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Original Articles

Effect of Temperature on Pyrolysis Products from Biomass

Pages 329-336 | Published online: 07 Oct 2010

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

Read on this site (6)

Hafiza Sana, Sumaira Kanwal, Javaid Akhtar, Rizwan Haider, Shafqat Nawaz, Naseer Sheikh & Shahid Munir. (2017) Production of ethanol and bio-chars from Pakistani ligno-cellulosic biomasses. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 39:5, pages 465-472.
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P. Madhu, H. Kanagasabapathy & I. Neethi Manickam. (2016) Flash pyrolysis of palmyra palm (Borassus flabellifer) using an electrically heated fluidized bed reactor. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38:12, pages 1699-1705.
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M. Balat. (2011) An Overview of the Properties and Applications of Biomass Pyrolysis Oils. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 33:7, pages 674-689.
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M. Balat & M. Balat. (2010) Pyrolysis of Black Locust Wood in the Presence of Perlite. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 33:3, pages 211-220.
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A. Demirbas. (2010) Future Fuels for Internal Combustion Engines. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 32:14, pages 1273-1281.
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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 (44)

Qingqing Liu, Yuxin Wen, Mei Zhong, Haoquan Hu & Lijun Jin. (2024) Insight into pyrolysis behaviors of cedar under different atmospheres via a fixed-bed reactor. Fuel 368, pages 131607.
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N. Miskolczi, N.B Gao & C. Quan. (2024) Transformation of biomass and waste plastic mixtures into hydrocarbon oils and gases by pyrolysis using different reactor temperatures and pressures. Journal of Analytical and Applied Pyrolysis, pages 106520.
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M Marone, P Marasco, S Trotta, A Carnevale, M Salvatori, M Fedele, F Contillo & M Francavilla. (2023) Carbonaceous materials derived from biowastes pyrolysis as efficient and green biogas desulfurization system. Journal of Physics: Conference Series 2648:1, pages 012016.
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Yunxuan Gu, Hongmei Xu, Rong Feng, Bin Zhang, Min Gao, Jian Sun, Zhenxing Shen, Linli Qu, Steven Sai Hang Ho & Junji Cao. (2023) Insight into personal exposure characteristics and health effects of PM2.5 and PM0.25-bound PAHs and their derivatives with different heating ways in the Fenwei Plain, China. Environmental Pollution 338, pages 122699.
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Sana Hafiza, Asim Riaz, Zubaria Arshad, Syeda Tahsin Zahra, Javaid Akhtar, Sumaira Kanwal, Hassan Zeb & Jaehoon Kim. (2023) Effect of pyrolysis temperature on the physiochemical properties of biochars produced from raw and fermented rice husks. Korean Journal of Chemical Engineering 40:8, pages 1986-1992.
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Md Reza, Zhanar Iskakova, Shammya Afroze, Kairat Kuterbekov, Asset Kabyshev, Kenzhebatyr Bekmyrza, Marzhan Kubenova, Muhammad Bakar, Abul Azad, Hridoy Roy & Md Islam. (2023) Influence of Catalyst on the Yield and Quality of Bio-Oil for the Catalytic Pyrolysis of Biomass: A Comprehensive Review. Energies 16:14, pages 5547.
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Rishikesh Chormare, Tarini Prasad Sahoo, Amit Chanchpara, Hitesh T. Saravaia & Anil Kumar Madhava. (2022) Thermo-chemical conversion and kinetic evaluation of Casuarina equisetifolia pines to biochar and their utilization in sequestering toxic metal ions. Biomass Conversion and Biorefinery 13:11, pages 9423-9434.
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Omvesh, Meenu Jindal, Bhaskar Thallada & Venkata Chandra Sekhar Palla. (2023) Pyrolysis of pine needles: Parameter optimization using response surface methodology. Bioresource Technology Reports 22, pages 101407.
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Hakim Abdel Aziz Ouattara, Florence Bobelé Niamké, Jean Claude Yao, Nadine Amusant & Benjamin Garnier. (2023) Wood Vinegars: Production Processes, Properties, and Valorization. Forest Products Journal 73:3, pages 239-249.
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F. Artillo, J. Cueto, H. Hernando, P. Pizarro & D.P. Serrano. (2023) Moderate pressure boosts the aromatization activity of HZSM-5 zeolite during catalytic pyrolysis of lignocellulosic materials. Industrial Crops and Products 194, pages 116313.
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Janter Pangaduan Simanjuntak, Bisrul Hapis Tambunan, Junifa Layla Sihombing & Riduwan Riduwan. Thermal Design Approach of a Shell and Tube Heat Exchanger for Pyrolysis-Vapor Condensations. Thermal Design Approach of a Shell and Tube Heat Exchanger for Pyrolysis-Vapor Condensations.
Fabian Mahrt, Carolin Rösch, Kunfeng Gao, Christopher H. Dreimol, Maria A. Zawadowicz & Zamin A. Kanji. (2023) Physicochemical properties of charcoal aerosols derived from biomass pyrolysis affect their ice-nucleating abilities at cirrus and mixed-phase cloud conditions. Atmospheric Chemistry and Physics 23:2, pages 1285-1308.
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Vahid Haseltalab, Animesh Dutta & Sheng Yang. (2023) On the 3D printed catalyst for biomass-bio-oil conversion: Key technologies and challenges. Journal of Catalysis 417, pages 286-300.
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Pedro Maldonado, Giane G. Lenzi, Helder T. Gomes & Paulo Brito. MODELING AND SIMULATION OF BIOMASS PYROLYSIS AND GASIFICATION PROCESSES. MODELING AND SIMULATION OF BIOMASS PYROLYSIS AND GASIFICATION PROCESSES.
Ishioma L. Egun, Haiyong He, Di Hu & George Z. Chen. (2022) Molten Salt Carbonization and Activation of Biomass to Functional Biocarbon. Advanced Sustainable Systems 6:12.
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Yuna Ma, Zefeng Ge, Fangzhou Li, Zhenting Zha, Mingxun Zeng & Huiyan Zhang. (2022) Pyrolysis and CO2 gasification of biomass in high-temperature stage microscope: Morphological evolution and thermal behaviors. Combustion and Flame 245, pages 112387.
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Zohra Rahimi, Amrit Anand & Shalini Gautam. (2022) An overview on thermochemical conversion and potential evaluation of biofuels derived from agricultural wastes. Energy Nexus 7, pages 100125.
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Hao Zhang, Xuan Zhang, Yan Wang, Pengchu Bai, Kazuichi Hayakawa, Lulu Zhang & Ning Tang. (2022) Characteristics and Influencing Factors of Polycyclic Aromatic Hydrocarbons Emitted from Open Burning and Stove Burning of Biomass: A Brief Review. International Journal of Environmental Research and Public Health 19:7, pages 3944.
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Alireza Zhandnezhad, Majid Saidi & Ali Taheri Najafabadi. (2022) Thermal and Catalytic Pyrolysis Process of Neem Seed to Produce Valuable Fuels over RFCC Catalyst: Process Development and Evaluation. ChemistrySelect 7:11.
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Saravanakumar Ayyadurai & Kantha Deivi Arunachalam. (2021) Experimental investigations on sugarcane bagasse pyrolytic oil production from flash pyrolysis using a rotary screw reactor. Biofuels, Bioproducts and Biorefining 16:2, pages 576-586.
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Sirajum Munira, James J. Dynes, Mofizul Islam, Fahad Khan, Theresa Adesanya, Tom Z. Regier, Kurt A. Spokas & Annemieke Farenhorst. (2021) Relative proportions of organic carbon functional groups in biochars as influenced by spectral data collection and processing. Chemosphere 283, pages 131023.
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Waheed A. Rasaq, Mateusz Golonka, Miklas Scholz & Andrzej Białowiec. (2021) Opportunities and Challenges of High-Pressure Fast Pyrolysis of Biomass: A Review. Energies 14:17, pages 5426.
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Anwar Khitab, Sajjad Ahmad, Riaz Akhtar Khan, Muhammad Tausif Arshad, Waqas Anwar, Junaid Tariq, Ali Sikandar Rasheed Khan, Raja Bilal Nasar Khan, Affan Jalil & Zeesshan Tariq. (2021) Production of Biochar and Its Potential Application in Cementitious Composites. Crystals 11:5, pages 527.
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Alok Dhaundiyal, Suraj B. Singh, Divine Atsu & Laszlo Toth. (2021) Comprehensive analysis of pre-treated Austrian pine. Fuel 287, pages 119605.
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Rabi K. Ahmad, Shaharin A. Sulaiman, Sharul Sham Dol & Hadiza A. Umar. 2021. Clean Energy Opportunities in Tropical Countries. Clean Energy Opportunities in Tropical Countries 151 175 .
Alok Dhaundiyal, Divine Atsu & Laszlo Toth. (2020) Physico-chemical assessment of torrefied Eurasian pinecones. Biotechnology for Biofuels 13:1.
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Nattawut Khuenkaeo, Blake MacQueen, Thossaporn Onsree, Sangu Daiya, Nakorn Tippayawong & Jochen Lauterbach. (2020) Bio-oils from vacuum ablative pyrolysis of torrefied tobacco residues. RSC Advances 10:58, pages 34986-34995.
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Aitor Ochoa, Javier Bilbao, Ana G. Gayubo & Pedro Castaño. (2020) Coke formation and deactivation during catalytic reforming of biomass and waste pyrolysis products: A review. Renewable and Sustainable Energy Reviews 119, pages 109600.
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Mouzaina Boutaieb, Monia Guiza, Silvia Román, Sergio Nogales, Beatriz Ledesma & Abdelmottaleb Ouederni. (2019) Pine cone pyrolysis: Optimization of temperature for energy recovery. Environmental Progress & Sustainable Energy 39:1.
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Xun Hu & Mortaza Gholizadeh. (2019) Biomass pyrolysis: A review of the process development and challenges from initial researches up to the commercialisation stage. Journal of Energy Chemistry 39, pages 109-143.
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Mohammad-Saeed Safdari, Elham Amini, David R. Weise & Thomas H. Fletcher. (2019) Heating rate and temperature effects on pyrolysis products from live wildland fuels. Fuel 242, pages 295-304.
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Hangyong Ray Lu & Ali El Hanandeh. (2019) Life cycle perspective of bio-oil and biochar production from hardwood biomass; what is the optimum mix and what to do with it?. Journal of Cleaner Production 212, pages 173-189.
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M Saleem & N Baig. (2018) Production of bio-oil and bio-char from different biomass wastes. IOP Conference Series: Materials Science and Engineering 458, pages 012021.
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Arshdeep Grewal, Lord Abbey & Lokanadha Rao Gunupuru. (2018) Production, prospects and potential application of pyroligneous acid in agriculture. Journal of Analytical and Applied Pyrolysis 135, pages 152-159.
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Rupam Kataki, Neon J. Bordoloi, Ruprekha Saikia, Debashis Sut, Rumi Narzari, Lina Gogoi & Nilutpal Bhuyan. 2018. Waste to Wealth. Waste to Wealth 477 514 .
Lidya B. Santos, Maria V. Striebeck, Marisa S. Crespi, Jorge M. V. Capela, Clovis A. Ribeiro & Marcelo De Julio. (2016) Energy evaluation of biochar obtained from the pyrolysis of pine pellets. Journal of Thermal Analysis and Calorimetry 126:3, pages 1879-1887.
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Jan Nisar, Niamat Ullah, Iftikhar Ahmad Awan, Munawar Iqbal & Taj Ali Khan. (2015) Pyrolysis–Gas Chromatography of Sugar Beet Bagasse. Waste and Biomass Valorization 7:1, pages 79-85.
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Thi Phuong Thuy Pham, Rajni Kaushik, Ganesh K. Parshetti, Russell Mahmood & Rajasekhar Balasubramanian. (2015) Food waste-to-energy conversion technologies: Current status and future directions. Waste Management 38, pages 399-408.
Crossref
Barbara J. Ward, Tesfayohanes W. Yacob & Lupita D. Montoya. (2014) Evaluation of Solid Fuel Char Briquettes from Human Waste. Environmental Science & Technology 48:16, pages 9852-9858.
Crossref
Mehmet Balat. (2010) Bio-Oil Production from Pyrolysis of Black Locust ( Robinia Pseudoacacia ) Wood . Energy Exploration & Exploitation 28:3, pages 173-186.
Crossref
Gyami Shrestha, Samuel Traina & Christopher Swanston. (2010) Black Carbon’s Properties and Role in the Environment: A Comprehensive Review. Sustainability 2:1, pages 294-320.
Crossref
Mustafa Balat, Mehmet Balat, Elif Kırtay & Havva Balat. (2009) Main routes for the thermo-conversion of biomass into fuels and chemicals. Part 1: Pyrolysis systems. Energy Conversion and Management 50:12, pages 3147-3157.
Crossref
Brett Digman & Dong‐Shik Kim. (2008) Review: Alternative energy from food processing wastes. Environmental Progress 27:4, pages 524-537.
Crossref
Mustafa Balat. (2008) Experimental Study on Pyrolysis of Black Alder Wood. Energy Exploration & Exploitation 26:4, pages 209-220.
Crossref

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