Smart Grid and Renewable Energy

Smart Grid and Renewable Energy

ISSN Print: 2151-481X
ISSN Online: 2151-4844
www.scirp.org/journal/sgre
E-mail: sgre@scirp.org
"Separation of Biomass Pyrolysis Oil by Supercritical CO2 Extraction"
written by Jinghua Wang, Hongyou Cui, Shuqin Wei, Shuping Zhuo, Lihong Wang, Zhihe Li, Weiming Yi,
published by Smart Grid and Renewable Energy, Vol.1 No.2, 2010
has been cited by the following article(s):
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[6] Effects of Alkali Metals on Nickel/Alumina Catalyzed Ethanol Dry Reforming
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[7] Biodiesel and Other Value-Added Products from Bio-Oil Obtained from Agrifood Waste
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[8] Supercritical Carbon Dioxide Extraction of Lignocellulosic Bio-Oils: The Potential of Fuel Upgrading and Chemical Recovery
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[9] Progress of the applications of bio-oil
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[10] Supercritical carbon dioxide extraction and fractionation of bio-oil
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[11] Challenges and Opportunities for Bio-oil Refining: A Review
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[12] Extraction and purification of renewable chemicals from hydrothermal liquefaction bio-oil using supercritical carbon dioxide: A techno-economic evaluation
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[13] Modélisation compositionnelle et cinétique des bio-huiles de pyrolyse rapide issues de la biomasse lignocellulosique
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[14] Koksnes pirolīzes kondensātu preparatīva sadalīšana un analīze ar šķidruma hromatogrāfijas metodēm
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[15] The effect of wood composition and supercritical CO2 extraction on charcoal production in ferroalloy industries
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[16] Effect of extraction methods on physicochemical, nutritional, antinutritional, antioxidant and antimicrobial activity of Moringa (Moringa oleifera Lam.) seed kernel oil
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[17] Fractionation of Pyrolysis Liquids with Supercritical Carbon Dioxide
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[18] Production, Prospects and Potential Application of Pyroligneous Acid in Agriculture
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[19] Application of Microbubbles Generated by Fluidic Oscillation in the Upgrading of Bio Fuels
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[20] Lignin for Sustainable Bioproducts and Biofuels
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[21] Analytical Strategies Involved in the Detailed Componential Characterization of Biooil Produced from Lignocellulosic Biomass
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[22] Supercritical carbon dioxide separation of carboxylic acids and phenolics from bio-oil of lignocellulosic origin: Understanding bio-oil compositions, compound …
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[23] Enzyme-based Biomass Catalyzed Reactions in Supercritical CO2
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[24] Supercritical Carbon Dioxide Separation of Carboxylic Acids and Phenolics from Bio-Oil of Lignocellulosic Origin: Understanding Bio-Oil Compositions, Compound Solubilities, and Their Fractionation
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[25] Development of pyrolysis process models for the production of lignin based phenols using Aspen Plus®
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[26] Supercritical carbon dioxide extraction of fast pyrolysis oil from softwood
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[27] Staged thermal fractionation for segregation of lignin and cellulose pyrolysis products: An experimental study of residence time and temperature effects
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[28] Catalytic upgrading of bio oil model compound into polyol ester via green alginate catalyzed esterification reaction
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[29] Analytical Strategies Involved in the Detailed Componential Characterization of Bio-oil Produced from Lignocellulosic Biomass
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[30] Effect of supercritical carbon dioxide conditions on extraction of food phytochemical constituents from Moringa oleifera. Lam seed kernels
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[31] Assesing the joint potential of CO2 enhanced oil recovery and CO2 plume geothermal energy extraction
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[32] Assessing the joint potential for CO2-enhanced oil recovery and CO2-plume geothermal energy production
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[33] 生物油性质及分离纯化的研究进展
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[34] Extraction of phenols from lignin microwave-pyrolysis oil using a switchable hydrophilicity solvent
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[35] Overview of Analytical Methods Used for Chemical Characterization of Pyrolysis Bio-oil
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[36] Extraction of phenolic compounds from crude pyrolysis oil
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[37] Research highlights–Extraction of phenolic compounds from crude pyrolysis oil
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[38] Extraction of value-added chemicals from pyrolysis liquids with supercritical carbon dioxide
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[39] Pyrolysis of wood and bamboo wastes environmentally friendly to produce acetic acid
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[40] 超临界CO2 萃取分离生物油
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