Prediction of Higher Heating Values in Bio-Oil from Solvothermal Biomass Conversion and Bio-Oil Upgrading Given Discontinuous Experimental Conditions

Author:

Castro Garcia Abraham1,Ching Phoebe Lim2,So Richard HY3,Cheng Shuo1,Boonyubol Sasipa1,Cross Jeffrey S.1ORCID

Affiliation:

1. Department of Transdisciplinary Science and Engineering, School of Environment and Society, Tokyo Institute of Technology, 2-12-1 S6-10, Ookayama, Meguro-ku, Tokyo 152-8552, Japan

2. Bioengineering Graduate Program, Chemical and Biological Engineering Department, Hong Kong University of Science and Technology, 999077, Hong Kong

3. Department of Industrial Engineering and Decision Analytics, Hong Kong University of Science and Technology, 999077, Hong Kong

Publisher

American Chemical Society (ACS)

Subject

General Chemical Engineering,General Chemistry

Reference82 articles.

1. Naimoli, S.; Ladislaw, S. Decarbonizing Heavy Industry; Csis. October 2020. Available online: https://www.csis.org/analysis/climate-solutions-series-decarbonizing-heavy-industry (accessed on 27 November 2022).

2. Catalytic conversion of lignocellulosic biomass into hydrocarbons: A mini review

3. Environmental, economic, and energetic costs and benefits of biodiesel and ethanol biofuels

4. Maps and data - global ethanol production by country or region. Alternative Fuels Data 370 Center: Maps and Data - Global Ethanol Production by Country or Region. (2021, 371 June). Retrieved January 8, 2022, from https://afdc.energy.gov/data/10331.

5. Investigation of physical and chemical properties of potential edible and non-edible feedstocks for biodiesel production, a comparative analysis

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