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- W2510173283 abstract "The integration utilization of fermentation residues from cellulosic bio-ethanol has attracted a great deal of attention to balance the total cost of bio-ethanol production while simultaneously dealing with bio-ethanol wastewater. A process of hydrothermal liquefaction (HTL) of intact materials from cellulosic bio-ethanol in a batch reactor was proposed. The effects of the reaction temperature and time on the liquefaction characteristics were examined. The optimum condition for liquefaction fermentation residues was 370 °C (21.25 MPa) and 30 min with a bio-oil yield of 40.79 wt%. GC-MS results indicated that the major chemical species in the bio-oil were phenols, ketones, long-chain hydrocarbons and fatty acids. Supercritical conditions (375 °C, 23.50 MPa) was favored for the low-molecular-weight species formation compared to subcritical conditions (370 °C, 21.25 MPa), as some long-chain species decreased. This work thus can provide a novel idea for bio-oil production from HTL of cellulosic bio-ethanol fermentation residues." @default.
- W2510173283 created "2016-09-16" @default.
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- W2510173283 date "2016-11-01" @default.
- W2510173283 modified "2023-09-24" @default.
- W2510173283 title "Characteristics of the products of hydrothermal liquefaction combined with cellulosic bio-ethanol process" @default.
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- W2510173283 doi "https://doi.org/10.1016/j.energy.2016.08.033" @default.
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