1 - 5 |
An index of fluidity-temperature area for evaluating cohesiveness of coking coal by Gieseler fluidity characterization Yang GZ, Shi T, Zhang QF, Cao YP, Zhang WJ, Wu XC, Li J, Yang JH |
6 - 15 |
Selective ring opening of decalin on Rh-Pd/SiO2-Al2O3 bifunctional systems: Catalytic performance and deactivation D'Ippolito SA, Pirault-Roy L, Especel C, Epron F, Pieck CL |
16 - 29 |
A novel catalyst for higher alcohol synthesis from syngas: Co-Zn supported on Mn-Al oxide Zhao L, Mu XL, Yu MM, Fang KG |
30 - 38 |
Study on the effect of nanoparticles on the bulk and flow properties of granular systems Zheng YN, Lu HF, Guo XL, Gong X |
39 - 55 |
Lipomyces starkeyi: Its current status as a potential oil producer Sutanto S, Zullaikah S, Phuong LTN, Ismadji S, Ju YH |
56 - 65 |
Re-additization of commercial biodiesel blends during long-term storage Christensen ED, Alleman T, McCormick RL |
66 - 74 |
Kinetic modeling of deep hydrodesulfurization of dibenzothiophenes on NiMo/alumina catalysts modified by phosphorus de Mello MD, Braggio FD, Magalhaes BD, Zotin JL, da Silva MAP |
75 - 80 |
The effect of metals and metal oxides on biodiesel oxidative stability from promotion to inhibition Knothe G, Steidley KR |
81 - 88 |
Deep catalytic oxidative desulfurization of fuels by novel Lewis acidic ionic liquids Wang JY, Zhang LH, Sun YL, Jiang B, Chen Y, Gao X, Yang HW |
89 - 100 |
Enhancement of the catalytic performance of silica nanosprings (NS)-supported iron catalyst with copper, molybdenum, cobalt and ruthenium promoters for Fischer-Tropsch synthesis Alayat A, Echeverria E, Mcllroy DN, McDonald AG |
101 - 108 |
A particle-size regulated approach to producing high strength gasification-coke by blending a larger proportion of long flame coal Yang ZR, Meng QY, Huang JJ, Wang ZQ, Li CY, Fang YT |
109 - 118 |
Impact of oxidizing honeycomb catalysts integrated in firewood stoves on emissions under real-life operating conditions Reichert G, Schmidl C, Haslinger W, Stressler H, Sturmlechner R, Schwabl M, Wohler M, Hochenauer C |
119 - 128 |
In-situ catalytic upgrading of coal pyrolysis tar coupled with CO2 reforming of methane over Ni-based catalysts Wang MY, Jin LJ, Li Y, Lv JN, Wei BY, Hu HQ |
129 - 139 |
Co-pelletization of microalgae Chlorella vulgaris and pine sawdust to produce solid fuels Hosseinizand H, Sokhansanj S, Lim CJ |
140 - 151 |
Behavior of trace elements and mineral transformations in the super-high organic sulfur Ganhe coal during gasification Wang YF, Tang YG, Liu SQ, Wang YG, Finkelman RB, Wang BL, Guo X |
152 - 158 |
The impact of hydrothermal carbonisation on the char reactivity of biomass Stirling RJ, Snape CE, Meredith W |
159 - 169 |
Sorbitol transformation into biofuels over bimetallic platinum based catalysts supported on SiO2-Al2O3 - Effect of the nature of the second metal Messou D, Vivier L, Especel C |
170 - 178 |
Effect of organic nitrogen compounds on deep hydrodesulfurization of middle distillate Rana MS, Al-Barood A, Brouresli R, Al-Hendi AW, Mustafa N |
179 - 193 |
Experimental study and chemical reactor network modeling of the high heating rate devolatilization and oxidation of pulverized bituminous coals under air, oxygen-enriched combustion (OEC) and oxy-fuel combustion (OFC) Menage D, Lemaire R, Seers P |
194 - 199 |
Heterocyclic sulfur removal of coal based on potassium tert-butoxide and hydrosilane system Tang LF, Chen SJ, Wang SW, Tao XX, He H, Zheng L, Ma CY, Zhao YD |
200 - 209 |
The effects of water vapor and coal ash on the carbonation behavior of CaO-sorbent supported by gamma-Al2O3 for CO2 capture Chen LY, Qian N |
210 - 218 |
CO2 sorbents derived from capsule-connected Ca-Al hydrotalcite-like via low-saturated coprecipitation Kou XC, Li C, Zhao YJ, Wang SP, Ma XB |
219 - 227 |
Effect of rheological properties of mesophase pitch and coal mixtures on pore development in activated carbon discs with high compressive strength Gao S, Villacorta BS, Ge L, Steel K, Rufford TE, Zhu ZH |
228 - 236 |
Effects of temperature and low-concentration oxygen on pine wood sawdust briquettes pyrolysis: Gas yields and biochar briquettes physical properties Liu ZW, Zhang FX, Yan SJ, Tian L, Wang HL, Liu HL, Wang H, Hu JH |
237 - 245 |
A coupled electromagnetic irradiation, heat and mass transfer model for microwave heating and its numerical simulation on coal Huang JX, Xu G, Hu GZ, Kizil M, Chen ZW |
246 - 254 |
Silica-doped TiO2 as support of gallium oxide for dehydrogenation of ethane with CO2 Lei TQ, Cheng YH, Miao CX, Hua WM, Yue YH, Gao Z |
255 - 265 |
The impact of dry torrefaction on the fast pyrolysis behavior of ash wood and commercial Dutch mixed wood in a pyroprobe Tsalidis GA, Tsekos C, Anastasakis K, de Jong W |
266 - 274 |
Highly stable and coking resistant Ce promoted Ni/SiC catalyst towards high temperature CO methanation Liu SS, Jin YY, Han YH, Zhao JX, Ren J |
275 - 282 |
Co-pyrolysis of oily sludge and rice husk for improving pyrolysis oil quality Lin BC, Huang QX, Chi Y |
283 - 298 |
The effect of disintegrated iron-ore pellet dust on deposit formation in a pilot-scale pulverized coal combustion furnace. Part I: Characterization of process gas particles and deposits Sefidari H, Lindblom B, Wiinikka H, Nordin LO, Mouzon J, Bhuiyan IU, Ohman M |
299 - 308 |
Effect of solvents on the microstructure aggregation of a heavy crude oil Minale M, Merola MC, Carotenuto C |
309 - 327 |
Prediction of crude oil blends compatibility and blend optimization for increasing heavy oil processing Kumar R, Voolapalli RK, Upadhyayula S |
328 - 335 |
Pitch-derived N-doped porous carbon nanosheets with expanded interlayer distance as high-performance sodium-ion battery anodes Hao MY, Xiao N, Wang YW, Li HQ, Zhou Y, Liu C, Qiu JS |
336 - 344 |
Interesterification of rapeseed oil catalysed by a low surface area tin (II) oxide heterogeneous catalyst Interrante L, Bensaid S, Galletti C, Pirone R, Schiavo B, Scialdone O, Galia A |
345 - 352 |
Catalytic hydroconversion of aryl ethers over a nickel catalyst supported on acid-modified zeolite 5A Yang Z, Wei XY, Zhang M, Zong ZM |
353 - 357 |
Butanol synthesis from ethanol over CuMgAl mixed oxides modified with palladium (II) and indium (III) Perrone OM, Lobefaro F, Aresta M, Nocito F, Boscolo M, Dibenedetto A |