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- W2368289904 abstract "The viscosity of four aged bio-oil samples was measured experimentally at various shear rates and temperatures using a rotational viscometer. The experimental bio-oils were derived from fast pyrolysis of beech wood at 450, 500, and 550 °C and Miscanthus at 500 °C (in this work, they were named as BW1, BW2, BW3, and MXG) in a bubbling fluidized bed reactor. The viscosity of all bio-oils was kept constant at various shear rates at the same temperature, which indicated that they were Newtonian fluids. The viscosity of bio-oils was strongly dependent upon the temperature, and with the increase of the temperature from 30 to 80 °C, the viscosity of BW1, BW2, BW3, and MXG decreased by 90.7, 93.3, 92.6, and 90.2%, respectively. The Arrhenius viscosity model, which has been commonly used to represent the temperature dependence of the viscosity of many fluids, did not fit the viscosity–temperature experimental data of all bio-oils very well, especially in the low- and high-temperature regions. For comparison, the Williams–Landel–Ferry (WLF) model was also used. The results showed that the WLF model gave a very good description of the viscosity–temperature relationship of each bio-oil with very small residuals and the BW3 bio-oil had the strongest viscosity–temperature dependence." @default.
- W2368289904 created "2016-06-24" @default.
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- W2368289904 date "2016-05-26" @default.
- W2368289904 modified "2023-09-25" @default.
- W2368289904 title "Viscosity of Aged Bio-oils from Fast Pyrolysis of Beech Wood and <i>Miscanthus</i>: Shear Rate and Temperature Dependence" @default.
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- W2368289904 doi "https://doi.org/10.1021/acs.energyfuels.6b00640" @default.
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