Hydrothermal refining of biomass — an overview and future perspectives
暂无分享,去创建一个
Johannes Jermakka | Anja Oasmaa | Hanne Wikberg | Vidar Grönberg | Katariina Kemppainen | Marjatta Kleen | Christiane Laine | Ville Paasikallio | Anja Oasmaa | K. Kemppainen | A. Oasmaa | M. Kleen | H. Wikberg | J. Jermakka | C. Laine | V. Grönberg | Ville Paasikallio
[1] B. Singh,et al. Microbial degradation of tannins – A current perspective , 2004, Biodegradation.
[2] Thallada Bhaskar,et al. Hydrothermal upgrading of biomass: effect of K2CO3 concentration and biomass/water ratio on products distribution. , 2006, Bioresource technology.
[3] Anna Ebringerová,et al. Quaternized xylans: synthesis and structural characterization , 1994 .
[4] David E. Mainwaring,et al. Influence of Viscosity Modifying Agents on Pinus radiata Extract , 1996 .
[5] S. Kent Hoekman,et al. Hydrothermal Carbonization (HTC) of Lignocellulosic Biomass , 2011 .
[6] E. Berl,et al. Über die Entstehung der Kohlen , 1930 .
[7] Kurt A Spokas,et al. Phosphorus reclamation through hydrothermal carbonization of animal manures. , 2014, Environmental science & technology.
[8] Andre Peters,et al. Impact of biochar and hydrochar addition on water retention and water repellency of sandy soil , 2013 .
[9] R. Sparling,et al. Biomass pretreatment: fundamentals toward application. , 2011, Biotechnology advances.
[10] Michael J. Sadowsky,et al. Hydrothermal carbonization of distiller's grains , 2011 .
[11] Markus Antonietti,et al. Structural Characterization of Hydrothermal Carbon Spheres by Advanced Solid-State MAS C-13 NMR Investigations , 2009 .
[12] Tomoaki Minowa,et al. Thermochemical liquefaction of indonesian biomass residues , 1998 .
[13] F. Goudnaan,et al. Thermal Efficiency of the HTU® Process for Biomass Liquefaction , 2008 .
[14] Motonobu Goto,et al. Decomposition of a lignin model compound under hydrothermal conditions , 2007 .
[15] Markus Antonietti,et al. Carboxylate-Rich Carbonaceous Materials via One-Step Hydrothermal Carbonization of Glucose in the Presence of Acrylic Acid , 2009 .
[16] Amanda Lea-Langton,et al. Hydrothermal processing of microalgae using alkali and organic acids , 2010 .
[17] Herbert Sixta,et al. Effect of hydrothermal treatment intensity on the formation of degradation products from birchwood , 2013 .
[18] T. Reiner,et al. Towards quantitative catalytic lignin depolymerization. , 2011, Chemistry.
[19] J. Lehmann,et al. Biochar for environmental management : science, technology and implementation , 2015 .
[20] John W. Scott,et al. Chemical properties of biocrude oil from the hydrothermal liquefaction of Spirulina algae, swine manure, and digested anaerobic sludge. , 2011, Bioresource technology.
[21] SeChin Chang,et al. Immobilization of heavy metal ions (CuII, CdII, NiII, and PbII) by broiler litter-derived biochars in water and soil. , 2010, Journal of agricultural and food chemistry.
[22] Susanne B. Jones,et al. Hydrothermal liquefaction of biomass: developments from batch to continuous process. , 2015, Bioresource technology.
[23] Andrew J. Schmidt,et al. Process development for hydrothermal liquefaction of algae feedstocks in a continuous-flow reactor , 2013 .
[24] A. B. Fuertes,et al. The production of carbon materials by hydrothermal carbonization of cellulose , 2009 .
[25] Matti Siika-aho,et al. Hot water extraction and steam explosion as pretreatments for ethanol production from spruce bark. , 2012, Bioresource technology.
[26] Phillip E. Savage,et al. Hydrothermal Liquefaction and Gasification of Nannochloropsis sp. , 2010 .
[27] Kunio Arai,et al. Reaction chemistry and phase behavior of lignin in high-temperature and supercritical water. , 2008, Bioresource technology.
[28] Xiaofen Li,et al. Progress of electrochemical capacitor electrode materials: A review , 2009 .
[29] Herbert Sixta,et al. Handbook of Pulp , 2006 .
[30] Chao He,et al. Conversion of sewage sludge to clean solid fuel using hydrothermal carbonization: Hydrochar fuel characteristics and combustion behavior , 2013 .
[31] Fu-Shen Zhang,et al. Characterization and application of chars produced from pinewood pyrolysis and hydrothermal treatment , 2010 .
[32] A. Funke,et al. Hydrothermal carbonization of biomass: A summary and discussion of chemical mechanisms for process engineering , 2010 .
[33] Shu-Hong Yu,et al. Functional carbonaceous materials from hydrothermal carbonization of biomass: an effective chemical process. , 2008, Dalton transactions.
[34] Jie Chang,et al. Characterization of Hydrochars Produced by Hydrothermal Carbonization of Lignin, Cellulose, d-Xylose, and Wood Meal , 2012 .
[35] L. Rosendahl,et al. Hydrothermal liquefaction of biomass: A review of subcritical water technologies , 2011 .
[36] Bo Zhang,et al. Thermal Effects on Hydrothermal Biomass Liquefaction , 2008, Applied biochemistry and biotechnology.
[37] Donghong Yu,et al. Hydrothermal liquefaction of barley straw to bio-crude oil: Effects of reaction temperature and aqueous phase recirculation , 2015 .
[38] N. Berge,et al. Hydrothermal carbonization of biomass residuals: a comparative review of the chemistry, processes and applications of wet and dry pyrolysis , 2011 .
[39] Bruno Couto da Silva,et al. Extração de Taninos da Casca de Pinus oocarpa var. oocarpa com Carbonato de Sódio e Bissulfito de Sódio / Tannin Extraction from the Bark of Pinus oocarpa var. oocarpa with Sodium Carbonate and Sodium Bisulfite , 2011 .
[40] Ryan Dolan,et al. Subcritical hydrothermal liquefaction of cattle manure to bio-oil: Effects of conversion parameters on bio-oil yield and characterization of bio-oil. , 2010, Bioresource technology.
[41] Thomas Maschmeyer,et al. Pilot plant testing of continuous hydrothermal liquefaction of microalgae , 2013 .
[42] J. Akhtar,et al. A review on process conditions for optimum bio-oil yield in hydrothermal liquefaction of biomass , 2011 .
[43] Abigail S. Engelberth,et al. Adding Value to the Integrated Forest Biorefinery with Co‐Products from Hemicellulose‐Rich Pre‐Pulping Extract , 2012 .
[44] Hanna Pińkowska,et al. Hydrothermal decomposition of alkali lignin in sub- and supercritical water , 2012 .
[45] Markus Antonietti,et al. Chemistry and materials options of sustainable carbon materials made by hydrothermal carbonization. , 2010, Chemical Society reviews.
[46] Markus Antonietti,et al. Hydrothermal carbon from biomass : a comparison of the local structure from poly- to monosaccharides and pentoses/hexoses. , 2008 .
[47] Baoliang Chen,et al. Sorption of naphthalene and 1-naphthol by biochars of orange peels with different pyrolytic temperatures. , 2009, Chemosphere.
[48] Frank-Dieter Kopinke,et al. Potential of the hydrothermal carbonization process for the degradation of organic pollutants. , 2013, Chemosphere.
[49] Antonio Pizzi,et al. Recent developments in eco-efficient bio-based adhesives for wood bonding: opportunities and issues , 2006 .
[50] Anja Oasmaa,et al. Thermochemical Conversion of Black Liquor in the Liquid Phase , 1989 .
[51] Saqib Sohail Toor,et al. Continuous production of bio-oil by catalytic liquefaction from wet distiller’s grain with solubles (WDGS) from bio-ethanol production , 2012 .
[52] J. Lehmann,et al. Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal – a review , 2002, Biology and Fertility of Soils.
[53] Swee Ngin Tan,et al. Emerging green technologies for the chemical standardization of botanicals and herbal preparations , 2013 .
[54] Markus Antonietti,et al. Back in the black: hydrothermal carbonization of plant material as an efficient chemical process to treat the CO2 problem? , 2007 .
[55] Warren J. Grigsby,et al. NMR Estimation of Extractables from Bark: Analysis Method for Quantifying Tannin Extraction from Bark , 2003 .
[56] Guiling Wang,et al. Direct carbon fuel cell: Fundamentals and recent developments , 2007 .
[57] Markus Antonietti,et al. A Direct Synthesis of Mesoporous Carbons with Bicontinuous Pore Morphology from Crude Plant Material by Hydrothermal Carbonization , 2007 .
[58] Paul Gatenholm,et al. Material properties of plasticized hardwood xylans for potential application as oxygen barrier films. , 2004, Biomacromolecules.
[59] Chunlin Xu,et al. Obtaining spruce hemicelluloses of desired molar mass by using pressurized hot water extraction. , 2014, ChemSusChem.
[60] Matti Siika-aho,et al. Spruce bark as an industrial source of condensed tannins and non-cellulosic sugars , 2014 .
[61] Yan Wang,et al. A new glucomannan from Bletilla striata: structural and anti-fibrosis effects. , 2014, Fitoterapia.
[62] N. Mosier,et al. Optimization of pH controlled liquid hot water pretreatment of corn stover. , 2005, Bioresource technology.
[63] Phillip E. Savage,et al. Hydrothermal Liquefaction of a Microalga with Heterogeneous Catalysts , 2011 .
[64] Paul Gatenholm,et al. Hemicelluloses: Science and Technology , 2003 .
[65] Caixia Wan,et al. Effect of hot water extraction and liquid hot water pretreatment on the fungal degradation of biomass feedstocks. , 2011, Bioresource technology.
[66] D. Barreiro,et al. Hydrothermal liquefaction (HTL) of microalgae for biofuel production: State of the art review and future prospects , 2013 .
[67] Pirjo Heikkilä,et al. Bio-based tailored precursors for advanced carbons and applications , 2014 .
[68] Hans Theliander,et al. Catalytic depolymerisation and conversion of Kraft lignin into liquid products using near-critical water , 2014 .
[69] Nakorn Tippayawong,et al. Recovery of Value-Added Products from Hydrothermal Carbonization of Sewage Sludge , 2013 .
[70] Markus Antonietti,et al. Engineering Carbon Materials from the Hydrothermal Carbonization Process of Biomass , 2010, Advances in Materials.
[71] Bin Gao,et al. Catechol and humic acid sorption onto a range of laboratory-produced black carbons (biochars). , 2010, Environmental science & technology.
[72] Nicole D Berge,et al. Influence of feedstock chemical composition on product formation and characteristics derived from the hydrothermal carbonization of mixed feedstocks. , 2014, Bioresource technology.
[73] C. Wyman,et al. Features of promising technologies for pretreatment of lignocellulosic biomass. , 2005, Bioresource technology.
[74] O. Sackur,et al. Die Anwendung hoher Drucke bei chemischen Vorgängen und eine Nachbildung des Entstehungsprozesses der Steinkohle. Von Friedrich Bergius. 58 S. und 4 Abbildungen. Verlag von Wilhelm Knapp, Halle a. S. 1913. Preis geb. 2,80 Mk , 1914, Zeitschrift für Elektrochemie und angewandte physikalische Chemie.
[75] Mary J. Biddy,et al. Techno-economic analysis of liquid fuel production from woody biomass via hydrothermal liquefaction (HTL) and upgrading , 2014 .
[76] M. Buttmann. Klimafreundliche Kohle durch Hydrothermale Karbonisierung von Biomasse , 2011 .
[77] S. S. Islam,et al. A new arabinoxylan from green leaves of Litsea glutinosa (Lauraeae): structural and biological studies. , 2013, Carbohydrate polymers.
[78] Ignacio Ballesteros,et al. Effect of process variables on liquid hot water pretreatment of wheat straw for bioconversion to fuel‐ethanol in a batch reactor , 2007 .
[79] H. Ted Davis,et al. Hydrothermal carbonization of microalgae , 2010 .
[80] Annie Ducrozet,et al. Hydrothermal conversion of lignin compounds. A detailed study of fragmentation and condensation reaction pathways , 2012 .
[81] G. Tondi,et al. Tannin-based rigid foams: a survey of chemical and physical properties. , 2009, Bioresource technology.
[82] Anja Oasmaa,et al. Thermochemical Conversion of Black Liquor Organics into an Oil Product. I. Formation of the Major Product Fractions , 1990 .
[83] Peter Spetz,et al. BIOREFINERY. Pressurised hot water extraction of acetylated xylan from birch sawdust , 2012 .
[84] Sari Hyvärinen,et al. Hydroxyalkylated xylans: Their synthesis and application in coatings for packaging and paper , 2013 .
[85] Mehmet Sefik Tunc,et al. Hydrothermal dissolution of mixed southern hardwoods , 2008 .
[86] G. Zeeman,et al. Pretreatments to enhance the digestibility of lignocellulosic biomass. , 2009, Bioresource technology.
[87] Jie Chang,et al. Hydrothermal conversion of lignin: A review , 2013 .
[88] P. Biller,et al. Potential yields and properties of oil from the hydrothermal liquefaction of microalgae with different biochemical content. , 2011, Bioresource technology.
[89] Maria-Magdalena Titirici,et al. Morphological and structural differences between glucose, cellulose and lignocellulosic biomass derived hydrothermal carbons , 2011 .