Published in Issue 2012-09-12
How to Cite
Akowuah, J. O., Kemausuor, F., & Mitchual, S. J. (2012). Physico-chemical characteristics and market potential of sawdust charcoal briquette. International Journal of Energy and Environmental Engineering, 3(1 (December 2012). https://doi.org/10.1186/2251-6832-3-20
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Abstract
Abstract In the absence of the widespread distribution of modern cooking fuels in developing countries, efforts are being made to utilise biomass residues which abound in most of these countries. This is intended to replace portions of firewood and charcoal and thereby reduce the cutting down of forests for fuel purposes. Briquettes from agro-residues have therefore been promoted as a better replacement to firewood and charcoals for heating, cooking and other industrial applications in both urban and rural communities. This study sought to assess the physico-chemical properties of charcoal briquettes produced in Ghana and also establish demand for and willingness of potential users to substitute charcoal and firewood with a charcoal briquette. A laboratory experiment was conducted to determine the physico-chemical characteristics of the briquettes. This was done prior to the distribution of the briquette to potential users to collaborate their views or otherwise on the handling and burning characteristics of the charcoal briquette. A survey was undertaken a week later using questionnaires to access the willingness of the potential users to use the briquettes. Sixty respondents were purposively selected from households and the hospitality industry for the survey. Results of the physico-chemical assessment of the briquettes were as follows: length (75 to 120 mm), moisture content (5.7% dry basis), density (1.1 g/cm 3 ), ash content (2.6%), fixed carbon (20.7%), volatile matter (71%) and calorific value (4,820 kcal/kg). Responses from the survey indicated that the briquette is easy to ignite, has a long burning time and has good heat output. Respondents also observed that the briquettes did not give off sparks and had less smoke and ash content as compared to the regular charcoal they often used. Finally, 93% of the respondents indicated their willingness to use the briquettes if the price was comparable to charcoal.Keywords
- Sawdust charcoal briquettes,
- Physico-chemical characteristics,
- Demand and potential user's acceptability
References
- Phonphuak and Thiansem (2012) Using charcoal to increase properties and durability of fired test briquettes (pp. 612-618) https://doi.org/10.1016/j.conbuildmat.2011.11.018
- Rabier et al. (2006) Particle density determination of pellets and briquettes (pp. 954-963) https://doi.org/10.1016/j.biombioe.2006.06.006
- McKendry (2002) Energy production from biomass (part 1): overview of biomass (pp. 37-46)
- Emerhi (2011) Physical and combustion properties of briquettes produced from sawdust of three hardwood species and different organic binders 2(6) (pp. 236-246)
- Kemausuor et al. (2011) A review of trends, policies and plans for increasing energy access in Ghana (pp. 5143-5154) https://doi.org/10.1016/j.rser.2011.07.041
- Energy Commission, Ghana:
- Report on woodfuel use in Ghana: an outlook for the future.
- (2008). Accessed 18 May 2012
- http://new.energycom.gov.gh
- (2008). Accessed 18 May 2012
- Trossero (2002) FAO
- Stout and Best (2001) Effective energy use and climate change: needs of rural areas in developing countries
- Amaya et al. (2007) Activated carbon briquettes from biomass materials 98(8) (pp. 1635-1641) https://doi.org/10.1016/j.biortech.2006.05.049
- Suhartini et al. (2011) Physical properties characterization of fuel briquette made from spent bleaching earth (pp. 4209-4214) https://doi.org/10.1016/j.biombioe.2011.07.002
- Wilaipon (2007) Physical characteristics of maize cob briquettes under moderate die pressure (pp. 995-998) https://doi.org/10.3844/ajassp.2007.995.998
- Oladeji (2010) Fuel characterization of briquettes produced from corncob and rice husk resides 11(1) (pp. 101-106)
- Styles et al. (2008) Energy crops in Ireland: an economic comparison of willow and miscanthus production with conventional farming systems (pp. 407-421) https://doi.org/10.1016/j.biombioe.2007.10.012
- Yang et al. (2005) Effect of fuel properties on biomass combustion (pp. 2116-2130) https://doi.org/10.1016/j.fuel.2005.04.023
- Loo and Koppejan (2008) Earthscan
- Unknown (2012)
- Jenkins et al. (1998) Combustion properties of biomass (pp. 17-46) https://doi.org/10.1016/S0378-3820(97)00059-3
- Chaney (2010) University of Nottingham
- Grover et al. (1994) Development of an appropriate biomass briquetting technology suitable for production and use in developing countries 1(1) (pp. 45-48) https://doi.org/10.1016/S0973-0826(08)60015-0
- Zaror and Pyle (1982) The pyrolysis of biomass: a general review 5(4) (pp. 269-285)
- Aina et al. (2009) Heat energy from value-added sawdust briquettes of Albiziazygia 2(1) (pp. 42-49) https://doi.org/10.4314/ejesm.v2i1.43501
- Wamukonya and Jenkins (1995) Durability and relaxation of sawdust and wheat-straw briquettes as possible fuels for Kenya 8(3) (pp. 175-179) https://doi.org/10.1016/0961-9534(95)00016-Z
- De Souza and Sandberg (2004) Mathematical model of a smoldering log (pp. 227-238) https://doi.org/10.1016/j.combustflame.2004.07.009
- Kim et al. (2001) Modeling combustion characteristics of bio-coal briquettes (pp. 27-31) https://doi.org/10.1115/1.1347988
- Musa (2007) Comparative fuel characterization of rice husk and groundnut shell briquettes 6(4) (pp. 23-27)
- Enweremadu et al. (2004) Evaluation of energy potential in husks from soy-bean and cowpea (pp. 18-23)
- Chaiklangmuang et al. (2008) Development of fuel briquettes from biomass-lignite blends 35(1) (pp. 43-50)
10.1186/2251-6832-3-20