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Original Articles

Current Technologies for Biomass Conversion into Chemicals and Fuels

Pages 1181-1188 | Published online: 16 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Zhaolin Fu, Ze Wang, Weigang Lin & Wenli Song. (2017) Conversion of furan derivatives for preparation of biofuels over Ni–Cu/C catalyst. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 39:11, pages 1176-1181.
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Y. C. Li, X. H. Wang, J. A. Shao, P. Li, H. P. Yang & H. P. Chen. (2016) Utilization of pyrolytic char derived from bamboo chips for furfural removal: Kinetics, isotherm, and thermodynamics. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38:11, pages 1520-1529.
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M.F. Demirbas. (2010) Characterization of Bio-oils from Spruce Wood (Picea orientalis L.) via Pyrolysis. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 32:10, pages 909-916.
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Articles from other publishers (54)

Ram Bhajan Sahu, Janki Pahlwani & Priyanka Singh. 2023. Production of Biobutanol from Biomass. Production of Biobutanol from Biomass 77 104 .
Praveda Paranjape & Parag Sadgir. (2023) Heavy Metal Removal Using Plant Origin Biomass and Agricultural Waste-Derived Biomass from Aqueous Media: a Review. Water Conservation Science and Engineering 8:1.
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Abhinav Kumar, Sourav Chakraborty, Daphna Shimon & Yoel Sasson. (2023) Pd Nanoparticle-Decorated Bi 2 MoO 6 Nanoflakes with Surface Oxygen Vacancies for Selective Room-Temperature Furfural Hydrogenation and Benzyl Phenyl Ether Hydrogenolysis . ACS Applied Nano Materials 6:18, pages 16625-16642.
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Sonal Mishra, Neha Kumari, Varsha Singh & Rajeshwar Sinha. (2023) Cyanobacterial Biofuel: A Platform for Green Energy. Advances in Environmental and Engineering Research 04:03, pages 1-42.
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Abdul Sattar Jatoi, Sikandar Ali Abbasi, Zubair Hashmi, Abdul Karim Shah, Muhammad Shahb Alam, Zulfiqar Ali Bhatti, Ghulamullah Maitlo, Saqib Hussain, Ghulam Abbas Khandro, Muhammad Azam Usto & Arshad Iqbal. (2021) Recent trends and future perspectives of lignocellulose biomass for biofuel production: a comprehensive review. Biomass Conversion and Biorefinery 13:8, pages 6457-6469.
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Abrar Faisal, Fahed Javed, Mohsan Hassan, M. R. Gorji, Sarfaraz Akram, Naim Rashid & Fahad Rehman. (2021) Experimental and mathematical nonlinear rheological characterization of chicken fat oil-a sustainable feedstock for biodiesel. Biomass Conversion and Biorefinery 13:8, pages 7043-7050.
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Faisal Khan, Nazim Hussain, Hafiz M.N. Iqbal, Jesús Fernández-Lucas, Jakub Zdarta, Teofil Jesionowski & Muhammad Bilal. 2023. Bionanocatalysis : from Design to Applications. Bionanocatalysis : from Design to Applications 335 360 .
Qiaoyan Shang, Jifa Xiao, Xiaojuan Liu, Yujie Ling, Wenge Liu, Guanwei Cui, Xifeng Shi, Shuqian Xia & Bo Tang. (2022) Isobaric vapor–liquid equilibria and distillation process design for separating ketones in biomass pyrolysis oil. The Journal of Chemical Thermodynamics 164, pages 106622.
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James G. Speight. 2022. Biomass Processes and Chemicals. Biomass Processes and Chemicals 1 44 .
James G. Speight. 2022. Biomass Processes and Chemicals. Biomass Processes and Chemicals 257 292 .
Maris Puke, Daniela Godina, Mikelis Kirpluks, Prans Brazdausks & Janis Rizikovs. (2021) Characterization of Birch Wood Residue after 2-Furaldehyde Obtaining, for Further Integration in Biorefinery Processing. Polymers 13:24, pages 4366.
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Sangita Mahapatra, Dilip Kumar, Brajesh Singh & Pravin Kumar Sachan. (2021) Biofuels and their sources of production: a review on cleaner sustainable alternative against conventional fuel, in the framework of the food and energy nexus. Energy Nexus, pages 100036.
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Maroa Semakula & Freddie Inambao. (2021) Waste To Energy Feedstock Sources for the Production of Biodiesel as Fuel Energy in Diesel Engine – A Review. Advances in Science, Technology and Engineering Systems Journal 6:1, pages 409-446.
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Meenal Jain, Meenakshi Mital & Puja Gupta. 2021. Bioenergy Research: Biomass Waste to Energy. Bioenergy Research: Biomass Waste to Energy 27 53 .
Avinash Ammanagi, Praveen Satapute, Shakeel Ahmed Adhoni, Shivakantkumar S. Adhikari, Sanjay Kumar Gupta & Sikandar I. Mulla. 2021. Catalysis for Clean Energy and Environmental Sustainability. Catalysis for Clean Energy and Environmental Sustainability 803 822 .
Jake A. Muldoon & Benjamin G. Harvey. (2020) Bio‐Based Cycloalkanes: The Missing Link to High‐Performance Sustainable Jet Fuels. ChemSusChem 13:22, pages 5777-5807.
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Feng Shen, Xinni Xiong, Junyan Fu, Jirui Yang, Mo Qiu, Xinhua Qi & Daniel C.W. Tsang. (2020) Recent advances in mechanochemical production of chemicals and carbon materials from sustainable biomass resources. Renewable and Sustainable Energy Reviews 130, pages 109944.
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Yiqi Gao, Xinli Tong & Haigang Zhang. (2020) A selective oxidative valorization of biomass-derived furfural and ethanol with the supported gold catalysts. Catalysis Today 355, pages 238-245.
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Pranav D. Parakh, Sonil Nanda & Janusz A. Kozinski. (2020) Eco-friendly Transformation of Waste Biomass to Biofuels. Current Biochemical Engineering 6:2, pages 120-134.
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Ganesh Dattatraya Saratale, Jeyapraksh Damaraja, Sutha Shobana, Rijuta Ganesh Saratale, Sivagurunathan Periyasamy, Gunagyin Zhen & Gopalakrishnan Kumar. 2020. Green Energy to Sustainability. Green Energy to Sustainability 447 463 .
Muhammad G. Doggar, M. Shahzad Khurram, Saima Mirza, Moinuddin Ghauri, Farrukh Jamil, Nawshad Muhammad, Sikandar Rafiq & Mujtaba H. Jaffery. (2020) Biomass Power Generation Potential and Utlization in Pakistan. Current Organic Chemistry 23:21, pages 2350-2365.
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R. Sakthivel, Mohanraj T., Joseph John Marshal S., Baranitharan P., Tamilvanan A. & Gomathi K.. 2020. Recent Technologies for Enhancing Performance and Reducing Emissions in Diesel Engines. Recent Technologies for Enhancing Performance and Reducing Emissions in Diesel Engines 44 64 .
James G. Speight. 2020. Handbook of Industrial Hydrocarbon Processes. Handbook of Industrial Hydrocarbon Processes 293 342 .
Lorraine Quinn, Patricia Armshaw, Tewfik Soulimane, Con Sheehan, Michael P. Ryan & J. Tony Pembroke. (2019) Zymobacter palmae Pyruvate Decarboxylase is Less Effective Than That of Zymomonas mobilis for Ethanol Production in Metabolically Engineered Synechocystis sp. PCC6803. Microorganisms 7:11, pages 494.
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Atta Ullah, Kun Hong, Yanan Gao, Afsin Gungor & Muhammad Zaman. (2019) An overview of Eulerian CFD modeling and simulation of non-spherical biomass particles. Renewable Energy 141, pages 1054-1066.
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Arup Datta, Aslam Hossain & Sanjay Roy. (2019) An Overview on Biofuels and Their Advantages and Disadvantages. Asian Journal of Chemistry 31:8, pages 1851-1858.
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Xuezhou Wen, Daniel Quacoe, Dinah Quacoe, Kingsley Appiah & Bertha Ada Danso. (2019) Analysis on Bioeconomy’s Contribution to GDP: Evidence from Japan. Sustainability 11:3, pages 712.
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Nilutpal Bhuyan, Debashis Sut, Lina Gogoi, Rupam Kataki & Vaibhav V. Goud. 2019. Sustainable Bioenergy. Sustainable Bioenergy 21 47 .
Mohammad Raza Siddiqui, Ana Miranda & Aidyn Mouradov. 2019. Water Scarcity and Ways to Reduce the Impact. Water Scarcity and Ways to Reduce the Impact 75 94 .
Duong T. Ngo, Tawan Sooknoi & Daniel E. Resasco. (2018) Improving stability of cyclopentanone aldol condensation MgO-based catalysts by surface hydrophobization with organosilanes. Applied Catalysis B: Environmental 237, pages 835-843.
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Zhenya Zhang, Xinli Tong, Haigang Zhang & Yongdan Li. (2018) Versatile catalysis of iron: tunable and selective transformation of biomass-derived furfural in aliphatic alcohol. Green Chemistry 20:13, pages 3092-3100.
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Danielle Austin, Aiguo Wang, Jonathan H. Harrhy, Xiaohui Mao, Hongbo Zeng & Hua Song. (2018) Catalytic aromatization of acetone as a model compound for biomass-derived oil under a methane environment. Catalysis Science & Technology 8:19, pages 5104-5114.
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Aiguo Wang, Danielle Austin, Abhoy Karmakar, Guy M. Bernard, Vladimir K. Michaelis, Matthew M. Yung, Hongbo Zeng & Hua Song. (2017) Methane Upgrading of Acetic Acid as a Model Compound for a Biomass-Derived Liquid over a Modified Zeolite Catalyst. ACS Catalysis 7:5, pages 3681-3692.
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Yu Chen, Nannan Zhao, Yulong Wu, Kejing Wu, Xiuyun Wu, Ji Liu & Mingde Yang. (2016) Distributions of organic compounds to the products from hydrothermal liquefaction of microalgae. Environmental Progress & Sustainable Energy 36:1, pages 259-268.
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Lesego M. Mohlala, Michael O. Bodunrin, Ayotunde A. Awosusi, Michael O. Daramola, Nonhlanhla P. Cele & Peter A. Olubambi. (2016) Beneficiation of corncob and sugarcane bagasse for energy generation and materials development in Nigeria and South Africa: A short overview. Alexandria Engineering Journal 55:3, pages 3025-3036.
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Sonil Nanda, Ajay K. Dalai, Franco Berruti & Janusz A. Kozinski. (2015) Biochar as an Exceptional Bioresource for Energy, Agronomy, Carbon Sequestration, Activated Carbon and Specialty Materials. Waste and Biomass Valorization 7:2, pages 201-235.
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T. Suganya, M. Varman, H.H. Masjuki & S. Renganathan. (2016) Macroalgae and microalgae as a potential source for commercial applications along with biofuels production: A biorefinery approach. Renewable and Sustainable Energy Reviews 55, pages 909-941.
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Sven Groß-Selbeck, Karoline Marisch & Torsten Schulze. 2016. Reference Module in Food Science. Reference Module in Food Science.
Ramakanta Sahu, Byung Jin Song, Ji Sun Im, Young-Pyo Jeon & Chul Wee Lee. (2015) A review of recent advances in catalytic hydrocracking of heavy residues. Journal of Industrial and Engineering Chemistry 27, pages 12-24.
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Guangyi Li, Ning Li, Xinkui Wang, Xueru Sheng, Shanshan Li, Aiqin Wang, Yu Cong, Xiaodong Wang & Tao Zhang. (2014) Synthesis of Diesel or Jet Fuel Range Cycloalkanes with 2-Methylfuran and Cyclopentanone from Lignocellulose. Energy & Fuels 28:8, pages 5112-5118.
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Sonil Nanda, Javeed Mohammad, Sivamohan N. Reddy, Janusz A. Kozinski & Ajay K. Dalai. (2013) Pathways of lignocellulosic biomass conversion to renewable fuels. Biomass Conversion and Biorefinery 4:2, pages 157-191.
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Jinfan Yang, Ning Li, Guangyi Li, Wentao Wang, Aiqin Wang, Xiaodong Wang, Yu Cong & Tao Zhang. (2014) Synthesis of renewable high-density fuels using cyclopentanone derived from lignocellulose. Chemical Communications 50:20, pages 2572.
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Charles M Cai, Taiying Zhang, Rajeev Kumar & Charles E Wyman. (2013) Integrated furfural production as a renewable fuel and chemical platform from lignocellulosic biomass. Journal of Chemical Technology & Biotechnology 89:1, pages 2-10.
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Mamta Tandon, Padma Vasudevan, S.N. Naik & Philip Davies. (2013) Oil bearing seasonal crops in India: energy and phytoremediation potential. International Journal of Energy Sector Management 7:3, pages 338-354.
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Klas Engvall & Truls Liliedahl. 2013. Technologies for Converting Biomass to Useful Energy. Technologies for Converting Biomass to Useful Energy 175 216 .
Taiying Zhang, Rajeev Kumar & Charles E. Wyman. (2013) Enhanced yields of furfural and other products by simultaneous solvent extraction during thermochemical treatment of cellulosic biomass. RSC Advances 3:25, pages 9809.
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Ya Bo Li, Xu Ming Zhang, Lei Qiang Zhao, Qiang Lu & Chang Qing Dong. (2012) Thermogravimetric Analysis of Different Biomass Materials and the Primary Biomass Components. Applied Mechanics and Materials 260-261, pages 187-191.
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R. Chandra, H. Takeuchi & T. Hasegawa. (2012) Methane production from lignocellulosic agricultural crop wastes: A review in context to second generation of biofuel production. Renewable and Sustainable Energy Reviews 16:3, pages 1462-1476.
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Feng Peng, Jun Li Ren, Feng Xu & Run-Cang Sun. 2011. Sustainable Production of Fuels, Chemicals, and Fibers from Forest Biomass. Sustainable Production of Fuels, Chemicals, and Fibers from Forest Biomass 219 259 .
P. Abdeshahia, M.G. Dashti, M.S. Kalil & W.M.W. Yusoff. (2010) Production of Biofuel using Biomass as a Sustainable Biological Resource. Biotechnology(Faisalabad) 9:3, pages 274-282.
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S.N. Naik, Vaibhav V. Goud, Prasant K. Rout & Ajay K. Dalai. (2010) Production of first and second generation biofuels: A comprehensive review. Renewable and Sustainable Energy Reviews 14:2, pages 578-597.
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Ayhan Demirbas. (2009) Biofuels securing the planet’s future energy needs. Energy Conversion and Management 50:9, pages 2239-2249.
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M. Kleinert & T. Barth. (2008) Phenols from Lignin. Chemical Engineering & Technology 31:5, pages 736-745.
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Mike Kleinert & Tanja Barth. (2008) Towards a Lignincellulosic Biorefinery: Direct One-Step Conversion of Lignin to Hydrogen-Enriched Biofuel. Energy & Fuels 22:2, pages 1371-1379.
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