Deposition, Corrosion and Erosion in Conventional Boilers | p. 1 |
Research Needs of the Power Industry | p. 17 |
Evolutionary Changes in Furnace Combustion Conditions which Affect Ash Deposition in Modern Boilers | p. 27 |
The UK Collaborative Research Programme on Slagging Pulverised Coal-Fired Boilers: Summary of Findings | p. 41 |
Ash Deposit Properties and Radiative Transfer in a Coal Fired Plant: Current Understanding and New Developments | p. 67 |
Rates and Mechanisms of Strength Development in Low-Temperature Ash Deposits | p. 83 |
Deposit Formation during the Co-Combustion of Coal-Biomass Blend | p. 97 |
Quantification of Deposit Formation Rates as Functions of Operating Conditions and Fraction of Biomass Fuel Used in a Converted PC Boiler (100 MW) | p. 117 |
In Situ Measurements of Boiler Ash Deposit Emissivity and Temperature in a Pilot-Scale Combustion Facility | p. 129 |
Erosion Oxidation of Carbon Steel and Deposition of Particles on a Tube during Combustion of Coal Based Fuels in an Industrial Boiler | p. 141 |
Laboratory Measurement of Alkali Metal Containing Vapors Released during Biomass Combustion | p. 161 |
An Improved Ash Fusion Test | p. 187 |
An Assessment of Coal Ash Slagging Propensity Using an Entrained Flow Reactor | p. 201 |
Mechanisms of Ash Fouling during Low Rank Coal Combustion | p. 223 |
Correlating the Slagging of a Utility Boiler with Coal Characteristics | p. 237 |
Excluded/Included Mineral Matter and Its Size Distribution Relative Significance on Slagging and Fouling Characteristics | p. 245 |
Studies on Ash Species Release during the Pyrolysis of Solid Fuels with a Heated Grid Reactor | p. 265 |
Ion Oxidation State and Its Effect on Ash Particle Stickness | p. 281 |
Investigation of Mechanisms for the Formation of Ash Deposits for Two Powder River Basin Coals | p. 293 |
Characterization of Ash Deposit Structure from Planar Sections: Result and Challenges | |
Danish Collaborative Project on Mineral Transformations and Ash Deposition in PF-Fired Boilers and Related Research Projects | p. 325 |
Emittance of Layers of Uniform Ash-like Slag Particles: Spectral Nature, and Effects of Particle Size, Composition and Heating | p. 335 |
Agglomeration and Defluidization in FBC of Biomass Fuels: Mechanisms and Measures for Prevention | p. 353 |
Utilization of Estonian Oil Shale at Power Plants | p. 367 |
Characterization of Biomass Ashes | p. 382 |
The Safety and Economics of High Ash Anthracite Fired Mixing with Petroleum-Coke in Pulverized Coal Fired Furnace | p. 399 |
Alkali Salt Ash Formation during Black Liquor Combustion at Kraft Recovery Boilers | p. 409 |
Effect of Environment Atmosphere on the Sintering of Thai Lignite Fly Ashes | p. 425 |
Ash Transformations in the Real Scale Pulverized Coal Combustion of South African and Colombian Coals | p. 437 |
Modeling of Ash Deposition in the Convective Pass of a Coal Fired Boiler | p. 451 |
The Structure of Submicron Ash from Combustion of Pulverized South African and Colombian Coals | p. 471 |
The Effect of Operation Conditions in Slagging | p. 485 |
Neural Network Predictions of Slagging and Fouling in Pulverized Coal Fired Utility Boilers | p. 495 |
Slagging and Fouling Propensity: Full Scale Tests at Two Power Stations in Western Denmark | p. 513 |
Investigation of Some Slagging Problems at the Rigs | p. 529 |
Coal Ash Fusion Temperatures: New Characterisation Techniques and Associations with Phase Equilibria | p. 541 |
Slagging Prediction when Using the Chemical Composition of Fly Ash Individual Particles and the Slagging Probability Model | p. 557 |
Slagging: Problem Definition | p. 567 |
Modelling Fly Ash Generation for UK Power Station Coals | p. 579 |
Modelling Ash Deposition during the Combustion of Low Grade Fuels | p. 591 |
Development of Fireside Performance Indices for Coal Fired Utility Boilers | p. 617 |
Prediction of Ash Deposition in Pulverised Coal Combustion Systems | p. 637 |
Index | p. 665 |
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