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Lignin Decomposition in Hydrothermal Liquefaction Process using Red-Mud Catalyst
Seong-Jae Park, Masud Rana, Dong Shin, Jeong-Hun Park
J Korean Soc Environ Eng. 2019;41(3):132-139.   Published online 2019 March 31    DOI:

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More than ethanol: a techno-economic analysis of a corn stover-ethanol biorefinery integrated with a hydrothermal liquefaction process to convert lignin into biochemicals
Biofuels, Bioproducts and Biorefining. 2018;12(3):497-509   Crossref logo
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96/00171 Fundamental studies on red mud as a catalyst for coal liquefaction. Studies on active components in red mud and possibilities for improvement of its catalytic activities
Fuel and Energy Abstracts. 1996;37(1):11   Crossref logo
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Hydrogenation of a model hydrogen-donor system using activated red mud catalyst
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00/01257 Process of coal liquefaction using iron hydroxide catalyst
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99/03619 Process of coal liquefaction using iron hydroxide catalyst
Fuel and Energy Abstracts. 1999;40(6):384   Crossref logo
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Using a hybrid-like supported catalyst to improve green fuel production through hydrothermal liquefaction of Scenedesmus obliquus microalgae
Bioresource Technology. 2019;277:136-147   Crossref logo
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Lignocellulosic Ethanol Biorefinery: Valorization of Lignin-Rich Stream through Hydrothermal Liquefaction
Energies. 2019;12(4):723   Crossref logo

Hydrothermal Liquefaction of Lignin
Journal of Biomaterials and Nanobiotechnology. 2017;08(01):96-108   Crossref logo
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Hydrothermal liquefaction of aquatic Feedstocks
Direct Thermochemical Liquefaction for Energy Applications. 2018;101-125   Crossref logo
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96/05856 Hydrogen transfer in brown coal liquefaction in BCL process. Influence of catalyst and feed solvent properties on liquefaction performance and hydrogen transfer
Fuel and Energy Abstracts. 1996;37(6):417   Crossref logo
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