1049 - 1050 |
Adsorbents and catalysts for clean energy and emissions control Lu GQ, Rudolph V |
1051 - 1054 |
VOC removal : Comparison of MCM-41 with hydrophobic zeolites and activated carbon Zhao XS, Ma Q, Lu GQM |
1055 - 1060 |
Adsorption separation of low concentrations of CO2 and NO2 by synthetic zeolites Wang ZM, Arai T, Kumagai M |
1061 - 1070 |
Preparation and evaluation of coal-derived activated carbons for removal of mercury vapor from simulated coal combustion flue gases Hsi HC, Chen SG, Rostam-Abadi M, Rood MJ, Richardson CF, Carey TR, Chang R |
1071 - 1078 |
Correlating N-2 and CH4 adsorption on microporous carbon using a new analytical model Sun J, Chen S, Rood MJ, Rostam-Abadi M |
1079 - 1088 |
Sorption and modeling of mass transfer of toxic chemical vapors in activated-carbon fiber-cloth adsorbers Lordgooei M, Sagen J, Rood MJ, Rostam-Abadiis M |
1089 - 1094 |
Activated carbons prepared from extracted-oil palm fibers for nitric oxide reduction Lua AC, Guo J |
1095 - 1099 |
Reprocessing and reuse of waste tire rubber to solve air-quality related problems Lehmann CMB, Rostam-Abadi M, Rood MJ, Sun J |
1100 - 1107 |
Adsorption characteristics of phenolic compounds onto coal-reject-derived adsorbents Haghseresht F, Lu GQ |
1108 - 1113 |
Metallo-organic chemical vapor deposition (MOCVD) for the development of heterogeneous catalysts Chu HP, Lei LC, Hu XJ, Yue PL |
1114 - 1120 |
Mechanistic study of carbon dioxide reforming with methane over supported nickel catalysts Yan ZF, Ding RG, Song LH, Qian L |
1121 - 1129 |
Impact of catalysis on clean energy in road transportation Gray PG, Frost JC |
1130 - 1134 |
A comparative study of sulfur poisoning and regeneration of precious-metal catalysts Nasri NS, Jones JM, Dupont VA, Williams A |
1135 - 1141 |
Investigation of sulfur retention and the effect of inorganic matter during pyrolysis of south Australian low-rank coals Telfer MA, Zhang DK |
1142 - 1147 |
Atmospheric-pressure temperature-programmed reduction study of high-sulfur coals reduced in a potassium liquid ammonia system Kozlowski M, Wachewska H, Yperman J, Franco DV, Mullens J, Van Poucke LC |
1148 - 1152 |
Catalytic conversion of used oil to hydrocarbon fuels in a fractionating pyrolysis reactor Dandik L, Aksoy HA, Erdem-Senatalar A |
1153 - 1160 |
Estimation of combustion zone thickness during in situ combustion processes Bagci S |
1161 - 1167 |
Catalytic cracking of polyethylene liquefied oil over amorphous aluminosilicate catalysts Isoda T, Nakahara T, Kusakabe K, Morooka S |
1168 - 1173 |
Simulation of interaction of coal associates with solvents using the molecular dynamics calculation Takanohashi T, Iino M, Nakamura K |
1174 - 1180 |
Observation of heavy oil vaporization under rapid heating Nagaishi H, Ikeda K, Kitano K, Chan EW, Gray MR |
1181 - 1190 |
Iron-catalyzed coprocessing of coals and vacuum residues using syngas-water as a hydrogen source Hata K, Wada K, Mitsudo T |
1191 - 1199 |
Nonequilibrium plasma reforming of greenhouse gases to synthesis gas Zhou LM, Xue B, Kogelschatz U, Eliasson B |
1200 - 1211 |
Effects of water and molecular hydrogen on heat treatment of Turkish low-rank coals Artok L, Schobert HH, Nomura M, Erbatur O, Kidena K |
1212 - 1222 |
Relationship of coal characteristics determined by pyrolysis gas chromatography mass spectrometry and nuclear magnetic resonance to liquefaction reactivity and product composition Burgess CE, Schobert HH |
1223 - 1227 |
Estimation of total aromatics and their distribution as mono and global di-plus aromatics in diesel-range products by NMR spectroscopy Bansal V, Kapur GS, Sarpal AS, Kagdiyal V, Jain SK, Srivastava SP, Bhatnagar AK |
1228 - 1234 |
Effect of precipitating some of the more intractable material from a hydrogen donor solvent coal extract solution on its hydroprocessing behavior Martin SC, Snape CE, Cloke M, Belghazi A, Steedman W, McQueen P |
1235 - 1240 |
Thermogravimetric analysis of carbon deposition over Ni/gamma-Al2O3 catalysts in carbon dioxide reforming of methane Wang SB, Lu GQ |
1241 - 1244 |
Liquid-phase oxidation kinetics : Paraffin blends Pickard JM, Jones EG |
1245 - 1255 |
Two-stage catalytic coliquefaction of coal and waste tire Sharma RK, Tian D, Zondlo JW, Dadyburjor DB |
1256 - 1264 |
Potassium-containing coal chars as catalysts for NOx reduction in the presence of oxygen Illan-Gomez MJ, de Lecea CSM, Linares-Solano A, Radovic LR |
1265 - 1271 |
Structural analysis of the asphaltene fraction of an Arabian mixture by a ruthenium-ion-catalyzed oxidation reaction Su Y, Artok L, Murata S, Nomura M |
1272 - 1277 |
Development of a novel chemical-looping combustion : Synthesis of a looping material with a double metal oxide of CoO-NiO Jin H, Okamoto T, Ishida M |
1278 - 1289 |
A reduced kinetic model for NOx reduction by advanced reburning Xu H, Smoot LD, Hill SC |
1290 - 1298 |
Subfractionation and characterization of Mayan asphaltene Miller JT, Fisher RB, Thiyagarajan P, Winans RE, Hunt JE |
1299 - 1304 |
Water adsorption and desorption by goals and chars Monazam ER, Shadle LJ, Evans R, Schroeder K |
1305 - 1312 |
Spontaneous combustion of char stockpiles Monazam ER, Shadle LJ, Shamsi A |
1313 - 1321 |
Measurements of the vapor pressures of coal tars using the nonisothermal Knudsen effusion method Oja V, Suuberg EM |
1322 - 1327 |
Coal-nitrogen release and NOx evolution in air-staged combustion Coda B, Kluger F, Fortsch D, Spliethoff H, Hein KRG, Tognotti L |
1328 - 1334 |
Role of noncovalent bonding in swelling of coal Chen C, Gao JS, Yan YJ |
1335 - 1341 |
Kinetics of coal liquefaction distillation resid conversion Wang SJ, Huang H, Wang KY, Klein MT, Calkins WH |
1342 - 1355 |
Quantitative extraction of nitrogen compounds in oils : Atomic balance and molecular composition Merdrignac I, Behar F, Albrecht P, Briot P, Vandenbroucke M |
1356 - 1362 |
Char-nitrogen functionality and interactions between the nitrogen and iron in the iron-catalyzed conversion process of coal nitrogen to N-2 Ohtsuka Y, Watanabe T, Asami K, Mori H |
1363 - 1368 |
HYSCORE study on coal radicals Ikoma T, Ito O, Tero-Kubota S, Akiyama K |
1369 - 1374 |
Spectroscopic studies of oxidative degradation of base oils Adhvaryu A, Perez JM, Singh ID, Tyagi OS |