1 - 7 |
X-ray photoelectron spectroscopy study of oxidized coals with different sulphur content Grzybek T, Pietrzak R, Wachowska H |
9 - 15 |
Reactivity and structural modification of coals in HNO3-Ac2O system Tamarkina YV, Shendrik TG, Krzton A, Kucherenko VA |
17 - 23 |
Microbial degradation of low rank coals Machnikowska H, Pawelec K, Podgorska A |
25 - 32 |
Towards an understanding of the coal structure: a review Marzec A |
33 - 43 |
Coal structure studied by means of molecular acoustics methods Krzesinska M |
45 - 52 |
Thermochemical and geochemical characteristics of sulphur coals Bechtel A, Butuzova L, Turchanina O, Gratzer R |
53 - 60 |
Molecular simulation of relaxation behaviors of coal-aggregated structures Takanohashi T, Yoshida T, Kawashima H |
61 - 66 |
The influence of reduction and reductive alkylation on thermal properties of coals Kozlowski M |
67 - 73 |
Effects of the oxidation pretreatment with hydrogen peroxide on the hydrogenolysis reactivity of coal liquefaction residue Sugano M, Ikemizu R, Mashimo K |
75 - 87 |
Production of special activated carbon from lignite for environmental purposes Skodras G, Orfanoudaki T, Kakaras E, Sakellaropoulos GP |
89 - 94 |
Emission of oxygen, sulphur and nitrogen containing heterocyclic polyaromatic compounds from lignite combustion Stefanova M, Marinov SP, Mastral AM, Callen MS, Garcia T |
95 - 102 |
The effect of dolomite addition on sulphur, chlorine and hydrocarbons distribution in a fluid-bed mild gasification of coal Sciazko M, Kubica K |
103 - 109 |
Influence of char structure on reactivity and nitric oxide emissions Arenillas A, Rubiera F, Parra JB, Pis JJ |
111 - 117 |
Modification of combustion behaviour and NO emissions by coal blending Rubiera F, Arenillas A, Arias B, Pis JJ |
119 - 124 |
Characteristics and hydrogenating properties of active carbon supported beta-MO2C Monteverdi S, Bettahar MM, Begin D, Mareche F |
125 - 130 |
Formation of CO precursors during char gasification with O-2, CO2 and H2O Montoya A, Mondragon F, Truong TN |
131 - 136 |
Effects of pressure on the rate of hydrogen transfer from tetralin to different rank coals Pajak J, Socha L |
137 - 143 |
Transformation behavior of trace elements during coal pyrolysis Guo RX, Yang JL, Liu DY, Liu ZY |
145 - 150 |
Thermo destruction of brown coals of different genetic types Butuzova L, Isaeva L, Turchanina O, Krzton A |
151 - 158 |
Mineral matter effects in lignite gasification Skodras G, Sakellaropoulos GP |
159 - 166 |
Thermogravimetric studies of the behavior of lignite-biomass blends during devolatilization Kastanaki E, Vamvuka D, Grammelis P, Kakaras E |
167 - 172 |
Characterization of sulfur compounds in supercritical coal extracts by gas chromatography-mass spectrometry Gryglewicz G, Rutkowski P, Yperman J |
173 - 180 |
The study of textural and structural transformations of carbonized anthracites Pusz S, Duber S, Kwiecinska BK |
181 - 189 |
Electrical capacitance of fibrous carbon composites in supercapacitors Babel K, Jurewicz K |
191 - 198 |
Ammoxidation of brown coals for supercapacitors Jurewicz K, Babel K, Ziolkowski A, Wachowska H, Kozlowski M |
199 - 205 |
Relation between texture and reactivity in metallurgical cokes obtained from coal using petroleum coke as additive Pis JJ, Menendez JA, Parra JB, Alvarez R |
207 - 212 |
Mesophase from a coal tar pitch: a Raman spectroscopy study Montes-Moran MA, Crespo JL, Young RJ, Garcia R, Moinelo SR |
213 - 219 |
Nanotubular materials as electrodes for supercapacitors Frackowiak E, Jurewicz K, Szostak K, Delpeux S, Beguin F |
221 - 227 |
Microporosity and optical properties of some activated chars Duber S, Rouzaud JN, Clinard C, Pusz S |
229 - 235 |
Quantitative high-resolution transmission electron microscopy: a promising tool for carbon materials characterization Rouzaud JN, Clinard C |
237 - 244 |
Beneficial effects of phosphoric acid as an additive in the preparation of activated carbon fibers from Nomex aramid fibers by physical activation Suarez-Garcia F, Martinez-Alonso A, Tascon JMD |
245 - 253 |
Planar chromatography for the hydrocarbon group type analysis of petroleum middle distillates and coal-derived products Matt M, Galvez E, Cebolla V, Membrado L, Vela J, Gruber R |
255 - 259 |
Nitrogen complexes formation during NO-C reaction at low temperature in presence of O-2 and H2O Garcia P, Coloma F, de Lecea CSM, Mondragon F |
261 - 267 |
Effect of support activation on the kinetics of indole hydrodenitrogenation over mesoporous carbon black composites-supported molybdenum carbide Sayag C, Suppan S, Trawczynski J, Djega-Mariadassou G |
269 - 274 |
The cooccurrence of inorganic and carbonaceous matter in fly ash samples from stoker boilers Misz M, Smolka-Danielowska D |
275 - 283 |
Temperature-variable dynamic viscoelastic measurements for coal blends of coking coal with slightly coking coal Yoshida T, Takanohashi T, Iino M, Katoh K |
285 - 291 |
Study of the mechanism of changes in electrical resistance when heating caking and noncaking coals Zubkova V |
293 - 300 |
Nanometer structure of carbon fibers studied by different scanning probe microscopy techniques: a comparative investigation Paredes ZI, Martinez-Alonso A, Tascon JMD |
301 - 307 |
NOx reduction by potassium-containing coal pellets. Discussing lifetime test profiles Bueno-Lopez A, Garcia-Garcia A, Linares-Solano A |
309 - 315 |
Characterization of liquid products from pyrolysis of subbituminous coals Ekinci E, Yardim F, Razvigorova M, Minkova V, Goranova M, Petrov N, Budinova T |
317 - 324 |
Surface acidity of the activated CBC Trawczynski J, Suppan S, Sayag C, Djega-Mariadassou G |
325 - 330 |
Can highly activated carbons be prepared with a homogeneous micropore size distribution? Lozano-Castello D, Cazorla-Amoros D, Linares-Solano A |
331 - 336 |
Usefulness of chemically activated anthracite for the abatement of VOC at low concentrations Lillo-Rodenas MA, Carratala-Abril J, Cazorla-Amoros D, Linares-Solano A |
337 - 343 |
Effect of texture and surface chemistry on adsorptive capacities of activated carbons for phenolic compounds removal Ania CO, Parra JB, Pis JJ |
345 - 351 |
Quantitative structure-activity relationships for the prediction of VOCs adsorption and desorption energies onto activated carbon Pre P, Delage F, Faur-Brasquet C, Le Cloirec P |
353 - 358 |
Retention of mercury in activated carbons in coal combustion and gasification flue gases Lopez-Anton MA, Tascon JMD, Martinez-Tarazona MR |
359 - 364 |
Adsorption of polar probe molecules on plasma-oxidised high-strength carbon fibres Montes-Moran MA, Martinez-Alonso A, Tascon JMD |
365 - 372 |
Influence of sorbent characteristics on the adsorption of PAC II. Adsorption of PAH with different numbers of rings Mastral AM, Garcia T, Callen MS, Murillo R, Lopez JM, Navarro MV |
373 - 379 |
Sorbent characteristics influence on the adsorption of PAC: I. PAH adsorption with the same number of rings Mastral AM, Garcia T, Callen MS, Murillo R, Navarro MV, Lopez JM |
381 - 387 |
Scanning electron microscopy of activated carbons prepared from commercial acrylic textile fibres Carrott PJM, Nabais JMV, Carrott MMLR, Pajares JA |
389 - 394 |
Carbon films as a model material in catalytic NH3/O-2 reaction - in situ FTIR study Zawadzki J, Wisniewski M |
395 - 400 |
Reaction of CO with carbon and carbon-supported catalysts Zawadzki J, Skowronska K |
401 - 407 |
Characterization of porous texture in composite adsorbents based on exfoliated graphite and polyfurfuryl alcohol Suarez-Garcia F, Martinez-Alonso A, Tascon JMD, Ruffine L, Furdin G, Mareche JF, Celzard A |
409 - 414 |
Water vapour adsorption on activated carbons: comparison and modelling of the isotherms in static and dynamic flow conditions Vagner C, Finqueneisel G, Zimny T, Weber JV |
415 - 421 |
Electrochemical storage of hydrogen in activated carbons Jurewicz K, Frackowiak E, Beguin F |
423 - 429 |
The competitive sorption of CO2 and CH4 with regard to the release of methane from coal Ceglarska-Stefanska G, Zarebska K |
431 - 436 |
The utilization of waste ion exchange resin in environmental protection Bratek W, Bratek K, Kulazynski M |
437 - 443 |
Removal of mercury ion from aqueous solution by activated carbons obtained from biomass and coals Ekinci E, Budinova T, Yardim F, Petrov N, Razvigorova M, Minkova V |
445 - 451 |
Activated carbon fibre monoliths Vilaplana-Ortego E, Alcaniz-Monge J, Cazorla-Amoros D, Linares-Solano A |
453 - 458 |
Kinetics of nitric oxide desorption from carbonaceous surfaces Montoya A, Mondragon F, Truong TN |
459 - 466 |
Measurement and modelling of the development of pore size distribution of wood during pyrolysis Klose W, Schinkel A |
467 - 473 |
Transport in porous graphite: gas permeation and ion diffusion experiments Celzard A, Mareche JF, Perrin A |