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Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design

[Image: see text] The energy performance and emissions (carbon monoxide and total suspended particulate matter) of a biomass gasification-based cookstove under a modified water boiling test (WBT 4.2.3 protocol) were characterized here. The controllable process parameters analyzed were the biomass bu...

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Autores principales: Gutiérrez, Jonatan, Chica, Edwin Lenin, Pérez, Juan F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8908516/
https://www.ncbi.nlm.nih.gov/pubmed/35284767
http://dx.doi.org/10.1021/acsomega.1c05137
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author Gutiérrez, Jonatan
Chica, Edwin Lenin
Pérez, Juan F.
author_facet Gutiérrez, Jonatan
Chica, Edwin Lenin
Pérez, Juan F.
author_sort Gutiérrez, Jonatan
collection PubMed
description [Image: see text] The energy performance and emissions (carbon monoxide and total suspended particulate matter) of a biomass gasification-based cookstove under a modified water boiling test (WBT 4.2.3 protocol) were characterized here. The controllable process parameters analyzed were the biomass bulk density (pellets—WP and chips—WCH) and the combustion-air/gasification-air ratio (2.8, 3.0, and 3.2). Moreover, a design parameter of the cookstove was analyzed through two combustion chamber designs (combustion chambers 1 and 2). The cookstove was characterized in detail considering the complete cookstove (control volume 1), the combustion chamber (control volume 2), and the gasification process (control volume 3). The cookstove reached an average efficiency of 25.2% for pellets and 24.1% for chips. The best behavior for the cookstove was achieved when pellets were used, which is attributed to their higher bulk density and to the fact that during their gasification process, the biochar yield was 12% higher, while the biomass consumption decreased by 16% compared to the chips. The carbon monoxide specific emissions were 2.78 g/MJ(d) for pellets and 2.75 g/MJ(d) for chips. On average, the cookstove released total suspended particulate matter between 74.11 and 122.70 mg/MJ(d). The cookstove low emissions are ascribed to the proper combustion air flow and the combustion chamber design, which favored the mixing between producer gas and combustion air.
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spelling pubmed-89085162022-03-11 Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design Gutiérrez, Jonatan Chica, Edwin Lenin Pérez, Juan F. ACS Omega [Image: see text] The energy performance and emissions (carbon monoxide and total suspended particulate matter) of a biomass gasification-based cookstove under a modified water boiling test (WBT 4.2.3 protocol) were characterized here. The controllable process parameters analyzed were the biomass bulk density (pellets—WP and chips—WCH) and the combustion-air/gasification-air ratio (2.8, 3.0, and 3.2). Moreover, a design parameter of the cookstove was analyzed through two combustion chamber designs (combustion chambers 1 and 2). The cookstove was characterized in detail considering the complete cookstove (control volume 1), the combustion chamber (control volume 2), and the gasification process (control volume 3). The cookstove reached an average efficiency of 25.2% for pellets and 24.1% for chips. The best behavior for the cookstove was achieved when pellets were used, which is attributed to their higher bulk density and to the fact that during their gasification process, the biochar yield was 12% higher, while the biomass consumption decreased by 16% compared to the chips. The carbon monoxide specific emissions were 2.78 g/MJ(d) for pellets and 2.75 g/MJ(d) for chips. On average, the cookstove released total suspended particulate matter between 74.11 and 122.70 mg/MJ(d). The cookstove low emissions are ascribed to the proper combustion air flow and the combustion chamber design, which favored the mixing between producer gas and combustion air. American Chemical Society 2022-02-24 /pmc/articles/PMC8908516/ /pubmed/35284767 http://dx.doi.org/10.1021/acsomega.1c05137 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Gutiérrez, Jonatan
Chica, Edwin Lenin
Pérez, Juan F.
Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design
title Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design
title_full Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design
title_fullStr Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design
title_full_unstemmed Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design
title_short Parametric Analysis of a Gasification-Based Cookstove as a Function of Biomass Density, Gasification Behavior, Airflow Ratio, and Design
title_sort parametric analysis of a gasification-based cookstove as a function of biomass density, gasification behavior, airflow ratio, and design
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8908516/
https://www.ncbi.nlm.nih.gov/pubmed/35284767
http://dx.doi.org/10.1021/acsomega.1c05137
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