Use of plantain peel adsorbents for the reduction of carbon monoxide from biogas for use as chick heating energy in an egg production industry

This research is a case study for the search for an alternative energy to natural gas for heating the chicks of the Brin Foundation located in Yaokokro (Ivory Coast). Specifically, this study aims to reduce carbon monoxide in biogas using biochar and activated carbons prepared from plantain peels. T...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Case studies in chemical and environmental engineering 2023-06, Vol.7, p.100337, Article 100337
Hauptverfasser: Gbangbo, Konan Remis, Kouakou, Adjoumani Rodrigue, Ehouman, Ahissan Donatien, Yao, Benjamin, Goli Lou, Gonézié Vanessa-Edwige, Gnaboa, Zéphirin, Adouby, Kopoin, Eboue, Kouadio Dieudonné, Kadjo Binjamin, Abi
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:This research is a case study for the search for an alternative energy to natural gas for heating the chicks of the Brin Foundation located in Yaokokro (Ivory Coast). Specifically, this study aims to reduce carbon monoxide in biogas using biochar and activated carbons prepared from plantain peels. The challenge is to use the purified biogas as an alternative energy source for heating the chicks. Three adsorbents from plantain peel were produced and characterised: 1-Biochar (BC), 2- Potassium hydroxide activated carbon (AC-K) and 3-iron oxide functionalized activated carbon (AC-Fe). Subsequently, their adsorption capacity on carbon monoxide was evaluated. The values obtained for carbonisation yield, moisture and ash content show that the raw material used is suitable for the production of activated carbon biochar. In addition, the surface morphology allows the observation of asperities on the surface of the adsorbents which can be either macropores, mesopores or micropores. The adsorption curves showed that AC-Fe has the longest saturation time of 615 minutes compared to 191 minutes and 188 minutes for BC and AC-K respectively. Furthermore, BC, AC-K and AC-Fe have absorption capacities of 0.77, 0.84 and 3.79 mgCO/g respectively. AC-Fe has a 4.9 times higher adsorption capacity than BC and 4.5 times higher than AC-K. The same case is observed for the percentage of CO removal: 6.9%, 59.83% and 79.19% for BC, AC-K and AC-Fe respectively. According to the efficiency of the adsorbents, they can be classified in the following order: BC 
ISSN:2666-0164
2666-0164
DOI:10.1016/j.cscee.2023.100337