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Physico-thermal and emission properties of tissue cultured clone from Bambusa balcoaa (Beema bamboo) and Oxytenanthera abyssinica as sustainable solid biofuels

In the search for alternatives to wood fuel, to meet the bio-energy requirement of an ever-increasing global population, the International Network for Bamboo and Rattan has supported farmers in many tropical countries to establish plantations of Beema bamboo (a tissue-cultured clone from Bambusa vul...

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Autores principales: Boadu, Kwadwo Boakye, Ansong, Michael, Anokye, Rogerson, Offeh-Gyimah, Kelvin, Amoah, Enoch
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9778976/
https://www.ncbi.nlm.nih.gov/pubmed/36548387
http://dx.doi.org/10.1371/journal.pone.0279586
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author Boadu, Kwadwo Boakye
Ansong, Michael
Anokye, Rogerson
Offeh-Gyimah, Kelvin
Amoah, Enoch
author_facet Boadu, Kwadwo Boakye
Ansong, Michael
Anokye, Rogerson
Offeh-Gyimah, Kelvin
Amoah, Enoch
author_sort Boadu, Kwadwo Boakye
collection PubMed
description In the search for alternatives to wood fuel, to meet the bio-energy requirement of an ever-increasing global population, the International Network for Bamboo and Rattan has supported farmers in many tropical countries to establish plantations of Beema bamboo (a tissue-cultured clone from Bambusa vulgaris) and Oxytenanthera abyssinica for bio-energy production. The quality of these species as solid biofuels is unknown due to the absence of data on their physico-thermal and emission characteristics. Using the American Standard for Testing and Materials and other internationally accepted standards, their ultimate and proximate analysis, and physico-thermal and emission properties were evaluated. Beema bamboo and O. abyssinica have high Hydrogen, organic and fixed Carbon contents and low quantities of ash, moisture content, volatile matter, Oxygen, Nitrogen and Sulphur. This will contribute to their heating values and low oxide emissions. Based on their High Heating Values (Beema bamboo = 23.22 MJ/kg; O. abyssinica = 23.26 MJ/kg), the species will be suitable for high energy-using applications. The Particulate Matter and Carbon Monoxide concentrations (Beema bamboo: 90 ug/m(3) and 2.83 ppm respectively; O. abyssinica: 77.33 ug/m(3) and 3.20 ppm respectively) are lower than the threshold (35000 ug/m(3) and 9 ppm respectively) approved by the United States Environmental Protection Agency. These properties make the species good raw materials for solid biofuel which is safe for indoor use. Their use will contribute to reducing pressure on tropical forests for wood fuel and the health hazards associated with fossil fuel use.
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spelling pubmed-97789762022-12-23 Physico-thermal and emission properties of tissue cultured clone from Bambusa balcoaa (Beema bamboo) and Oxytenanthera abyssinica as sustainable solid biofuels Boadu, Kwadwo Boakye Ansong, Michael Anokye, Rogerson Offeh-Gyimah, Kelvin Amoah, Enoch PLoS One Research Article In the search for alternatives to wood fuel, to meet the bio-energy requirement of an ever-increasing global population, the International Network for Bamboo and Rattan has supported farmers in many tropical countries to establish plantations of Beema bamboo (a tissue-cultured clone from Bambusa vulgaris) and Oxytenanthera abyssinica for bio-energy production. The quality of these species as solid biofuels is unknown due to the absence of data on their physico-thermal and emission characteristics. Using the American Standard for Testing and Materials and other internationally accepted standards, their ultimate and proximate analysis, and physico-thermal and emission properties were evaluated. Beema bamboo and O. abyssinica have high Hydrogen, organic and fixed Carbon contents and low quantities of ash, moisture content, volatile matter, Oxygen, Nitrogen and Sulphur. This will contribute to their heating values and low oxide emissions. Based on their High Heating Values (Beema bamboo = 23.22 MJ/kg; O. abyssinica = 23.26 MJ/kg), the species will be suitable for high energy-using applications. The Particulate Matter and Carbon Monoxide concentrations (Beema bamboo: 90 ug/m(3) and 2.83 ppm respectively; O. abyssinica: 77.33 ug/m(3) and 3.20 ppm respectively) are lower than the threshold (35000 ug/m(3) and 9 ppm respectively) approved by the United States Environmental Protection Agency. These properties make the species good raw materials for solid biofuel which is safe for indoor use. Their use will contribute to reducing pressure on tropical forests for wood fuel and the health hazards associated with fossil fuel use. Public Library of Science 2022-12-22 /pmc/articles/PMC9778976/ /pubmed/36548387 http://dx.doi.org/10.1371/journal.pone.0279586 Text en © 2022 Boadu et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Boadu, Kwadwo Boakye
Ansong, Michael
Anokye, Rogerson
Offeh-Gyimah, Kelvin
Amoah, Enoch
Physico-thermal and emission properties of tissue cultured clone from Bambusa balcoaa (Beema bamboo) and Oxytenanthera abyssinica as sustainable solid biofuels
title Physico-thermal and emission properties of tissue cultured clone from Bambusa balcoaa (Beema bamboo) and Oxytenanthera abyssinica as sustainable solid biofuels
title_full Physico-thermal and emission properties of tissue cultured clone from Bambusa balcoaa (Beema bamboo) and Oxytenanthera abyssinica as sustainable solid biofuels
title_fullStr Physico-thermal and emission properties of tissue cultured clone from Bambusa balcoaa (Beema bamboo) and Oxytenanthera abyssinica as sustainable solid biofuels
title_full_unstemmed Physico-thermal and emission properties of tissue cultured clone from Bambusa balcoaa (Beema bamboo) and Oxytenanthera abyssinica as sustainable solid biofuels
title_short Physico-thermal and emission properties of tissue cultured clone from Bambusa balcoaa (Beema bamboo) and Oxytenanthera abyssinica as sustainable solid biofuels
title_sort physico-thermal and emission properties of tissue cultured clone from bambusa balcoaa (beema bamboo) and oxytenanthera abyssinica as sustainable solid biofuels
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9778976/
https://www.ncbi.nlm.nih.gov/pubmed/36548387
http://dx.doi.org/10.1371/journal.pone.0279586
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