1 |
Formic acid assisted liquefaction of lignin in water and ethanol, investigated for a 0.025 and a 5 L batch reactor: Comparison of yields and compositions of the products Ghoreishi S, Barth T, Derribsa H Biomass & Bioenergy, 124, 1, 2019 |
2 |
Solvent and catalyst effect in the formic acid aided lignin-to-liquids Oregui-Bengoechea M, Gandarias I, Arias PL, Barth T Bioresource Technology, 270, 529, 2018 |
3 |
Thermocatalytic conversion of lignin in an ethanol/formic acid medium with NiMo catalysts: Role of the metal and acid sites Oregui-Bengoechea M, Gandarias I, Miletic N, Simonsen SF, Kronstad A, Arias PL, Barth T Applied Catalysis B: Environmental, 217, 353, 2017 |
4 |
Organosolv extraction of softwood combined with lignin-to-liquid-solvolysis as a semi-continuous percolation reactor Lohre C, Kleinert M, Barth T Biomass & Bioenergy, 99, 147, 2017 |
5 |
Production of monomeric phenols by formic acid assisted hydrous liquefaction of lignin Holmelid B, Barth T, Brusletto R, Kleinert M Biomass & Bioenergy, 105, 298, 2017 |
6 |
Analysis of the effect of temperature and reaction time on yields, compositions and oil quality in catalytic and non-catalytic lignin solvolysis in a formic acid/water media using experimental design Bengoechea MO, Miletic N, Vogt MH, Arias PL, Barth T Bioresource Technology, 234, 86, 2017 |
7 |
Selectivity-Enhancing Effect of a SCILL Catalyst in Butadiene Hydrogenation Barth T, Korth W, Jess A Chemical Engineering & Technology, 40(2), 395, 2017 |
8 |
Hydrate Formation in Water-in-Crude Oil Emulsions Studied by Broad-Band Permittivity Measurements Haukalid K, Folgero K, Barth T, Fjermestad SL Energy & Fuels, 31(4), 3793, 2017 |
9 |
Comparison of partial least squares calibration models of viscosity, acid number and asphaltene content in petroleum, based on GC and IR data Tomren AL, Barth T Fuel, 120, 8, 2014 |
10 |
Single particle resuspension experiments in turbulent channel flows Barth T, Preuss J, Muller G, Hampel U Journal of Aerosol Science, 71, 40, 2014 |