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Agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes

As a way of wastes-to-voltage conversion, experimental benchtest trial of electricity generation from a blend of cocoa and kolanut harvest by-products is presented in this study. Bioethanol obtained from the blend, through a process of alcoholic fermentation, was mixed with gasoline at specific prop...

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Autores principales: Ajewole, Titus O., Aworinde, Abraham K., Okedere, Oyetunji B., Somefun, Tobiloba E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8919221/
https://www.ncbi.nlm.nih.gov/pubmed/35295659
http://dx.doi.org/10.1016/j.heliyon.2022.e09091
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author Ajewole, Titus O.
Aworinde, Abraham K.
Okedere, Oyetunji B.
Somefun, Tobiloba E.
author_facet Ajewole, Titus O.
Aworinde, Abraham K.
Okedere, Oyetunji B.
Somefun, Tobiloba E.
author_sort Ajewole, Titus O.
collection PubMed
description As a way of wastes-to-voltage conversion, experimental benchtest trial of electricity generation from a blend of cocoa and kolanut harvest by-products is presented in this study. Bioethanol obtained from the blend, through a process of alcoholic fermentation, was mixed with gasoline at specific proportion and employed to fire a spark ignition engine that served as a prime-mover in driving a four-pole three-phase salient-pole synchronous machine. Performance of the driving machine, as the fuel-mix proportion and its speed of rotation varied, was studied. Likewise, the electric power output characteristic of the driven machine, when operated at its rated synchronous speed, was examined. It was found that the driving machine performed better on mixed fuel than pure gasoline. There were gradual increases in the torque and the power developed by the machine as the proportion of ethanol in the fuel-mix and the rotational speed increased. While the highest values of torque and power developed on using pure gasoline were 12.4 Nm and 2574 W respectively at 1900 rpm, 13.1 Nm torque and 2953 W power were obtained from the machine when ignited with 10%-bioethanol fuel-mix at the same speed. Also, with 90 V(dc) excitation voltage and rotation at 1500 rpm synchronous speed, the driven machine continuously generated electricity at 207.6 V(rms) (line-to-line), 1.169 A, 0.698 power factor, 48.17 Hz, 0.294 kW output. This study demonstrated the possibility of continuous generation of electric power from cocoa and kolanut wastes. Result obtained from the laboratory-based trial indicates that at such agricultural regions that are advantaged in the production of the two crops, harvest residues of the crops can be explored as a steady source of biofuel for off-grid microgrid electrification.
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spelling pubmed-89192212022-03-15 Agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes Ajewole, Titus O. Aworinde, Abraham K. Okedere, Oyetunji B. Somefun, Tobiloba E. Heliyon Research Article As a way of wastes-to-voltage conversion, experimental benchtest trial of electricity generation from a blend of cocoa and kolanut harvest by-products is presented in this study. Bioethanol obtained from the blend, through a process of alcoholic fermentation, was mixed with gasoline at specific proportion and employed to fire a spark ignition engine that served as a prime-mover in driving a four-pole three-phase salient-pole synchronous machine. Performance of the driving machine, as the fuel-mix proportion and its speed of rotation varied, was studied. Likewise, the electric power output characteristic of the driven machine, when operated at its rated synchronous speed, was examined. It was found that the driving machine performed better on mixed fuel than pure gasoline. There were gradual increases in the torque and the power developed by the machine as the proportion of ethanol in the fuel-mix and the rotational speed increased. While the highest values of torque and power developed on using pure gasoline were 12.4 Nm and 2574 W respectively at 1900 rpm, 13.1 Nm torque and 2953 W power were obtained from the machine when ignited with 10%-bioethanol fuel-mix at the same speed. Also, with 90 V(dc) excitation voltage and rotation at 1500 rpm synchronous speed, the driven machine continuously generated electricity at 207.6 V(rms) (line-to-line), 1.169 A, 0.698 power factor, 48.17 Hz, 0.294 kW output. This study demonstrated the possibility of continuous generation of electric power from cocoa and kolanut wastes. Result obtained from the laboratory-based trial indicates that at such agricultural regions that are advantaged in the production of the two crops, harvest residues of the crops can be explored as a steady source of biofuel for off-grid microgrid electrification. Elsevier 2022-03-11 /pmc/articles/PMC8919221/ /pubmed/35295659 http://dx.doi.org/10.1016/j.heliyon.2022.e09091 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Ajewole, Titus O.
Aworinde, Abraham K.
Okedere, Oyetunji B.
Somefun, Tobiloba E.
Agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes
title Agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes
title_full Agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes
title_fullStr Agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes
title_full_unstemmed Agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes
title_short Agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes
title_sort agro-residues for clean electricity: in-lab trial of power generation from blended cocoa-kolanut wastes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8919221/
https://www.ncbi.nlm.nih.gov/pubmed/35295659
http://dx.doi.org/10.1016/j.heliyon.2022.e09091
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