JCR Papers 2018
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A data-driven reaction network for the fluid catalytic cracking of waste feeds Processes, 2018; 6, 243 - 257
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A new fountain confinement device for fluidizing fine and ultrafine sands in conical spouted beds Powder Technology, 2018; 328, 38 - 46
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Adsorption of Amido Black 10B from aqueous solution using polyaniline/SiO2 nanocomposite: Experimental investigation and artificial neural network modeling Journal of Colloid and Interface Science, 2018; 510, 246 - 261
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Kinetic model considering catalyst deactivation for the steam reforming of bio-oil over Ni/La2O3-αAl2O3 Chemical Engineering Journal, 2018; 332, 192 - 204
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Kinetic model for the conversion of chloromethane into hydrocarbons over a HZSM-5 zeolite catalyst Industrial & Engineering Chemistry Research, 2018; 57, 908 - 919
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Recent advances in the gasification of waste plastics. A critical overview Renewable and Sustainable Energy Reviews, 2018; 82, 576 - 596
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Oxidative steam reforming of raw bio-oil over supported and bulk Ni catalysts for hydrogen production Catalysts, 2018; 8, 322 - 347
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Kinetic study of the catalytic reforming of biomass pyrolysis volatiles over a commercial Ni/Al2O3 catalyst International Journal of Hydrogen Energy, 2018; 43, 12023 - 12033
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Role of operating conditions in the catalyst deactivation in the in-line steam reforming of volatiles from biomass fast pyrolysis Fuel, 2018; 216, 233 - 244
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Evaluation of thermochemical routes for hydrogen production from biomass: A review Energy Conversion and Management, 2018; 165, 696 - 719
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Kinetic modeling of the direct synthesis of dimethyl ether over a CuO-ZnO-MnO/SAPO-18 catalyst and assessment of the CO2 conversion Fuel Processing Technology, 2018; 181, 233 - 243
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Capability of the direct dimethyl ether synthesis process for the conversion of carbon dioxide Applied Sciences, 2018; 8(5), 677 - 691
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Catalyst configuration for the direct synthesis of dimethyl ether from CO and CO2 hydrogenation on CuO–ZnO–MnO/SAPO-18 catalysts Reaction Kinetics Mechanisms and Catalysis, 2018; 124, 401 - 418
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Coking and sintering progress of a Ni supported catalyst in the steam reforming of biomass pyrolysis volatiles Applied Catalysis B: Environmental, 2018; 233, 289 - 300
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Temperature programmed oxidation coupled with in situ techniques reveal the nature and location of coke deposited on a Ni/La2O3-aAl2O3 catalyst in the steam reforming of bio-oil ChemCatChem, 2018; 10, 2311 - 2321
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Regeneration of NiAl2O4 spinel type catalysts used in the reforming of raw bio-oil Applied Catalysis B: Environmental, 2018; 237, 353 - 365
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Stability of a Rh/CeO2–ZrO2 Catalyst in the Oxidative Steam Reforming of Raw Bio-oil Energy & Fuels, 2018; 32, 3588 - 3598
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In-depth evaluation of a ZrO2 promoted CaO-based CO2 sorbent in fluidized bed reactor tests Chemical Engineering Journal, 2018; 333, 697 - 711
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Steam reforming of raw bio-oil over Ni/La2O3-αAl2O3: Influence of temperature on product yields and catalyst deactivation Fuel, 2018; 2016, 463 - 474
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Biomass to hydrogen-rich gas via steam reforming of raw bio-oil over Ni/La2O3-αAl2O3: Effect of space-time and steam-to-carbon ratio Fuel, 2018; 216, 445 - 455