Composting barrel for sustainable organic waste management in Bangladesh
To ensure quick and uniform aerobic stabilization of biowaste through domestic composting and to prevent malodorous emissions, two modifications were made to a conventional steel barrel composter by: (1) providing 0.0125 m diameter openings throughout the sides and (2) placing a 0.0254 m diameter pe...
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Published in | Waste management & research Vol. 29; no. 12; pp. 1286 - 1293 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
London, England
SAGE Publications
01.12.2011
Sage Publications Ltd |
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Abstract | To ensure quick and uniform aerobic stabilization of biowaste through domestic composting and to prevent malodorous emissions, two modifications were made to a conventional steel barrel composter by: (1) providing 0.0125 m diameter openings throughout the sides and (2) placing a 0.0254 m diameter perforated polyvinyl chloride (PVC) pipe in the middle portion of the barrel. The volume of composting waste before modification of the composting barrel was 40% of the original volume and it was 70%, 4 weeks following the modifications. In addition, the nutrients in the compost were found to be in a more suitable range after modification of the composting barrel. The carbon–nitrogen ratio (C/N) of the compost was in the ideal range of 11–15 in the modified composting reactor but it was quite high (24–25) in the conventional barrel. This modified barrel composting plant proved to be an efficient, eco-friendly, cost-effective solution for the management of organic solid waste materials in developing and technologically less sophisticated countries such as Bangladesh. |
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AbstractList | To ensure quick and uniform aerobic stabilization of biowaste through domestic composting and to prevent malodorous emissions, two modifications were made to a conventional steel barrel composter by: (1) providing 0.0125 m diameter openings throughout the sides and (2) placing a 0.0254 m diameter perforated polyvinyl chloride (PVC) pipe in the middle portion of the barrel. The volume of composting waste before modification of the composting barrel was 40% of the original volume and it was 70%, 4 weeks following the modifications. In addition, the nutrients in the compost were found to be in a more suitable range after modification of the composting barrel. The carbon–nitrogen ratio (C/N) of the compost was in the ideal range of 11–15 in the modified composting reactor but it was quite high (24–25) in the conventional barrel. This modified barrel composting plant proved to be an efficient, eco-friendly, cost-effective solution for the management of organic solid waste materials in developing and technologically less sophisticated countries such as Bangladesh. To ensure quick and uniform aerobic stabilization of biowaste through domestic composting and to prevent malodorous emissions, two modifications were made to a conventional steel barrel composter by: (1) providing 0.0125m diameter openings throughout the sides and (2) placing a 0.0254m diameter perforated polyvinyl chloride (PVC) pipe in the middle portion of the barrel. The volume of composting waste before modification of the composting barrel was 40% of the original volume and it was 70%, 4 weeks following the modifications. In addition, the nutrients in the compost were found to be in a more suitable range after modification of the composting barrel. The carbon-nitrogen ratio (C/N) of the compost was in the ideal range of 11-15 in the modified composting reactor but it was quite high (24-25) in the conventional barrel. This modified barrel composting plant proved to be an efficient, eco-friendly, cost-effective solution for the management of organic solid waste materials in developing and technologically less sophisticated countries such as Bangladesh. |
Author | Moqsud, Md Azizul Bushra, Quazi Sifat Rahman, MH |
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Cites_doi | 10.1016/j.wasman.2007.06.013 10.2166/wst.2004.0539 10.1016/j.biortech.2005.02.013 10.1177/0734242X9301100204 10.1016/j.wasman.2005.06.011 10.1016/j.resconrec.2004.06.005 10.1016/j.biortech.2004.10.008 10.1016/0269-7483(88)90016-X 10.1016/j.biortech.2004.12.012 |
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References | Sujauddin, Huda, Hoque 2008; 28 Witter, Lopeaz-Real 1988; 23 Nakasaki, Yaguchi, Sasaki, Kubota 1993; 11 Verma, Rawat, Rathore 1999; 47 Sundberg, Smars 2004; 96 Goyal, Dhull, Kapoor 2005; 96 Zheng, Chen 2004; 50 Zurbrugg, Drescher, Rytz, Sinha, Enayettullah 2005; 43 Chang, Tsai, Wu 2006; 97 Hong, Park 2005; 96 Iyengar, Bhave 2006; 26 Rahman 1993; 12 Asija, Pareek, Singhania, Singh 1984; 32 bibr4-0734242X10383621 Tchobanoglous G (bibr25-0734242X10383621) 1977 Ahmed MF (bibr1-0734242X10383621) 2000 Polprasert C (bibr19-0734242X10383621) 1996 bibr30-0734242X10383621 bibr17-0734242X10383621 bibr8-0734242X10383621 Rahman MH (bibr20-0734242X10383621) 1993; 12 Sundberg C (bibr24-0734242X10383621) 2004; 96 Li GX (bibr11-0734242X10383621) 2000 Asija AK (bibr2-0734242X10383621) 1984; 32 Jackson ML (bibr9-0734242X10383621) 1973 Golueke CG (bibr5-0734242X10383621) 1972 Moqsud MA (bibr15-0734242X10383621) 2005 bibr16-0734242X10383621 bibr7-0734242X10383621 bibr29-0734242X10383621 bibr12-0734242X10383621 Pfammatter R (bibr18-0734242X10383621) 1996 Bhide AD (bibr3-0734242X10383621) 1983 Sinha AHMM (bibr22-0734242X10383621) 2001 Moqsud MA (bibr13-0734242X10383621) 2004 Verma LN (bibr26-0734242X10383621) 1999; 47 bibr28-0734242X10383621 Vesilind PA (bibr27-0734242X10383621) 1981 bibr6-0734242X10383621 Rahman MH (bibr21-0734242X10383621) 2004 Moqsud MA (bibr14-0734242X10383621) 2005 bibr23-0734242X10383621 bibr10-0734242X10383621 |
References_xml | – volume: 12 start-page: 337 year: 1993 end-page: 342 article-title: Recycling of solid waste in Bangladesh publication-title: The International Journal of Environmental Education & Information.UK contributor: fullname: Rahman – volume: 26 start-page: 1070 year: 2006 end-page: 1080 article-title: In-vessel composting of household wastes publication-title: Waste Management contributor: fullname: Bhave – volume: 96 start-page: 741 year: 2005 end-page: 745 article-title: Compost biofiltration of ammonia gas from bin composting publication-title: Bioresource Technology contributor: fullname: Park – volume: 28 start-page: 1688 year: 2008 end-page: 1695 article-title: Household solid waste characteristics and management in Chittagong, Bangladesh publication-title: Waste Management contributor: fullname: Hoque – volume: 50 start-page: 75 year: 2004 end-page: 82 article-title: Dynamic of lead specialization in sewage sludge composting publication-title: Journal of Water Science and Technology contributor: fullname: Chen – volume: 96 start-page: 746 year: 2004 end-page: 752 article-title: Low pH as an inhibiting factor in the transition from mesophilic to thermophilic phase in composting publication-title: Bioresource Technology contributor: fullname: Smars – volume: 97 start-page: 116 year: 2006 end-page: 122 article-title: Thermophilic composting of food waste publication-title: Bioresource Technology contributor: fullname: Wu – volume: 43 start-page: 281 year: 2005 end-page: 292 article-title: Decentralized composting in Bangladesh, a win-win situation for all stakeholders publication-title: Resources Conservation and Recycling contributor: fullname: Enayettullah – volume: 96 start-page: 1584 year: 2005 end-page: 1591 article-title: Chemical and biological changes during composting of different organic waste and assessment of compost maturity publication-title: Bioresource Technology contributor: fullname: Kapoor – volume: 32 start-page: 323 year: 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bibr3-0734242X10383621 contributor: fullname: Bhide AD – start-page: 130 volume-title: Proc. 4th International Conference on Environmental Informatics year: 2005 ident: bibr15-0734242X10383621 contributor: fullname: Moqsud MA – ident: bibr23-0734242X10383621 doi: 10.1016/j.wasman.2007.06.013 – volume-title: Solid Waste Composting and Production of Fertilizer year: 2000 ident: bibr11-0734242X10383621 contributor: fullname: Li GX – volume-title: Organic Waste Recycling-technology and Management year: 1996 ident: bibr19-0734242X10383621 contributor: fullname: Polprasert C – ident: bibr29-0734242X10383621 doi: 10.2166/wst.2004.0539 – volume: 96 start-page: 746 year: 2004 ident: bibr24-0734242X10383621 publication-title: Bioresource Technology contributor: fullname: Sundberg C – volume: 47 start-page: 368 year: 1999 ident: bibr26-0734242X10383621 publication-title: Journal of Indian Society of Soil Science contributor: fullname: Verma LN – volume-title: Water Supply and Sanitation: Rural and Low Income Urban Communities year: 2000 ident: bibr1-0734242X10383621 contributor: fullname: Ahmed MF – volume-title: SANDEC Report No.1/96.Water and Sanitation in Developing Countries year: 1996 ident: bibr18-0734242X10383621 contributor: fullname: Pfammatter R – volume-title: Chemical Analysis of Soil year: 1973 ident: bibr9-0734242X10383621 contributor: fullname: Jackson ML – volume: 12 start-page: 337 year: 1993 ident: bibr20-0734242X10383621 publication-title: The International Journal of Environmental Education & Information.UK contributor: fullname: Rahman MH – ident: bibr4-0734242X10383621 doi: 10.1016/j.biortech.2005.02.013 – volume-title: Unit Operations in Resource Recovery Engineering year: 1981 ident: bibr27-0734242X10383621 contributor: fullname: Vesilind PA – ident: bibr16-0734242X10383621 doi: 10.1177/0734242X9301100204 – ident: bibr8-0734242X10383621 doi: 10.1016/j.wasman.2005.06.011 – volume: 32 start-page: 323 year: 1984 ident: bibr2-0734242X10383621 publication-title: Journal of Indian Society of Soil Science contributor: fullname: Asija AK – start-page: 32 volume-title: Proc. of the International Conference on Professional Development Program 4, Center for Environmental and Resource Management year: 2001 ident: bibr22-0734242X10383621 contributor: fullname: Sinha AHMM – ident: bibr12-0734242X10383621 – ident: bibr30-0734242X10383621 doi: 10.1016/j.resconrec.2004.06.005 – ident: bibr7-0734242X10383621 doi: 10.1016/j.biortech.2004.10.008 – volume-title: Biological Reclamation of Solid Wastes year: 1972 ident: bibr5-0734242X10383621 contributor: fullname: Golueke CG – ident: bibr17-0734242X10383621 – volume-title: Solid Waste: Engineering Principles and Management Issue year: 1977 ident: bibr25-0734242X10383621 contributor: fullname: Tchobanoglous G – start-page: 45 volume-title: Proc. of the 19th International Conference on Solid Waste Technology and Management year: 2004 ident: bibr21-0734242X10383621 contributor: fullname: Rahman MH – ident: bibr28-0734242X10383621 doi: 10.1016/0269-7483(88)90016-X – ident: bibr6-0734242X10383621 doi: 10.1016/j.biortech.2004.12.012 – start-page: 413 volume-title: Proc of the Sixth International Summer Symposium year: 2004 ident: bibr13-0734242X10383621 contributor: fullname: Moqsud MA – start-page: 440 volume-title: Proc. of the 20th International Conference on Solid Waste Technology and Management year: 2005 ident: bibr14-0734242X10383621 contributor: fullname: Moqsud MA – ident: bibr10-0734242X10383621 |
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SubjectTerms | Bangladesh Biodegradation, Environmental Chlorides Composting Composts Conservation of Energy Resources Garbage Nitrogen Nutrients Off odor Organic wastes Pipes Polyvinyl chloride Recycling centers Soil Steel Waste management Waste Management - instrumentation Waste materials Yard waste |
Title | Composting barrel for sustainable organic waste management in Bangladesh |
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