Journal of Sustainable Bioenergy Systems

Journal of Sustainable Bioenergy Systems

ISSN Print: 2165-400X
ISSN Online: 2165-4018
www.scirp.org/journal/jsbs
E-mail: jsbs@scirp.org
"Evaluation of Fuel Properties of Six Tropical Hardwood Timber Species for Briquettes"
written by Stephen J. Mitchual, Kwasi Frimpong-Mensah, Nicholas A. Darkwa,
published by Journal of Sustainable Bioenergy Systems, Vol.4 No.1, 2014
has been cited by the following article(s):
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[10] Equipment Design, Production and Characterisation of Clean Briquette fuel from composite agro-plastic wastes
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[13] From Waste to Energy; Comparative Assessment of Heat Values of Biomass Briquettes and Fuel Wood for Bio-fuel Utilization and Strategic Waste Management in Ethiopia
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[14] Karakteristik Briket Arang Limbah Kayu Sengon (Falcataria moluccana) dengan Variasi Kadar Perekat Tapioka dan Tipe Tungku Pirolisis
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[15] Thermal and mechanical characteristics of local firewood species and resulting charcoal produced by slow pyrolysis
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[19] Production of bagasse biofuel briquettes reinforced by nanocellulose and nanolignocellulose binders
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[20] Technological characterization of wood residues from the Amazon for the production of briquettes
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[23] Production of High-Quality Charcoal Briquettes from Recycled Biomass Residues
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[28] Influence of Physical and Chemical Components on the Physical-Mechanical Properties of Ten Brazilian Wood Species
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[29] Production of Composite Briquettes (Orange Peels and Corn Cobs) and Determination of its Fuel Properties
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[30] Synthesis of Microcrystalline Cellulose from Carpenter Waste and Its Characterizations
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[31] Higher Heating Value Prediction Model From Proximate And Ultimate Analysis Data
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[32] Characterization of volatile compounds of liquid smoke flavourings from some tropical hardwoods
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[33] Burn to kill: Wood ash a silent killer in Africa
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[34] Production of composite briquettes (orange peels and corn cobs) and determination of its fuel properties.
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[35] Determination of Energy Properties of Fuelwood from Five Selected Tree Species in Tropical Highlands of Southeast Ethiopia
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[36] Assessment of Municipal Organic Solid Waste, as a Potential Feedstock for Briquette Production in Kampala, Uganda
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[37] تولید بریکت‌های سوختی باگاس تقویت‌شده به‌وسیلۀ اتصال‌دهنده‌های نانوسلولز و نانولیگنوسلولز‎
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[38] Energy Resource of Charcoals Derived from Some Tropical Fruits Nuts Shells.
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[39] Assessment of energy parameters of biomass and biochars, leachability of heavy metals and phytotoxicity of their ashes
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[40] Evaluation of Energy Properties of Lesser Known Native Species; Nataw (Xylopia parviflora)
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[41] Fuel characteristics of binder free briquettes made at room temperature from blends of oil palm mesocarp fibre and Ceiba pentandra
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[42] Aboveground Biomass Characterization of a Young Kawayan Tinik Plantation (Bambusa blumeana JA & JH Schultes) in Nueva Ecija, Philippines for Bioenergy …
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[44] The role of modern bioenergy in solar photovoltaic driven and defossilised power systems: The case of Ghana
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[45] Gasification Prospective of Compressed Industrial Tea (Camellia sinensis) Waste using Fixed Bed Downdraft Gasifier
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[46] COMBUSTION PROPERTIES OF BRIQUETTES PRODUCED FROM MIXTURE OF
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[47] Evaluation of Some Combustion Characteristics of Biochar produced from Coconut Husks, Corn Cobs and Palm Kernel Shells
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[48] Investigation of Combustion Properties of Some Selected Fuelwood Species in Nigeria
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[49] Ameliorative Potential of Biocharcoal on Sodium Azide Toxicity in African Yam Bean (Sphenostylis stenocarpa Hochst. Ex. A. Rich) Harms.
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[51] The development of equations for estimating high heating values from proximate and ultimate analysis for some selected indigenous fuel woods
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[52] Gasification Potential of Garden Tea (Camellia Sinensis) Waste using Downdraft Gasifier
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[53] Exploring the feasibility of a biomass briquette enterprise with a youth cooperative in Nairobi
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[54] Is biomass liquefaction an option for the viability of poplar short rotation coppices? A preliminary experimental approach
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[55] Physical and Thermal Characteristics of Solid Bio Ethanol
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[56] THE DEVELOPMENT OF EQUATIONS FOR ESTIMATING HIGH HEATING VALUES FROM PROXIMATE AND ULTIMATE ANALYSIS FOR SOME SELECTED …
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[57] PEMBUATAN BRIKET DARI KULIT KAKAO MENGGUNAKAN PEREKAT KULIT UBI KAYU
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[58] Influência de componentes químicos em propriedades mecânicas da madeira
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[59] Thermal Properties of Charred Bamboo as A Source of Fuel
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[60] Produksi Biopelet Dan Biobriket Ampas Seduhan Dan Cangkang Biji Kopi Dengan Dan Tanpa Pra Perlakuan Bahan Pada Berbagai Komposisi Perekat.
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[61] Pyrolysis of cherry laurel (Prunus Laurocerasus L.) seed in the presence of sodium carbonate
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[62] Potential biofuel from liquefied cork–Higher heating value comparison
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[63] Yield and Composition of Bio-oil from Co-Pyrolysis of Corn Cobs and Plastic Waste of HDPE in a Fixed Bed Reactor
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[64] Combustion Characteristics of Tree Woods
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[65] An Evaluation of the Calorific Values of the Branches and Stems of 11 Tropical Trees
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[66] Nigerian Hardwood (Nesogordonia papaverifera) Sawdust Characterization: Proximate Analysis, Cellulose and Lignin Contents
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[67] Analysis of the Calorific and Fuel Value Index of Bamboo as a Source of Renewable Biomass Feedstock for Enegry Generation in Nigeria
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[68] Process Parameters Affecting the Production of Charcoal Briquettes from Lignocellulose Waste
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[69] Preliminary Study on Properties of Small Diameter Wild Acacia mangium Species as Potential Biomass Energy Sources
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[70] EFFECT OF AGE AND HEIGHT ON THE PHYSICAL AND MECHANICAL PROPERTIES AND THE CALORFIC VALUE OF Hevea brasiliensis
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[71] Effectiveness of briquettes as an alternative cooking fuel for households in Uganda
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[72] Effect of briquetting temperature on the properties of biomass briquettes
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[73] Briket Arang Serbuk Kayu Sengon Berperekat Limbah Pengolahan Resin Pinus
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[74] Análisis químico de diferentes tipos de biomasa lignocelulósica para uso bioenergético
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[75] و داﻮﻣ شور ﺎﻫ‎
[76] Trees, Forests and People
[77] Evaluation of Briquettes Produced from Four Selected Sawdusts Combination at Quaternary Levels
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