1 - 1 |
Special Issue: Gasification and its Applications Preface Hofbauer H, Xu GW |
2 - 8 |
Characterization of coal char gasification with steam in a micro-fluidized bed reaction analyzer Wang F, Zeng X, Wang YG, Yu J, Xu GW |
9 - 15 |
A study of char gasification in H2O and CO2 mixtures: Role of inherent minerals in the coal Wang YL, Zhu SH, Gao MQ, Yang ZR, Yan LJ, Bai YH, Li F |
16 - 30 |
Conversion of high-ash coal under steam and CO2 gasification conditions Aranda G, Grootjes AJ, van der Meijden CM, van der Drift A, Gupta DF, Sonde RR, Poojari S, Mitra CB |
31 - 37 |
Increasing tar and hydrocarbons conversion by catalysis in bubbling fluidized bed gasifiers Miccio F, Picarelli A, Ruoppolo G |
38 - 43 |
Attrition during steam gasification of lignite char in a fluidized bed reactor Scala F |
44 - 53 |
Lab-scale investigations on catalyst recovery of gasified residue collected from the potassium-catalyzed steam gasification process Yuan XZ, Zhao L, Namkung H, Kang TJ, Kim HT |
54 - 60 |
Effect of pyrolysis temperature on char structure and chemical speciation of alkali and alkaline earth metallic species in biochar Zhao YJ, Feng DD, Zhang Y, Huang YD, Sun SZ |
61 - 67 |
Steam co-gasification of biomass and coal in decoupled reactors Tursun Y, Xu SP, Wang C, Xiao YH, Wang GY |
68 - 73 |
The Heatpipe Reformer with optimized combustor design for enhanced cold gas efficiency Leimert JM, Treiber P, Karl J |
74 - 81 |
Steam/oxygen biomass gasification at pilot scale in an internally circulating bubbling fluidized bed reactor Barisano D, Canneto G, Nanna F, Alvino E, Pinto G, Villone A, Carnevale M, Valerio V, Battafarano A, Braccio G |
82 - 92 |
Effect of mineral components on sintering of ash particles at low temperature fouling conditions Namkung H, Xu LH, Kim CH, Yuan XZ, Kang TJ, Kim HT |
93 - 98 |
Performance indicators for air and air-steam auto-thermal updraft gasification of biomass in packed bed reactor Kihedu JH, Yoshiie R, Naruse I |
99 - 105 |
Does distance among biomass particles affect soot formation in an entrained flow gasification process? Goktepe B, Umeki K, Gebart R |
106 - 116 |
Multiphase flow patterns in entrained-flow slagging gasifiers: Physical modelling of particle-wall impact at near-ambient conditions Troiano M, Solimene R, Salatino P, Montagnaro F |
117 - 122 |
Upgrading of low rank coal by hydrothermal treatment: Coal tar yield during pyrolysis Zhang DX, Liu P, Lu XL, Wang LL, Pan TY |
123 - 129 |
One pot direct catalytic conversion of cellulose to C-3 and C-4 hydrocarbons using Pt/H-USY zeolite catalyst at low temperature Ogo S, Nishio T, Sekine H, Onda A, Sekine Y |
130 - 137 |
Syngas methanation in fluidized bed for an advanced two-stage process of SNG production Liu J, Cui DM, Yao CB, Yu J, Su FB, Xu GW |
138 - 147 |
Analysis of optimization potential in commercial biomass gasification plants using process simulation Wilk V, Hofbauer H |
148 - 158 |
Steam-oxygen gasification of forest residues and bark followed by hot gas filtration and catalytic reforming of tars: Results of an extended time test Kurkela E, Kurkela M, Hiltunen I |
159 - 166 |
Kinetic modeling of a combined tar removal and methanation reactor for biogenous synthesis gas at medium temperature conditions Fraubaum M, Walter H, Zuber C |
167 - 176 |
Developing a simulation model for a mixed alcohol synthesis reactor and validation of experimental data in IPSEpro Weber G, Di Giuliano A, Rauch R, Hofbauer H |
177 - 177 |
Fuel quality impacts on power production - The first 50 years Preface Harding S |
178 - 184 |
Miscanthus ash transformation and interaction with bed materials at high temperature Kaknics J, Michel R, Poirier J |
185 - 195 |
Boiler performance and cost analysis of fuels and fuel blends using the Fuel Quality Advisor Harding NS, Cooper SA |
196 - 201 |
Fuel design in co-combustion of demolition wood chips and municipal sewage sludge Skoglund N, Bafver L, Fahlstrom J, Holmen E, Renstrom C |
202 - 209 |
Investigation of corrosion and fouling in syngas cooler tubes Wang B, Kurian V, Mahapatra N, Martens F, Gupta R |
210 - 215 |
A temperature-history based model for the sticking probability of impacting pulverized coal ash particles Brink A, Lindberg D, Hupa M, de Tejada ME, Paneru M, Maier J, Scheffknecht G, Pranzitelli A, Pourkashanian M |
216 - 224 |
Development of thermal spraying materials through several corrosion tests for heat exchanger tube of incinerators Chen J, Ninomiya Y, Naganuma H, Sasaki Y, Noguchi M, Cho H, Ueki Y, Yoshiie R, Naruse I |
225 - 234 |
Investigation of deposit formation and its characterization for a pulverized bituminous coal power plant Babat S, Sporl R, Maier J, Scheffknecht G |
235 - 242 |
Selecting and implementing a fuel blend for scrubbed units at a pulverized coal power plant Tillman DA, Dobrzanski A, Wong J |
243 - 248 |
Main drivers for integrating zinc recovery from fly ashes into the Viennese waste incineration cluster Purgar A, Winter F, Blasenbauer D, Hartmann S, Fellner J, Lederer J, Rechberger H |
249 - 257 |
Ash formation and deposition during oxy-coal combustion in a 100 kW laboratory combustor with various flue gas recycle options Zhan ZH, Fry A, Yu DX, Xu MH, Wendt JOL |
258 - 265 |
The influence of air and oxy-fuel combustion on fly ash and deposits Sporl R, Paneru M, Babat S, Stein-Brzozowska G, Maier J, Scheffknecht G |
266 - 275 |
Role of potassium in deposit formation during wood pellets combustion Paneru M, Babat S, Maier J, Scheffknecht G |
276 - 284 |
Down-time corrosion in boilers Jones F, Ryde D, Hjornhede A |
285 - 298 |
Effect of temperature gradient on composition and morphology of synthetic chlorine-containing biomass boiler deposits Lindberg D, Niemi J, Engblom M, Yrjas P, Lauren T, Hupa M |