929 - 934 |
Impacts of acid gases on mercury oxidation across SCR catalyst Zhuang Y, Laumb J, Liggett R, Holmes M, Pavlish J |
935 - 941 |
Sulfur distribution in coke and sulfur removal during pyrolysis Guo ZC, Fu ZX, Wang SX |
942 - 947 |
Fast pyrolysis of agricultural wastes: Characterization of pyrolysis products Yanik J, Kommayer C, Saglam M, Yuksel M |
948 - 958 |
Numerical simulation of coal gasification at circulating fluidised bed conditions Grabner M, Ogriseck S, Meyer B |
959 - 966 |
Usefulness of Rock-Eval pyrolysis, liquid chromatography, and GC/MS in the characterization of Ypresian Chaker organic matter, central-northern Tunisia Arfaoui A, Montacer M, Mehdi D |
967 - 976 |
DFT study on pathways of partial oxidation of DME under cold plasma conditions Pan YX, Liu CJ |
977 - 981 |
Clean fuel-magnesia bonded coal briquetting Tosun YI |
982 - 987 |
Kinetic modeling of H2O2-enhanced oxidation of flue gas elemental mercury Martinez AI, Deshpande BK |
988 - 995 |
Preparation of Ni/MgxTi1-xO catalysts and investigation on their stability in tri-reforming of methane Jiang HT, Li HQ, Xu HB, Zhang Y |
996 - 1001 |
Methane conversion in thermal diffusion column reactor with carbon rod as pyrogen Gao ZM, Kobayashi M, Wang HX, Onoe K, Yamaguchi T |
1002 - 1008 |
A new approach to deep desulfurization of gasoline by electrochemically catalytic oxidation and extraction Wang WB, Wang SJ, Wang YH, Liu HY, Wang ZX |