Potential for Biogas Production from Water Hyacinth and Banana Peels: A Case Study of Substrates Harvested from Lomé, Togo

Author:

Gbiete Djangbadjoa1ORCID,Sprafke Jan1,Kongnine Damgou Mani2,Narra Satyanarayana1ORCID,Kpelou Pali2,Mouzou Essowè2,Agboka Komi3

Affiliation:

1. Department of Waste and Resource Management, University of Rostock, 18059 Rostock, Germany

2. Centre d’Excellence Régional pour la Maîtrise de l’Electricité, Université de Lomé, Lomé 01BP1515, Togo

3. West African Science Service Centre on Climate Change and Adapted Land Use, Doctoral Research Programme, Climate Change and Disaster Risk Management, Université de Lomé, Lomé 01BP1515, Togo

Abstract

Climate change and the growing demand for energy have prompted research on alternative eco-friendly energy sources. This study focused on the potential for biogas production from water hyacinth and banana peel waste through physicochemical characterization and batch anaerobic digestion tests. The water hyacinth and banana peel samples were dried, ground, and subjected to elemental, proximate, and fiber content analyses. Subsequently, banana peel waste, water hyacinth stems, and leaves were used for batch anaerobic digestion tests in 500 mL glass flask bottles for 21 days under mesophilic conditions in n = 3 trials. Kruskal–Wallis and Dunnett’s tests were performed to identify the significance of the differences in biogas yield among the samples. The analyses of the elemental, proximate, and fiber contents of water hyacinth and banana peels revealed that they possess a suitable chemical composition and essential nutrients for the production of high-yield biogas. The biogas yields from water hyacinth leaves, stems, and banana peels were 280.15, 324.79, and 334.82 mL/g VS, respectively. These findings indicate that water hyacinth and banana peel waste have significant potential for biogas production.

Funder

German Federal Ministry of Education and Research

University of Rostock

Publisher

MDPI AG

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